A fractal analysis of chemical kinetics with applications to biological and biosensor interfaces
Front Cover; A Fractal Analysis of Chemical Kinetics with Applications to Biological and Biosensor Interfaces; Copyright; Contents; Preface; Chapter 1: Introduction; 1.1. Introduction; 1.2. Chapter Contents; References; Chapter 2: Modeling and Theory; 2.1. Introduction; 2.2. Theory; 2.3. Variable Ra...
Ausführliche Beschreibung
Autor*in: |
Sadana, Ajit - 1947- [verfasserIn] Sadana, Neeti [verfasserIn] Sadana, Richa [verfasserIn] |
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Format: |
E-Book |
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Sprache: |
Englisch |
Erschienen: |
Amsterdam, Netherlands Cambridge, MA: Elsevier ; 2018 ©2018 |
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Schlagwörter: |
Surfaces (Technology), Analysis SCIENCE ; Chemistry ; Physical & Theoretical Surfaces (Technology) ; Analysis |
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Formangabe: |
Electronic books |
Anmerkung: |
Includes bibliographical references and index |
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Umfang: |
1 Online-Ressource |
Links: | |
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ISBN: |
0-444-63882-2 |
Katalog-ID: |
1683706722 |
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245 | 1 | 2 | |a A fractal analysis of chemical kinetics with applications to biological and biosensor interfaces |c Ajit Sadana, Neeti Sadana, Richa Sadana |
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500 | |a Includes bibliographical references and index | ||
520 | |a Front Cover; A Fractal Analysis of Chemical Kinetics with Applications to Biological and Biosensor Interfaces; Copyright; Contents; Preface; Chapter 1: Introduction; 1.1. Introduction; 1.2. Chapter Contents; References; Chapter 2: Modeling and Theory; 2.1. Introduction; 2.2. Theory; 2.3. Variable Rate Coefficient; 2.4. Single-Fractal Analysis; 2.4.1. Binding Rate Coefficient; 2.4.2. Dissociation Rate Coefficient; 2.5. Dual-Fractal Analysis; 2.5.1. Binding Rate Coefficient; 2.5.2. Dissociation Rate Coefficient; 2.6. Triple-Fractal Analysis; 2.7. Pfeifer's Fractal Binding Rate Theory | ||
520 | |a 2.8. The Mautner Model2.9. Kinetics of Analyte Capture on Nanoscale Sensors (Solomon and Paul, 2006); 2.10. Probing the Functional Heterogeneity of Surface Binding Sites Along With the Effect of Mass Transport Limitation an ... ; References; Further Reading; Chapter 3: Different Instrumentation Techniques; 3.1. Introduction; 3.2. Theory; 3.2.1. Single-Fractal Analysis; 3.2.1.1. Binding Rate Coefficient; 3.2.1.2. Dissociation Rate Coefficient; 3.2.2. Dual-Fractal Analysis; 3.2.2.1. Binding Rate Coefficient; 3.3. Results; 3.4. Conclusions; References; Further Reading; Chapter 4: Nanobiosensors | ||
520 | |a 4.1. Introduction4.2. Theory; 4.2.1. Single-Fractal Analysis; 4.2.1.1. Binding Rate Coefficient.; 4.2.1.2. Dissociation Rate Coefficient; 4.2.2. Dual-Fractal Analysis; 4.2.2.1. Binding Rate Coefficient; 4.3. Results; 4.4. Conclusions; References; Further Reading; Chapter 5: DNA Biosensors; 5.1. Introduction; 5.2. Theory; 5.2.1. Single-Fractal Analysis; 5.2.1.1. Binding Rate Coefficient; 5.2.1.2. Dissociation Rate Coefficient; 5.2.2. Dual-Fractal Analysis; 5.2.2.1. Binding Rate Coefficient; 5.3. Results; 5.4. Conclusions; References; Further Reading | ||
520 | |a Chapter 6: Carbohydrate-Receptor Interactions6.1. Introduction; 6.2. Theory; 6.2.1. Single-Fractal Analysis; 6.2.1.1. Binding Rate Coefficient; 6.2.1.2. Dissociation Rate Coefficient; 6.2.2. Dual-Fractal Analysis; 6.2.2.1. Binding Rate Coefficient; 6.3. Results; 6.4. Conclusions; References; Further Reading; Chapter 7: Detection of Cancer Biomarkers by SPR and Optofluidic Ring Resonance Sensors; 7.1. Introduction; 7.2. Theory; 7.2.1. Single-Fractal Analysis; 7.2.1.1. Binding Rate Coefficient; 7.2.1.2. Dissociation Rate Coefficient; 7.2.2. Dual-Fractal Analysis | ||
520 | |a 7.2.2.1. Binding Rate Coefficient7.3. Results; 7.4. Conclusions; References; Further Reading; Chapter 8: Surface Plasmon Resonance Biosensors; 8.1. Introduction; 8.2. Theory; 8.2.1. Single-Fractal Analysis; 8.2.1.1. Binding Rate Coefficient; 8.2.1.2. Dissociation Rate Coefficient; 8.2.2. Dual-Fractal Analysis; 8.2.2.1. Binding Rate Coefficient; 8.3. Results; 8.4. Conclusions; References; Further Reading; Chapter 9: Surface Plasmon Resonance Imaging Biosensors; 9.1. Introduction; 9.2. Theory; 9.2.1. Single-Fractal Analysis; 9.2.1.1. Binding Rate Coefficient | ||
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650 | 0 | |a Fractal analysis | |
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650 | 4 | |a Fractal analysis | |
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0444638822 electronic bk. 0-444-63882-2 (DE-627)1683706722 (DE-576)517999137 (DE-599)KEP026964023 (OCoLC)045069013 (EBP)026964023 (ELSEVIER)on1045069013 DE-627 eng DE-627 rda eng XA-NL QD502 SCI013050 bisacsh SCI 013050 bisacsh SCI 013050 bisacsh Sadana, Ajit 1947- verfasserin aut A fractal analysis of chemical kinetics with applications to biological and biosensor interfaces Ajit Sadana, Neeti Sadana, Richa Sadana Amsterdam, Netherlands Cambridge, MA Elsevier [2018] ©2018 1 Online-Ressource Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Includes bibliographical references and index Front Cover; A Fractal Analysis of Chemical Kinetics with Applications to Biological and Biosensor Interfaces; Copyright; Contents; Preface; Chapter 1: Introduction; 1.1. Introduction; 1.2. Chapter Contents; References; Chapter 2: Modeling and Theory; 2.1. Introduction; 2.2. Theory; 2.3. Variable Rate Coefficient; 2.4. Single-Fractal Analysis; 2.4.1. Binding Rate Coefficient; 2.4.2. Dissociation Rate Coefficient; 2.5. Dual-Fractal Analysis; 2.5.1. Binding Rate Coefficient; 2.5.2. Dissociation Rate Coefficient; 2.6. Triple-Fractal Analysis; 2.7. Pfeifer's Fractal Binding Rate Theory 2.8. The Mautner Model2.9. Kinetics of Analyte Capture on Nanoscale Sensors (Solomon and Paul, 2006); 2.10. Probing the Functional Heterogeneity of Surface Binding Sites Along With the Effect of Mass Transport Limitation an ... ; References; Further Reading; Chapter 3: Different Instrumentation Techniques; 3.1. Introduction; 3.2. Theory; 3.2.1. Single-Fractal Analysis; 3.2.1.1. Binding Rate Coefficient; 3.2.1.2. Dissociation Rate Coefficient; 3.2.2. Dual-Fractal Analysis; 3.2.2.1. Binding Rate Coefficient; 3.3. Results; 3.4. Conclusions; References; Further Reading; Chapter 4: Nanobiosensors 4.1. Introduction4.2. Theory; 4.2.1. Single-Fractal Analysis; 4.2.1.1. Binding Rate Coefficient.; 4.2.1.2. Dissociation Rate Coefficient; 4.2.2. Dual-Fractal Analysis; 4.2.2.1. Binding Rate Coefficient; 4.3. Results; 4.4. Conclusions; References; Further Reading; Chapter 5: DNA Biosensors; 5.1. Introduction; 5.2. Theory; 5.2.1. Single-Fractal Analysis; 5.2.1.1. Binding Rate Coefficient; 5.2.1.2. Dissociation Rate Coefficient; 5.2.2. Dual-Fractal Analysis; 5.2.2.1. Binding Rate Coefficient; 5.3. Results; 5.4. Conclusions; References; Further Reading Chapter 6: Carbohydrate-Receptor Interactions6.1. Introduction; 6.2. Theory; 6.2.1. Single-Fractal Analysis; 6.2.1.1. Binding Rate Coefficient; 6.2.1.2. Dissociation Rate Coefficient; 6.2.2. Dual-Fractal Analysis; 6.2.2.1. Binding Rate Coefficient; 6.3. Results; 6.4. Conclusions; References; Further Reading; Chapter 7: Detection of Cancer Biomarkers by SPR and Optofluidic Ring Resonance Sensors; 7.1. Introduction; 7.2. Theory; 7.2.1. Single-Fractal Analysis; 7.2.1.1. Binding Rate Coefficient; 7.2.1.2. Dissociation Rate Coefficient; 7.2.2. Dual-Fractal Analysis 7.2.2.1. Binding Rate Coefficient7.3. Results; 7.4. Conclusions; References; Further Reading; Chapter 8: Surface Plasmon Resonance Biosensors; 8.1. Introduction; 8.2. Theory; 8.2.1. Single-Fractal Analysis; 8.2.1.1. Binding Rate Coefficient; 8.2.1.2. Dissociation Rate Coefficient; 8.2.2. Dual-Fractal Analysis; 8.2.2.1. Binding Rate Coefficient; 8.3. Results; 8.4. Conclusions; References; Further Reading; Chapter 9: Surface Plasmon Resonance Imaging Biosensors; 9.1. Introduction; 9.2. Theory; 9.2.1. Single-Fractal Analysis; 9.2.1.1. Binding Rate Coefficient Chemical kinetics Biosensors Fractal analysis Surfaces (Technology) Analysis Biosensing Techniques (DNLM)D015374 SCIENCE ; Chemistry ; Physical & Theoretical Biosensors Chemical kinetics Fractal analysis Surfaces (Technology) ; Analysis Biocapteurs (CaQQLa)201-0165323 Surfaces (Technologie) - Analyse (CaQQLa)201-0440005 Analyse fractale (CaQQLa)000287248 Cinétique chimique (CaQQLa)201-0021231 Electronic books Electronic books Sadana, Neeti verfasserin aut Sadana, Richa verfasserin aut 9780444638724 Erscheint auch als Druck-Ausgabe Sadana, Ajit, 1947- Fractal analysis of chemical kinetics with applications to biological and biosensor interfaces Amsterdam, Netherlands ; Cambridge, MA : Elsevier, [2018] 0444638725 9780444638724 https://www.sciencedirect.com/science/book/9780444638724 X:ELSEVIER Verlag lizenzpflichtig Volltext http://www.sciencedirect.com/science/book/9780444638724 Verlag Volltext (DE-627)102810183X GBV-33-Freedom 2022 BSZ-33-EBS-HSAA GBV-33-EBS-MRI GBV-33-EBS-ZHB GBV-33-Freedom 2021 ZDB-33-CEN 2018 ZDB-33-EBS ZDB-33-ESD BSZ-33-EBS-C1UB GBV_ILN_105 ISIL_DE-841 SYSFLAG_1 GBV_KXP GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2020 ISIL_DE-Ch1 GBV_ILN_2111 ISIL_DE-944 BO 045F 541.394 045F 541.394 105 01 0841 4074452391 OLR-ELV-TEST Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. Testzugang ZHB Lübeck z 26-02-22 370 01 4370 4540272799 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 20-06-24 2020 01 DE-Ch1 4520355125 00 --%%-- --%%-- n n Campuslizenz l01 03-05-24 2111 02 DE-944 4046040890 00 --%%-- E-Book Elsevier --%%-- n Elektronischer Volltext - Campuslizenz l01 27-01-22 105 01 0841 http://www.sciencedirect.com/science/book/9780444638724 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von außerhalb nur für HCU-Angehörige möglich https://www.sciencedirect.com/science/book/9780444638724 2020 01 DE-Ch1 https://www.sciencedirect.com/science/book/9780444638724 2111 02 DE-944 https://www.sciencedirect.com/science/book/9780444638724 105 01 0841 OLR-ELV-TEST 370 01 4370 EBS Elsevier |
spelling |
0444638822 electronic bk. 0-444-63882-2 (DE-627)1683706722 (DE-576)517999137 (DE-599)KEP026964023 (OCoLC)045069013 (EBP)026964023 (ELSEVIER)on1045069013 DE-627 eng DE-627 rda eng XA-NL QD502 SCI013050 bisacsh SCI 013050 bisacsh SCI 013050 bisacsh Sadana, Ajit 1947- verfasserin aut A fractal analysis of chemical kinetics with applications to biological and biosensor interfaces Ajit Sadana, Neeti Sadana, Richa Sadana Amsterdam, Netherlands Cambridge, MA Elsevier [2018] ©2018 1 Online-Ressource Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Includes bibliographical references and index Front Cover; A Fractal Analysis of Chemical Kinetics with Applications to Biological and Biosensor Interfaces; Copyright; Contents; Preface; Chapter 1: Introduction; 1.1. Introduction; 1.2. Chapter Contents; References; Chapter 2: Modeling and Theory; 2.1. Introduction; 2.2. Theory; 2.3. Variable Rate Coefficient; 2.4. Single-Fractal Analysis; 2.4.1. Binding Rate Coefficient; 2.4.2. Dissociation Rate Coefficient; 2.5. Dual-Fractal Analysis; 2.5.1. Binding Rate Coefficient; 2.5.2. Dissociation Rate Coefficient; 2.6. Triple-Fractal Analysis; 2.7. Pfeifer's Fractal Binding Rate Theory 2.8. The Mautner Model2.9. Kinetics of Analyte Capture on Nanoscale Sensors (Solomon and Paul, 2006); 2.10. Probing the Functional Heterogeneity of Surface Binding Sites Along With the Effect of Mass Transport Limitation an ... ; References; Further Reading; Chapter 3: Different Instrumentation Techniques; 3.1. Introduction; 3.2. Theory; 3.2.1. Single-Fractal Analysis; 3.2.1.1. Binding Rate Coefficient; 3.2.1.2. Dissociation Rate Coefficient; 3.2.2. Dual-Fractal Analysis; 3.2.2.1. Binding Rate Coefficient; 3.3. Results; 3.4. Conclusions; References; Further Reading; Chapter 4: Nanobiosensors 4.1. Introduction4.2. Theory; 4.2.1. Single-Fractal Analysis; 4.2.1.1. Binding Rate Coefficient.; 4.2.1.2. Dissociation Rate Coefficient; 4.2.2. Dual-Fractal Analysis; 4.2.2.1. Binding Rate Coefficient; 4.3. Results; 4.4. Conclusions; References; Further Reading; Chapter 5: DNA Biosensors; 5.1. Introduction; 5.2. Theory; 5.2.1. Single-Fractal Analysis; 5.2.1.1. Binding Rate Coefficient; 5.2.1.2. Dissociation Rate Coefficient; 5.2.2. Dual-Fractal Analysis; 5.2.2.1. Binding Rate Coefficient; 5.3. Results; 5.4. Conclusions; References; Further Reading Chapter 6: Carbohydrate-Receptor Interactions6.1. Introduction; 6.2. Theory; 6.2.1. Single-Fractal Analysis; 6.2.1.1. Binding Rate Coefficient; 6.2.1.2. Dissociation Rate Coefficient; 6.2.2. Dual-Fractal Analysis; 6.2.2.1. Binding Rate Coefficient; 6.3. Results; 6.4. Conclusions; References; Further Reading; Chapter 7: Detection of Cancer Biomarkers by SPR and Optofluidic Ring Resonance Sensors; 7.1. Introduction; 7.2. Theory; 7.2.1. Single-Fractal Analysis; 7.2.1.1. Binding Rate Coefficient; 7.2.1.2. Dissociation Rate Coefficient; 7.2.2. Dual-Fractal Analysis 7.2.2.1. Binding Rate Coefficient7.3. Results; 7.4. Conclusions; References; Further Reading; Chapter 8: Surface Plasmon Resonance Biosensors; 8.1. Introduction; 8.2. Theory; 8.2.1. Single-Fractal Analysis; 8.2.1.1. Binding Rate Coefficient; 8.2.1.2. Dissociation Rate Coefficient; 8.2.2. Dual-Fractal Analysis; 8.2.2.1. Binding Rate Coefficient; 8.3. Results; 8.4. Conclusions; References; Further Reading; Chapter 9: Surface Plasmon Resonance Imaging Biosensors; 9.1. Introduction; 9.2. Theory; 9.2.1. Single-Fractal Analysis; 9.2.1.1. Binding Rate Coefficient Chemical kinetics Biosensors Fractal analysis Surfaces (Technology) Analysis Biosensing Techniques (DNLM)D015374 SCIENCE ; Chemistry ; Physical & Theoretical Biosensors Chemical kinetics Fractal analysis Surfaces (Technology) ; Analysis Biocapteurs (CaQQLa)201-0165323 Surfaces (Technologie) - Analyse (CaQQLa)201-0440005 Analyse fractale (CaQQLa)000287248 Cinétique chimique (CaQQLa)201-0021231 Electronic books Electronic books Sadana, Neeti verfasserin aut Sadana, Richa verfasserin aut 9780444638724 Erscheint auch als Druck-Ausgabe Sadana, Ajit, 1947- Fractal analysis of chemical kinetics with applications to biological and biosensor interfaces Amsterdam, Netherlands ; Cambridge, MA : Elsevier, [2018] 0444638725 9780444638724 https://www.sciencedirect.com/science/book/9780444638724 X:ELSEVIER Verlag lizenzpflichtig Volltext http://www.sciencedirect.com/science/book/9780444638724 Verlag Volltext (DE-627)102810183X GBV-33-Freedom 2022 BSZ-33-EBS-HSAA GBV-33-EBS-MRI GBV-33-EBS-ZHB GBV-33-Freedom 2021 ZDB-33-CEN 2018 ZDB-33-EBS ZDB-33-ESD BSZ-33-EBS-C1UB GBV_ILN_105 ISIL_DE-841 SYSFLAG_1 GBV_KXP GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2020 ISIL_DE-Ch1 GBV_ILN_2111 ISIL_DE-944 BO 045F 541.394 045F 541.394 105 01 0841 4074452391 OLR-ELV-TEST Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. Testzugang ZHB Lübeck z 26-02-22 370 01 4370 4540272799 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 20-06-24 2020 01 DE-Ch1 4520355125 00 --%%-- --%%-- n n Campuslizenz l01 03-05-24 2111 02 DE-944 4046040890 00 --%%-- E-Book Elsevier --%%-- n Elektronischer Volltext - Campuslizenz l01 27-01-22 105 01 0841 http://www.sciencedirect.com/science/book/9780444638724 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von außerhalb nur für HCU-Angehörige möglich https://www.sciencedirect.com/science/book/9780444638724 2020 01 DE-Ch1 https://www.sciencedirect.com/science/book/9780444638724 2111 02 DE-944 https://www.sciencedirect.com/science/book/9780444638724 105 01 0841 OLR-ELV-TEST 370 01 4370 EBS Elsevier |
allfields_unstemmed |
0444638822 electronic bk. 0-444-63882-2 (DE-627)1683706722 (DE-576)517999137 (DE-599)KEP026964023 (OCoLC)045069013 (EBP)026964023 (ELSEVIER)on1045069013 DE-627 eng DE-627 rda eng XA-NL QD502 SCI013050 bisacsh SCI 013050 bisacsh SCI 013050 bisacsh Sadana, Ajit 1947- verfasserin aut A fractal analysis of chemical kinetics with applications to biological and biosensor interfaces Ajit Sadana, Neeti Sadana, Richa Sadana Amsterdam, Netherlands Cambridge, MA Elsevier [2018] ©2018 1 Online-Ressource Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Includes bibliographical references and index Front Cover; A Fractal Analysis of Chemical Kinetics with Applications to Biological and Biosensor Interfaces; Copyright; Contents; Preface; Chapter 1: Introduction; 1.1. Introduction; 1.2. Chapter Contents; References; Chapter 2: Modeling and Theory; 2.1. Introduction; 2.2. Theory; 2.3. Variable Rate Coefficient; 2.4. Single-Fractal Analysis; 2.4.1. Binding Rate Coefficient; 2.4.2. Dissociation Rate Coefficient; 2.5. Dual-Fractal Analysis; 2.5.1. Binding Rate Coefficient; 2.5.2. Dissociation Rate Coefficient; 2.6. Triple-Fractal Analysis; 2.7. Pfeifer's Fractal Binding Rate Theory 2.8. The Mautner Model2.9. Kinetics of Analyte Capture on Nanoscale Sensors (Solomon and Paul, 2006); 2.10. Probing the Functional Heterogeneity of Surface Binding Sites Along With the Effect of Mass Transport Limitation an ... ; References; Further Reading; Chapter 3: Different Instrumentation Techniques; 3.1. Introduction; 3.2. Theory; 3.2.1. Single-Fractal Analysis; 3.2.1.1. Binding Rate Coefficient; 3.2.1.2. Dissociation Rate Coefficient; 3.2.2. Dual-Fractal Analysis; 3.2.2.1. Binding Rate Coefficient; 3.3. Results; 3.4. Conclusions; References; Further Reading; Chapter 4: Nanobiosensors 4.1. Introduction4.2. Theory; 4.2.1. Single-Fractal Analysis; 4.2.1.1. Binding Rate Coefficient.; 4.2.1.2. Dissociation Rate Coefficient; 4.2.2. Dual-Fractal Analysis; 4.2.2.1. Binding Rate Coefficient; 4.3. Results; 4.4. Conclusions; References; Further Reading; Chapter 5: DNA Biosensors; 5.1. Introduction; 5.2. Theory; 5.2.1. Single-Fractal Analysis; 5.2.1.1. Binding Rate Coefficient; 5.2.1.2. Dissociation Rate Coefficient; 5.2.2. Dual-Fractal Analysis; 5.2.2.1. Binding Rate Coefficient; 5.3. Results; 5.4. Conclusions; References; Further Reading Chapter 6: Carbohydrate-Receptor Interactions6.1. Introduction; 6.2. Theory; 6.2.1. Single-Fractal Analysis; 6.2.1.1. Binding Rate Coefficient; 6.2.1.2. Dissociation Rate Coefficient; 6.2.2. Dual-Fractal Analysis; 6.2.2.1. Binding Rate Coefficient; 6.3. Results; 6.4. Conclusions; References; Further Reading; Chapter 7: Detection of Cancer Biomarkers by SPR and Optofluidic Ring Resonance Sensors; 7.1. Introduction; 7.2. Theory; 7.2.1. Single-Fractal Analysis; 7.2.1.1. Binding Rate Coefficient; 7.2.1.2. Dissociation Rate Coefficient; 7.2.2. Dual-Fractal Analysis 7.2.2.1. Binding Rate Coefficient7.3. Results; 7.4. Conclusions; References; Further Reading; Chapter 8: Surface Plasmon Resonance Biosensors; 8.1. Introduction; 8.2. Theory; 8.2.1. Single-Fractal Analysis; 8.2.1.1. Binding Rate Coefficient; 8.2.1.2. Dissociation Rate Coefficient; 8.2.2. Dual-Fractal Analysis; 8.2.2.1. Binding Rate Coefficient; 8.3. Results; 8.4. Conclusions; References; Further Reading; Chapter 9: Surface Plasmon Resonance Imaging Biosensors; 9.1. Introduction; 9.2. Theory; 9.2.1. Single-Fractal Analysis; 9.2.1.1. Binding Rate Coefficient Chemical kinetics Biosensors Fractal analysis Surfaces (Technology) Analysis Biosensing Techniques (DNLM)D015374 SCIENCE ; Chemistry ; Physical & Theoretical Biosensors Chemical kinetics Fractal analysis Surfaces (Technology) ; Analysis Biocapteurs (CaQQLa)201-0165323 Surfaces (Technologie) - Analyse (CaQQLa)201-0440005 Analyse fractale (CaQQLa)000287248 Cinétique chimique (CaQQLa)201-0021231 Electronic books Electronic books Sadana, Neeti verfasserin aut Sadana, Richa verfasserin aut 9780444638724 Erscheint auch als Druck-Ausgabe Sadana, Ajit, 1947- Fractal analysis of chemical kinetics with applications to biological and biosensor interfaces Amsterdam, Netherlands ; Cambridge, MA : Elsevier, [2018] 0444638725 9780444638724 https://www.sciencedirect.com/science/book/9780444638724 X:ELSEVIER Verlag lizenzpflichtig Volltext http://www.sciencedirect.com/science/book/9780444638724 Verlag Volltext (DE-627)102810183X GBV-33-Freedom 2022 BSZ-33-EBS-HSAA GBV-33-EBS-MRI GBV-33-EBS-ZHB GBV-33-Freedom 2021 ZDB-33-CEN 2018 ZDB-33-EBS ZDB-33-ESD BSZ-33-EBS-C1UB GBV_ILN_105 ISIL_DE-841 SYSFLAG_1 GBV_KXP GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2020 ISIL_DE-Ch1 GBV_ILN_2111 ISIL_DE-944 BO 045F 541.394 045F 541.394 105 01 0841 4074452391 OLR-ELV-TEST Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. Testzugang ZHB Lübeck z 26-02-22 370 01 4370 4540272799 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 20-06-24 2020 01 DE-Ch1 4520355125 00 --%%-- --%%-- n n Campuslizenz l01 03-05-24 2111 02 DE-944 4046040890 00 --%%-- E-Book Elsevier --%%-- n Elektronischer Volltext - Campuslizenz l01 27-01-22 105 01 0841 http://www.sciencedirect.com/science/book/9780444638724 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von außerhalb nur für HCU-Angehörige möglich https://www.sciencedirect.com/science/book/9780444638724 2020 01 DE-Ch1 https://www.sciencedirect.com/science/book/9780444638724 2111 02 DE-944 https://www.sciencedirect.com/science/book/9780444638724 105 01 0841 OLR-ELV-TEST 370 01 4370 EBS Elsevier |
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0444638822 electronic bk. 0-444-63882-2 (DE-627)1683706722 (DE-576)517999137 (DE-599)KEP026964023 (OCoLC)045069013 (EBP)026964023 (ELSEVIER)on1045069013 DE-627 eng DE-627 rda eng XA-NL QD502 SCI013050 bisacsh SCI 013050 bisacsh SCI 013050 bisacsh Sadana, Ajit 1947- verfasserin aut A fractal analysis of chemical kinetics with applications to biological and biosensor interfaces Ajit Sadana, Neeti Sadana, Richa Sadana Amsterdam, Netherlands Cambridge, MA Elsevier [2018] ©2018 1 Online-Ressource Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Includes bibliographical references and index Front Cover; A Fractal Analysis of Chemical Kinetics with Applications to Biological and Biosensor Interfaces; Copyright; Contents; Preface; Chapter 1: Introduction; 1.1. Introduction; 1.2. Chapter Contents; References; Chapter 2: Modeling and Theory; 2.1. Introduction; 2.2. Theory; 2.3. Variable Rate Coefficient; 2.4. Single-Fractal Analysis; 2.4.1. Binding Rate Coefficient; 2.4.2. Dissociation Rate Coefficient; 2.5. Dual-Fractal Analysis; 2.5.1. Binding Rate Coefficient; 2.5.2. Dissociation Rate Coefficient; 2.6. Triple-Fractal Analysis; 2.7. Pfeifer's Fractal Binding Rate Theory 2.8. The Mautner Model2.9. Kinetics of Analyte Capture on Nanoscale Sensors (Solomon and Paul, 2006); 2.10. Probing the Functional Heterogeneity of Surface Binding Sites Along With the Effect of Mass Transport Limitation an ... ; References; Further Reading; Chapter 3: Different Instrumentation Techniques; 3.1. Introduction; 3.2. Theory; 3.2.1. Single-Fractal Analysis; 3.2.1.1. Binding Rate Coefficient; 3.2.1.2. Dissociation Rate Coefficient; 3.2.2. Dual-Fractal Analysis; 3.2.2.1. Binding Rate Coefficient; 3.3. Results; 3.4. Conclusions; References; Further Reading; Chapter 4: Nanobiosensors 4.1. Introduction4.2. Theory; 4.2.1. Single-Fractal Analysis; 4.2.1.1. Binding Rate Coefficient.; 4.2.1.2. Dissociation Rate Coefficient; 4.2.2. Dual-Fractal Analysis; 4.2.2.1. Binding Rate Coefficient; 4.3. Results; 4.4. Conclusions; References; Further Reading; Chapter 5: DNA Biosensors; 5.1. Introduction; 5.2. Theory; 5.2.1. Single-Fractal Analysis; 5.2.1.1. Binding Rate Coefficient; 5.2.1.2. Dissociation Rate Coefficient; 5.2.2. Dual-Fractal Analysis; 5.2.2.1. Binding Rate Coefficient; 5.3. Results; 5.4. Conclusions; References; Further Reading Chapter 6: Carbohydrate-Receptor Interactions6.1. Introduction; 6.2. Theory; 6.2.1. Single-Fractal Analysis; 6.2.1.1. Binding Rate Coefficient; 6.2.1.2. Dissociation Rate Coefficient; 6.2.2. Dual-Fractal Analysis; 6.2.2.1. Binding Rate Coefficient; 6.3. Results; 6.4. Conclusions; References; Further Reading; Chapter 7: Detection of Cancer Biomarkers by SPR and Optofluidic Ring Resonance Sensors; 7.1. Introduction; 7.2. Theory; 7.2.1. Single-Fractal Analysis; 7.2.1.1. Binding Rate Coefficient; 7.2.1.2. Dissociation Rate Coefficient; 7.2.2. Dual-Fractal Analysis 7.2.2.1. Binding Rate Coefficient7.3. Results; 7.4. Conclusions; References; Further Reading; Chapter 8: Surface Plasmon Resonance Biosensors; 8.1. Introduction; 8.2. Theory; 8.2.1. Single-Fractal Analysis; 8.2.1.1. Binding Rate Coefficient; 8.2.1.2. Dissociation Rate Coefficient; 8.2.2. Dual-Fractal Analysis; 8.2.2.1. Binding Rate Coefficient; 8.3. Results; 8.4. Conclusions; References; Further Reading; Chapter 9: Surface Plasmon Resonance Imaging Biosensors; 9.1. Introduction; 9.2. Theory; 9.2.1. Single-Fractal Analysis; 9.2.1.1. Binding Rate Coefficient Chemical kinetics Biosensors Fractal analysis Surfaces (Technology) Analysis Biosensing Techniques (DNLM)D015374 SCIENCE ; Chemistry ; Physical & Theoretical Biosensors Chemical kinetics Fractal analysis Surfaces (Technology) ; Analysis Biocapteurs (CaQQLa)201-0165323 Surfaces (Technologie) - Analyse (CaQQLa)201-0440005 Analyse fractale (CaQQLa)000287248 Cinétique chimique (CaQQLa)201-0021231 Electronic books Electronic books Sadana, Neeti verfasserin aut Sadana, Richa verfasserin aut 9780444638724 Erscheint auch als Druck-Ausgabe Sadana, Ajit, 1947- Fractal analysis of chemical kinetics with applications to biological and biosensor interfaces Amsterdam, Netherlands ; Cambridge, MA : Elsevier, [2018] 0444638725 9780444638724 https://www.sciencedirect.com/science/book/9780444638724 X:ELSEVIER Verlag lizenzpflichtig Volltext http://www.sciencedirect.com/science/book/9780444638724 Verlag Volltext (DE-627)102810183X GBV-33-Freedom 2022 BSZ-33-EBS-HSAA GBV-33-EBS-MRI GBV-33-EBS-ZHB GBV-33-Freedom 2021 ZDB-33-CEN 2018 ZDB-33-EBS ZDB-33-ESD BSZ-33-EBS-C1UB GBV_ILN_105 ISIL_DE-841 SYSFLAG_1 GBV_KXP GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2020 ISIL_DE-Ch1 GBV_ILN_2111 ISIL_DE-944 BO 045F 541.394 045F 541.394 105 01 0841 4074452391 OLR-ELV-TEST Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. Testzugang ZHB Lübeck z 26-02-22 370 01 4370 4540272799 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 20-06-24 2020 01 DE-Ch1 4520355125 00 --%%-- --%%-- n n Campuslizenz l01 03-05-24 2111 02 DE-944 4046040890 00 --%%-- E-Book Elsevier --%%-- n Elektronischer Volltext - Campuslizenz l01 27-01-22 105 01 0841 http://www.sciencedirect.com/science/book/9780444638724 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von außerhalb nur für HCU-Angehörige möglich https://www.sciencedirect.com/science/book/9780444638724 2020 01 DE-Ch1 https://www.sciencedirect.com/science/book/9780444638724 2111 02 DE-944 https://www.sciencedirect.com/science/book/9780444638724 105 01 0841 OLR-ELV-TEST 370 01 4370 EBS Elsevier |
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0444638822 electronic bk. 0-444-63882-2 (DE-627)1683706722 (DE-576)517999137 (DE-599)KEP026964023 (OCoLC)045069013 (EBP)026964023 (ELSEVIER)on1045069013 DE-627 eng DE-627 rda eng XA-NL QD502 SCI013050 bisacsh SCI 013050 bisacsh SCI 013050 bisacsh Sadana, Ajit 1947- verfasserin aut A fractal analysis of chemical kinetics with applications to biological and biosensor interfaces Ajit Sadana, Neeti Sadana, Richa Sadana Amsterdam, Netherlands Cambridge, MA Elsevier [2018] ©2018 1 Online-Ressource Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Includes bibliographical references and index Front Cover; A Fractal Analysis of Chemical Kinetics with Applications to Biological and Biosensor Interfaces; Copyright; Contents; Preface; Chapter 1: Introduction; 1.1. Introduction; 1.2. Chapter Contents; References; Chapter 2: Modeling and Theory; 2.1. Introduction; 2.2. Theory; 2.3. Variable Rate Coefficient; 2.4. Single-Fractal Analysis; 2.4.1. Binding Rate Coefficient; 2.4.2. Dissociation Rate Coefficient; 2.5. Dual-Fractal Analysis; 2.5.1. Binding Rate Coefficient; 2.5.2. Dissociation Rate Coefficient; 2.6. Triple-Fractal Analysis; 2.7. Pfeifer's Fractal Binding Rate Theory 2.8. The Mautner Model2.9. Kinetics of Analyte Capture on Nanoscale Sensors (Solomon and Paul, 2006); 2.10. Probing the Functional Heterogeneity of Surface Binding Sites Along With the Effect of Mass Transport Limitation an ... ; References; Further Reading; Chapter 3: Different Instrumentation Techniques; 3.1. Introduction; 3.2. Theory; 3.2.1. Single-Fractal Analysis; 3.2.1.1. Binding Rate Coefficient; 3.2.1.2. Dissociation Rate Coefficient; 3.2.2. Dual-Fractal Analysis; 3.2.2.1. Binding Rate Coefficient; 3.3. Results; 3.4. Conclusions; References; Further Reading; Chapter 4: Nanobiosensors 4.1. Introduction4.2. Theory; 4.2.1. Single-Fractal Analysis; 4.2.1.1. Binding Rate Coefficient.; 4.2.1.2. Dissociation Rate Coefficient; 4.2.2. Dual-Fractal Analysis; 4.2.2.1. Binding Rate Coefficient; 4.3. Results; 4.4. Conclusions; References; Further Reading; Chapter 5: DNA Biosensors; 5.1. Introduction; 5.2. Theory; 5.2.1. Single-Fractal Analysis; 5.2.1.1. Binding Rate Coefficient; 5.2.1.2. Dissociation Rate Coefficient; 5.2.2. Dual-Fractal Analysis; 5.2.2.1. Binding Rate Coefficient; 5.3. Results; 5.4. Conclusions; References; Further Reading Chapter 6: Carbohydrate-Receptor Interactions6.1. Introduction; 6.2. Theory; 6.2.1. Single-Fractal Analysis; 6.2.1.1. Binding Rate Coefficient; 6.2.1.2. Dissociation Rate Coefficient; 6.2.2. Dual-Fractal Analysis; 6.2.2.1. Binding Rate Coefficient; 6.3. Results; 6.4. Conclusions; References; Further Reading; Chapter 7: Detection of Cancer Biomarkers by SPR and Optofluidic Ring Resonance Sensors; 7.1. Introduction; 7.2. Theory; 7.2.1. Single-Fractal Analysis; 7.2.1.1. Binding Rate Coefficient; 7.2.1.2. Dissociation Rate Coefficient; 7.2.2. Dual-Fractal Analysis 7.2.2.1. Binding Rate Coefficient7.3. Results; 7.4. Conclusions; References; Further Reading; Chapter 8: Surface Plasmon Resonance Biosensors; 8.1. Introduction; 8.2. Theory; 8.2.1. Single-Fractal Analysis; 8.2.1.1. Binding Rate Coefficient; 8.2.1.2. Dissociation Rate Coefficient; 8.2.2. Dual-Fractal Analysis; 8.2.2.1. Binding Rate Coefficient; 8.3. Results; 8.4. Conclusions; References; Further Reading; Chapter 9: Surface Plasmon Resonance Imaging Biosensors; 9.1. Introduction; 9.2. Theory; 9.2.1. Single-Fractal Analysis; 9.2.1.1. Binding Rate Coefficient Chemical kinetics Biosensors Fractal analysis Surfaces (Technology) Analysis Biosensing Techniques (DNLM)D015374 SCIENCE ; Chemistry ; Physical & Theoretical Biosensors Chemical kinetics Fractal analysis Surfaces (Technology) ; Analysis Biocapteurs (CaQQLa)201-0165323 Surfaces (Technologie) - Analyse (CaQQLa)201-0440005 Analyse fractale (CaQQLa)000287248 Cinétique chimique (CaQQLa)201-0021231 Electronic books Electronic books Sadana, Neeti verfasserin aut Sadana, Richa verfasserin aut 9780444638724 Erscheint auch als Druck-Ausgabe Sadana, Ajit, 1947- Fractal analysis of chemical kinetics with applications to biological and biosensor interfaces Amsterdam, Netherlands ; Cambridge, MA : Elsevier, [2018] 0444638725 9780444638724 https://www.sciencedirect.com/science/book/9780444638724 X:ELSEVIER Verlag lizenzpflichtig Volltext http://www.sciencedirect.com/science/book/9780444638724 Verlag Volltext (DE-627)102810183X GBV-33-Freedom 2022 BSZ-33-EBS-HSAA GBV-33-EBS-MRI GBV-33-EBS-ZHB GBV-33-Freedom 2021 ZDB-33-CEN 2018 ZDB-33-EBS ZDB-33-ESD BSZ-33-EBS-C1UB GBV_ILN_105 ISIL_DE-841 SYSFLAG_1 GBV_KXP GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2020 ISIL_DE-Ch1 GBV_ILN_2111 ISIL_DE-944 BO 045F 541.394 045F 541.394 105 01 0841 4074452391 OLR-ELV-TEST Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. Testzugang ZHB Lübeck z 26-02-22 370 01 4370 4540272799 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 20-06-24 2020 01 DE-Ch1 4520355125 00 --%%-- --%%-- n n Campuslizenz l01 03-05-24 2111 02 DE-944 4046040890 00 --%%-- E-Book Elsevier --%%-- n Elektronischer Volltext - Campuslizenz l01 27-01-22 105 01 0841 http://www.sciencedirect.com/science/book/9780444638724 370 01 4370 E-Book: Zugriff im HCU-Netz. 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Front Cover; A Fractal Analysis of Chemical Kinetics with Applications to Biological and Biosensor Interfaces; Copyright; Contents; Preface; Chapter 1: Introduction; 1.1. Introduction; 1.2. Chapter Contents; References; Chapter 2: Modeling and Theory; 2.1. Introduction; 2.2. Theory; 2.3. Variable Rate Coefficient; 2.4. Single-Fractal Analysis; 2.4.1. Binding Rate Coefficient; 2.4.2. Dissociation Rate Coefficient; 2.5. Dual-Fractal Analysis; 2.5.1. Binding Rate Coefficient; 2.5.2. Dissociation Rate Coefficient; 2.6. Triple-Fractal Analysis; 2.7. Pfeifer's Fractal Binding Rate Theory 2.8. The Mautner Model2.9. Kinetics of Analyte Capture on Nanoscale Sensors (Solomon and Paul, 2006); 2.10. Probing the Functional Heterogeneity of Surface Binding Sites Along With the Effect of Mass Transport Limitation an ... ; References; Further Reading; Chapter 3: Different Instrumentation Techniques; 3.1. Introduction; 3.2. Theory; 3.2.1. Single-Fractal Analysis; 3.2.1.1. Binding Rate Coefficient; 3.2.1.2. Dissociation Rate Coefficient; 3.2.2. Dual-Fractal Analysis; 3.2.2.1. Binding Rate Coefficient; 3.3. Results; 3.4. Conclusions; References; Further Reading; Chapter 4: Nanobiosensors 4.1. Introduction4.2. Theory; 4.2.1. Single-Fractal Analysis; 4.2.1.1. Binding Rate Coefficient.; 4.2.1.2. Dissociation Rate Coefficient; 4.2.2. Dual-Fractal Analysis; 4.2.2.1. Binding Rate Coefficient; 4.3. Results; 4.4. Conclusions; References; Further Reading; Chapter 5: DNA Biosensors; 5.1. Introduction; 5.2. Theory; 5.2.1. Single-Fractal Analysis; 5.2.1.1. Binding Rate Coefficient; 5.2.1.2. Dissociation Rate Coefficient; 5.2.2. Dual-Fractal Analysis; 5.2.2.1. Binding Rate Coefficient; 5.3. Results; 5.4. Conclusions; References; Further Reading Chapter 6: Carbohydrate-Receptor Interactions6.1. Introduction; 6.2. Theory; 6.2.1. Single-Fractal Analysis; 6.2.1.1. Binding Rate Coefficient; 6.2.1.2. Dissociation Rate Coefficient; 6.2.2. Dual-Fractal Analysis; 6.2.2.1. Binding Rate Coefficient; 6.3. Results; 6.4. Conclusions; References; Further Reading; Chapter 7: Detection of Cancer Biomarkers by SPR and Optofluidic Ring Resonance Sensors; 7.1. Introduction; 7.2. Theory; 7.2.1. Single-Fractal Analysis; 7.2.1.1. Binding Rate Coefficient; 7.2.1.2. Dissociation Rate Coefficient; 7.2.2. Dual-Fractal Analysis 7.2.2.1. Binding Rate Coefficient7.3. Results; 7.4. Conclusions; References; Further Reading; Chapter 8: Surface Plasmon Resonance Biosensors; 8.1. Introduction; 8.2. Theory; 8.2.1. Single-Fractal Analysis; 8.2.1.1. Binding Rate Coefficient; 8.2.1.2. Dissociation Rate Coefficient; 8.2.2. Dual-Fractal Analysis; 8.2.2.1. Binding Rate Coefficient; 8.3. Results; 8.4. Conclusions; References; Further Reading; Chapter 9: Surface Plasmon Resonance Imaging Biosensors; 9.1. Introduction; 9.2. Theory; 9.2.1. Single-Fractal Analysis; 9.2.1.1. Binding Rate Coefficient Includes bibliographical references and index |
abstractGer |
Front Cover; A Fractal Analysis of Chemical Kinetics with Applications to Biological and Biosensor Interfaces; Copyright; Contents; Preface; Chapter 1: Introduction; 1.1. Introduction; 1.2. Chapter Contents; References; Chapter 2: Modeling and Theory; 2.1. Introduction; 2.2. Theory; 2.3. Variable Rate Coefficient; 2.4. Single-Fractal Analysis; 2.4.1. Binding Rate Coefficient; 2.4.2. Dissociation Rate Coefficient; 2.5. Dual-Fractal Analysis; 2.5.1. Binding Rate Coefficient; 2.5.2. Dissociation Rate Coefficient; 2.6. Triple-Fractal Analysis; 2.7. Pfeifer's Fractal Binding Rate Theory 2.8. The Mautner Model2.9. Kinetics of Analyte Capture on Nanoscale Sensors (Solomon and Paul, 2006); 2.10. Probing the Functional Heterogeneity of Surface Binding Sites Along With the Effect of Mass Transport Limitation an ... ; References; Further Reading; Chapter 3: Different Instrumentation Techniques; 3.1. Introduction; 3.2. Theory; 3.2.1. Single-Fractal Analysis; 3.2.1.1. Binding Rate Coefficient; 3.2.1.2. Dissociation Rate Coefficient; 3.2.2. Dual-Fractal Analysis; 3.2.2.1. Binding Rate Coefficient; 3.3. Results; 3.4. Conclusions; References; Further Reading; Chapter 4: Nanobiosensors 4.1. Introduction4.2. Theory; 4.2.1. Single-Fractal Analysis; 4.2.1.1. Binding Rate Coefficient.; 4.2.1.2. Dissociation Rate Coefficient; 4.2.2. Dual-Fractal Analysis; 4.2.2.1. Binding Rate Coefficient; 4.3. Results; 4.4. Conclusions; References; Further Reading; Chapter 5: DNA Biosensors; 5.1. Introduction; 5.2. Theory; 5.2.1. Single-Fractal Analysis; 5.2.1.1. Binding Rate Coefficient; 5.2.1.2. Dissociation Rate Coefficient; 5.2.2. Dual-Fractal Analysis; 5.2.2.1. Binding Rate Coefficient; 5.3. Results; 5.4. Conclusions; References; Further Reading Chapter 6: Carbohydrate-Receptor Interactions6.1. Introduction; 6.2. Theory; 6.2.1. Single-Fractal Analysis; 6.2.1.1. Binding Rate Coefficient; 6.2.1.2. Dissociation Rate Coefficient; 6.2.2. Dual-Fractal Analysis; 6.2.2.1. Binding Rate Coefficient; 6.3. Results; 6.4. Conclusions; References; Further Reading; Chapter 7: Detection of Cancer Biomarkers by SPR and Optofluidic Ring Resonance Sensors; 7.1. Introduction; 7.2. Theory; 7.2.1. Single-Fractal Analysis; 7.2.1.1. Binding Rate Coefficient; 7.2.1.2. Dissociation Rate Coefficient; 7.2.2. Dual-Fractal Analysis 7.2.2.1. Binding Rate Coefficient7.3. Results; 7.4. Conclusions; References; Further Reading; Chapter 8: Surface Plasmon Resonance Biosensors; 8.1. Introduction; 8.2. Theory; 8.2.1. Single-Fractal Analysis; 8.2.1.1. Binding Rate Coefficient; 8.2.1.2. Dissociation Rate Coefficient; 8.2.2. Dual-Fractal Analysis; 8.2.2.1. Binding Rate Coefficient; 8.3. Results; 8.4. Conclusions; References; Further Reading; Chapter 9: Surface Plasmon Resonance Imaging Biosensors; 9.1. Introduction; 9.2. Theory; 9.2.1. Single-Fractal Analysis; 9.2.1.1. Binding Rate Coefficient Includes bibliographical references and index |
abstract_unstemmed |
Front Cover; A Fractal Analysis of Chemical Kinetics with Applications to Biological and Biosensor Interfaces; Copyright; Contents; Preface; Chapter 1: Introduction; 1.1. Introduction; 1.2. Chapter Contents; References; Chapter 2: Modeling and Theory; 2.1. Introduction; 2.2. Theory; 2.3. Variable Rate Coefficient; 2.4. Single-Fractal Analysis; 2.4.1. Binding Rate Coefficient; 2.4.2. Dissociation Rate Coefficient; 2.5. Dual-Fractal Analysis; 2.5.1. Binding Rate Coefficient; 2.5.2. Dissociation Rate Coefficient; 2.6. Triple-Fractal Analysis; 2.7. Pfeifer's Fractal Binding Rate Theory 2.8. The Mautner Model2.9. Kinetics of Analyte Capture on Nanoscale Sensors (Solomon and Paul, 2006); 2.10. Probing the Functional Heterogeneity of Surface Binding Sites Along With the Effect of Mass Transport Limitation an ... ; References; Further Reading; Chapter 3: Different Instrumentation Techniques; 3.1. Introduction; 3.2. Theory; 3.2.1. Single-Fractal Analysis; 3.2.1.1. Binding Rate Coefficient; 3.2.1.2. Dissociation Rate Coefficient; 3.2.2. Dual-Fractal Analysis; 3.2.2.1. Binding Rate Coefficient; 3.3. Results; 3.4. Conclusions; References; Further Reading; Chapter 4: Nanobiosensors 4.1. Introduction4.2. Theory; 4.2.1. Single-Fractal Analysis; 4.2.1.1. Binding Rate Coefficient.; 4.2.1.2. Dissociation Rate Coefficient; 4.2.2. Dual-Fractal Analysis; 4.2.2.1. Binding Rate Coefficient; 4.3. Results; 4.4. Conclusions; References; Further Reading; Chapter 5: DNA Biosensors; 5.1. Introduction; 5.2. Theory; 5.2.1. Single-Fractal Analysis; 5.2.1.1. Binding Rate Coefficient; 5.2.1.2. Dissociation Rate Coefficient; 5.2.2. Dual-Fractal Analysis; 5.2.2.1. Binding Rate Coefficient; 5.3. Results; 5.4. Conclusions; References; Further Reading Chapter 6: Carbohydrate-Receptor Interactions6.1. Introduction; 6.2. Theory; 6.2.1. Single-Fractal Analysis; 6.2.1.1. Binding Rate Coefficient; 6.2.1.2. Dissociation Rate Coefficient; 6.2.2. Dual-Fractal Analysis; 6.2.2.1. Binding Rate Coefficient; 6.3. Results; 6.4. Conclusions; References; Further Reading; Chapter 7: Detection of Cancer Biomarkers by SPR and Optofluidic Ring Resonance Sensors; 7.1. Introduction; 7.2. Theory; 7.2.1. Single-Fractal Analysis; 7.2.1.1. Binding Rate Coefficient; 7.2.1.2. Dissociation Rate Coefficient; 7.2.2. Dual-Fractal Analysis 7.2.2.1. Binding Rate Coefficient7.3. Results; 7.4. Conclusions; References; Further Reading; Chapter 8: Surface Plasmon Resonance Biosensors; 8.1. Introduction; 8.2. Theory; 8.2.1. Single-Fractal Analysis; 8.2.1.1. Binding Rate Coefficient; 8.2.1.2. Dissociation Rate Coefficient; 8.2.2. Dual-Fractal Analysis; 8.2.2.1. Binding Rate Coefficient; 8.3. Results; 8.4. Conclusions; References; Further Reading; Chapter 9: Surface Plasmon Resonance Imaging Biosensors; 9.1. Introduction; 9.2. Theory; 9.2.1. Single-Fractal Analysis; 9.2.1.1. Binding Rate Coefficient Includes bibliographical references and index |
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title_short |
A fractal analysis of chemical kinetics with applications to biological and biosensor interfaces |
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