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具有三蝶烯基序的末端官能化,其显著改变了无定形聚合物的结构和物理性质。

Terminal Functionalization with a Triptycene Motif That Dramatically Changes the Structural and Physical Properties of an Amorphous Polymer.

作者信息

Ishiwari Fumitaka, Okabe Gen, Ogiwara Hibiki, Kajitani Takashi, Tokita Masatoshi, Takata Masaki, Fukushima Takanori

机构信息

Laboratory for Chemistry and Life Science, Institute of Innovative Research , Tokyo Institute of Technology , 4259 Nagatsuta , Midori-ku, Yokohama 226-8503 , Japan.

RIKEN SPring-8 Center , 1-1-1 Kouto , Sayo , Hyogo 679-5148 , Japan.

出版信息

J Am Chem Soc. 2018 Oct 17;140(41):13497-13502. doi: 10.1021/jacs.8b09242. Epub 2018 Oct 8.

Abstract

A surprising terminal-group effect on the structural and physical properties of an amorphous polymer is reported. We recently demonstrated that triptycene derivatives with substituents at the 1,8,13-positions show specific self-assembly behavior, enabling the formation of a well-defined "2D + 1D" structure based on nested hexagonal packing of the triptycenes. Upon terminal functionalization with a 1,8-substituted triptycene (1,8-Trip), a liquid polymer, polydimethylsiloxane (PDMS, M = 18-24 kDa), turned into a highly viscous solid that exhibits birefringence at 25 °C. Small-angle and wide-angle X-ray scattering measurements revealed that the resulting telechelic PDMS assembles into a 2D + 1D structure, where layers of PDMS domains, formed between 2D assemblies of the triptycene termini, stack into a 1D multilayer structure with a layer spacing of 18-20 nm. Because of this structuring, the complex viscosity of the telechelic PDMS was dramatically enhanced, providing a value 4 orders of magnitude greater than that of the original PDMS. Remarkably, the structural and physical properties of PDMS were hardly changed upon terminal functionalization with another regioisomer of triptycene (1,4-Trip), which differs only in the substitution pattern.

摘要

据报道,一种非晶态聚合物的结构和物理性质受到了令人惊讶的端基效应影响。我们最近证明,在1,8,13位带有取代基的三蝶烯衍生物表现出特定的自组装行为,能够基于三蝶烯的嵌套六边形堆积形成明确的“二维 + 一维”结构。用1,8-取代的三蝶烯(1,8-Trip)进行端基官能化后,液态聚合物聚二甲基硅氧烷(PDMS,M = 18 - 24 kDa)变成了一种高粘性固体,在25℃时呈现双折射。小角和广角X射线散射测量表明,所得的遥爪PDMS组装成二维 + 一维结构,其中在三蝶烯端基的二维组装之间形成的PDMS域层堆叠成一维多层结构,层间距为18 - 20 nm。由于这种结构,遥爪PDMS的复数粘度显著提高,比原始PDMS的值大4个数量级。值得注意的是,用三蝶烯的另一种区域异构体(1,4-Trip)进行端基官能化时,PDMS的结构和物理性质几乎没有变化,只是取代模式不同。

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