侧链长度对棒状聚硅烷近晶层间角鲨烷分离的影响

T. Tanaka, Itsuki Kato, K. Okoshi
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引用次数: 1

摘要

采用同步辐射小角x射线散射(SR-SAXS)、原子力显微镜(AFM)观察和分子动力学模拟等方法研究了具有窄分子量分布的棒状聚合物(聚硅烷)的球状分子(角鲨烷)在近晶层之间的偏析,以阐明聚合物侧链长度对偏析的影响。从理论上预测,当球形颗粒的直径小于棒状颗粒的直径,且棒状颗粒的长度足够长时,将球形颗粒插入到棒状颗粒的近晶层之间的间隙区,可以稳定棒状颗粒的近晶相。我们发现在9200 ~ 44100 g/mol范围内,聚硅烷的分子量(M w)对角鲨烷的偏析没有影响,而对于直径为6.57 nm的角鲨烷,聚硅烷的最佳粒径为5.64 nm,但目前还不清楚这些理论与实验不一致的原因。
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Effect of Side Chain Length on Segregation of Squalane between Smectic Layers Formed by Rod-Like Polysilanes
The segregation of spherical molecules (squalane) between the smectic layers of rod-like polymers (polysilanes) with narrow molecular weight distributions were investigated by synchrotron radiation small-angle X-ray scattering (SR-SAXS), atomic force microscopy (AFM) observations, and molecular dynamics simulations to elucidate the effect of the polymer side chain length on the segregation. It has been theoretically predicted that the smectic phase of the rod-like particles will be stabilized by inserting the spherical particles into the interstitial region between the smectic layers when the diameter of the spherical particles is smaller than that of the rod-like particles whose length is sufficiently long. We found that the segregation of squalane was unaffected by the molecular weight ( M w ) of the polysilane in the range of 9,200-44,100 g/mol, and the diameter of the polysilane showed the optimal size of 5.64 nm for the segregation of squalane whose diameter is 6.57 nm although the origin of these inconsistencies between theory and experiment is currently not clear.
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