Morphology dynamics of block copolymer systems
The approach to polymer morphology dynamics developed in our previous paper (Physica 143A (1987) 349) is applied to block copolymer systems. The combination of the reptation idea and the incompressibility requirement introduces correlations among reptative motions, where polymer ends as well as junc...
Ausführliche Beschreibung
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1988 |
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Elsevier Journal Backfiles on ScienceDirect 1907 - 2002 |
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in: Physica A: Statistical Mechanics and its Applications - Amsterdam : Elsevier, 148(1988), 3, Seite 361-413 |
Übergeordnetes Werk: |
volume:148 ; year:1988 ; number:3 ; pages:361-413 |
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NLEJ177377763 |
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520 | |a The approach to polymer morphology dynamics developed in our previous paper (Physica 143A (1987) 349) is applied to block copolymer systems. The combination of the reptation idea and the incompressibility requirement introduces correlations among reptative motions, where polymer ends as well as junction points play important roles. Diffusive motion of smooth deformations of the lamellar structure is derived. The domain wall equation of motion is also derived in the strong segregation limit. However, there are some difficulties in the simple reptation model in this limit which are also discussed. Finally, consequences of certain ways of relaxing the strict incompressibility requirement are discussed. | ||
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(DE-627)NLEJ177377763 (DE-599)GBVNLZ177377763 DE-627 ger DE-627 rakwb eng Morphology dynamics of block copolymer systems 1988 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier The approach to polymer morphology dynamics developed in our previous paper (Physica 143A (1987) 349) is applied to block copolymer systems. The combination of the reptation idea and the incompressibility requirement introduces correlations among reptative motions, where polymer ends as well as junction points play important roles. Diffusive motion of smooth deformations of the lamellar structure is derived. The domain wall equation of motion is also derived in the strong segregation limit. However, there are some difficulties in the simple reptation model in this limit which are also discussed. Finally, consequences of certain ways of relaxing the strict incompressibility requirement are discussed. Elsevier Journal Backfiles on ScienceDirect 1907 - 2002 Kawasaki, K. oth Sekimoto, K. oth in Physica A: Statistical Mechanics and its Applications Amsterdam : Elsevier 148(1988), 3, Seite 361-413 (DE-627)NLEJ177281189 (DE-600)1466577-3 0378-4371 nnns volume:148 year:1988 number:3 pages:361-413 http://linkinghub.elsevier.com/retrieve/pii/0378-4371(88)90080-5 GBV_USEFLAG_H ZDB-1-SDJ GBV_NL_ARTICLE AR 148 1988 3 361-413 |
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(DE-627)NLEJ177377763 (DE-599)GBVNLZ177377763 DE-627 ger DE-627 rakwb eng Morphology dynamics of block copolymer systems 1988 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier The approach to polymer morphology dynamics developed in our previous paper (Physica 143A (1987) 349) is applied to block copolymer systems. The combination of the reptation idea and the incompressibility requirement introduces correlations among reptative motions, where polymer ends as well as junction points play important roles. Diffusive motion of smooth deformations of the lamellar structure is derived. The domain wall equation of motion is also derived in the strong segregation limit. However, there are some difficulties in the simple reptation model in this limit which are also discussed. Finally, consequences of certain ways of relaxing the strict incompressibility requirement are discussed. Elsevier Journal Backfiles on ScienceDirect 1907 - 2002 Kawasaki, K. oth Sekimoto, K. oth in Physica A: Statistical Mechanics and its Applications Amsterdam : Elsevier 148(1988), 3, Seite 361-413 (DE-627)NLEJ177281189 (DE-600)1466577-3 0378-4371 nnns volume:148 year:1988 number:3 pages:361-413 http://linkinghub.elsevier.com/retrieve/pii/0378-4371(88)90080-5 GBV_USEFLAG_H ZDB-1-SDJ GBV_NL_ARTICLE AR 148 1988 3 361-413 |
allfields_unstemmed |
(DE-627)NLEJ177377763 (DE-599)GBVNLZ177377763 DE-627 ger DE-627 rakwb eng Morphology dynamics of block copolymer systems 1988 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier The approach to polymer morphology dynamics developed in our previous paper (Physica 143A (1987) 349) is applied to block copolymer systems. The combination of the reptation idea and the incompressibility requirement introduces correlations among reptative motions, where polymer ends as well as junction points play important roles. Diffusive motion of smooth deformations of the lamellar structure is derived. The domain wall equation of motion is also derived in the strong segregation limit. However, there are some difficulties in the simple reptation model in this limit which are also discussed. Finally, consequences of certain ways of relaxing the strict incompressibility requirement are discussed. Elsevier Journal Backfiles on ScienceDirect 1907 - 2002 Kawasaki, K. oth Sekimoto, K. oth in Physica A: Statistical Mechanics and its Applications Amsterdam : Elsevier 148(1988), 3, Seite 361-413 (DE-627)NLEJ177281189 (DE-600)1466577-3 0378-4371 nnns volume:148 year:1988 number:3 pages:361-413 http://linkinghub.elsevier.com/retrieve/pii/0378-4371(88)90080-5 GBV_USEFLAG_H ZDB-1-SDJ GBV_NL_ARTICLE AR 148 1988 3 361-413 |
allfieldsGer |
(DE-627)NLEJ177377763 (DE-599)GBVNLZ177377763 DE-627 ger DE-627 rakwb eng Morphology dynamics of block copolymer systems 1988 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier The approach to polymer morphology dynamics developed in our previous paper (Physica 143A (1987) 349) is applied to block copolymer systems. The combination of the reptation idea and the incompressibility requirement introduces correlations among reptative motions, where polymer ends as well as junction points play important roles. Diffusive motion of smooth deformations of the lamellar structure is derived. The domain wall equation of motion is also derived in the strong segregation limit. However, there are some difficulties in the simple reptation model in this limit which are also discussed. Finally, consequences of certain ways of relaxing the strict incompressibility requirement are discussed. Elsevier Journal Backfiles on ScienceDirect 1907 - 2002 Kawasaki, K. oth Sekimoto, K. oth in Physica A: Statistical Mechanics and its Applications Amsterdam : Elsevier 148(1988), 3, Seite 361-413 (DE-627)NLEJ177281189 (DE-600)1466577-3 0378-4371 nnns volume:148 year:1988 number:3 pages:361-413 http://linkinghub.elsevier.com/retrieve/pii/0378-4371(88)90080-5 GBV_USEFLAG_H ZDB-1-SDJ GBV_NL_ARTICLE AR 148 1988 3 361-413 |
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(DE-627)NLEJ177377763 (DE-599)GBVNLZ177377763 DE-627 ger DE-627 rakwb eng Morphology dynamics of block copolymer systems 1988 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier The approach to polymer morphology dynamics developed in our previous paper (Physica 143A (1987) 349) is applied to block copolymer systems. The combination of the reptation idea and the incompressibility requirement introduces correlations among reptative motions, where polymer ends as well as junction points play important roles. Diffusive motion of smooth deformations of the lamellar structure is derived. The domain wall equation of motion is also derived in the strong segregation limit. However, there are some difficulties in the simple reptation model in this limit which are also discussed. Finally, consequences of certain ways of relaxing the strict incompressibility requirement are discussed. Elsevier Journal Backfiles on ScienceDirect 1907 - 2002 Kawasaki, K. oth Sekimoto, K. oth in Physica A: Statistical Mechanics and its Applications Amsterdam : Elsevier 148(1988), 3, Seite 361-413 (DE-627)NLEJ177281189 (DE-600)1466577-3 0378-4371 nnns volume:148 year:1988 number:3 pages:361-413 http://linkinghub.elsevier.com/retrieve/pii/0378-4371(88)90080-5 GBV_USEFLAG_H ZDB-1-SDJ GBV_NL_ARTICLE AR 148 1988 3 361-413 |
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abstract |
The approach to polymer morphology dynamics developed in our previous paper (Physica 143A (1987) 349) is applied to block copolymer systems. The combination of the reptation idea and the incompressibility requirement introduces correlations among reptative motions, where polymer ends as well as junction points play important roles. Diffusive motion of smooth deformations of the lamellar structure is derived. The domain wall equation of motion is also derived in the strong segregation limit. However, there are some difficulties in the simple reptation model in this limit which are also discussed. Finally, consequences of certain ways of relaxing the strict incompressibility requirement are discussed. |
abstractGer |
The approach to polymer morphology dynamics developed in our previous paper (Physica 143A (1987) 349) is applied to block copolymer systems. The combination of the reptation idea and the incompressibility requirement introduces correlations among reptative motions, where polymer ends as well as junction points play important roles. Diffusive motion of smooth deformations of the lamellar structure is derived. The domain wall equation of motion is also derived in the strong segregation limit. However, there are some difficulties in the simple reptation model in this limit which are also discussed. Finally, consequences of certain ways of relaxing the strict incompressibility requirement are discussed. |
abstract_unstemmed |
The approach to polymer morphology dynamics developed in our previous paper (Physica 143A (1987) 349) is applied to block copolymer systems. The combination of the reptation idea and the incompressibility requirement introduces correlations among reptative motions, where polymer ends as well as junction points play important roles. Diffusive motion of smooth deformations of the lamellar structure is derived. The domain wall equation of motion is also derived in the strong segregation limit. However, there are some difficulties in the simple reptation model in this limit which are also discussed. Finally, consequences of certain ways of relaxing the strict incompressibility requirement are discussed. |
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