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Stereocomplex Crystallization in Asymmetric Diblock Copolymers Studied by Dynamic Monte Carlo Simulations 被引量:2
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作者 Ying Xu Jun Yang +4 位作者 Zong-Fa Liu Zhi-Ping Zhou zhao-peng liang Tong-Fan Hao Yi-Jing Nie 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2021年第5期632-639,I0008,共9页
Stereocomplex crystallization in asymmetric diblock copolymers was studied using dynamic Monte Carlo simulations,and the key factor dominating the formation of stereocomplex crystallites(SCs)was uncovered.The asymmetr... Stereocomplex crystallization in asymmetric diblock copolymers was studied using dynamic Monte Carlo simulations,and the key factor dominating the formation of stereocomplex crystallites(SCs)was uncovered.The asymmetric diblock copolymers with higher degree of asymmetry exhibit larger difference between volume fractions of beads of different blocks,and local miscibility between different kinds of beads is lower,leading to lower SC content.To minimize the interference from volume fraction of beads,the SC formation in blends of asymmetric diblock copolymers was also studied.For the cases where the volume fractions of beads of different blocks are the same,similar local miscibility between beads of different blocks and similar SC content was observed.These findings indicate that the volume fraction of beads of different blocks is a key factor controlling the SC formation in the asymmetric diblock copolymers.The SC content can be regulated by adjusting the difference between the contents of beads of different blocks in asymmetric diblock copolymers. 展开更多
关键词 Asymmetric diblock copolymers Monte Carlo simulations Stereocomplex crystallization
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Differences in Crystallization Behaviors between Cyclic and Linear Polymer Nanocomposites 被引量:1
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作者 Rong-Juan Liu Zhi-Ping Zhou +4 位作者 Yong Liu zhao-peng liang Yong-Qiang Ming Tong-Fan Hao Yi-Jing Nie 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2020年第9期1034-1044,I0009,共12页
Cyclic polymers exhibit fascinating crystallization behaviors owing to the absence of chain ends and more compact conformations.In the current simulation,dynamic Monte Carlo simulations were performed to reveal the un... Cyclic polymers exhibit fascinating crystallization behaviors owing to the absence of chain ends and more compact conformations.In the current simulation,dynamic Monte Carlo simulations were performed to reveal the underlying mechanism of the effect of chain topology and chain length on crystallization of polymer in solutions containing one-dimensional nanofiller.Simulation results suggested that the filled cyclic polymers exhibit higher melting temperature,higher crystallization temperature,and faster crystallization rate than the analogous linear polymers of identical chain length,especially in the systems with relatively short chains.Based on the Thomson-Gibbs equation,we theoretically analyzed the difference in the melting point between the cyclic and linear polymers under different chain lengths,and derived the dependence of the ratio of the melting point of the linear polymers to that of its cyclic analogs on chain length.In addition,it was also observed that the nanofiller can induce the formation of nanohybrid shish-kebab structure during isothermal crystallization of all systems. 展开更多
关键词 Cyclic polymers Linear polymers CRYSTALLIZATION
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