部分
弹性体
高分子
圆二色性
材料科学
二面角
共价键
高分子化学
化学
结晶学
分子
立体化学
有机化学
复合材料
氢键
生物化学
作者
Julien Kelber,Amina Bensalah‐Ledoux,Sarah Zahouani,B. Baguenard,Pierre Schaaf,Alain Chaumont,S. Guy,Loı̈c Jierry
标识
DOI:10.1002/anie.202010604
摘要
Abstract Tuning the dihedral angle (DA) of axially chiral compounds can impact biological activity, catalyst efficiency, molecular motor performance, or chiroptical properties. Herein, we report gradual, controlled, and reversible changes in molecular conformation of a covalently linked binaphthyl moiety within a 3D polymeric network by application of a macroscopic stretching force. We managed direct observation of DA changes by measuring the circular dichroism signal of an optically pure BINOL‐crosslinked elastomer network. Stretching the elastomer resulted in a widening of the DA between naphthyl rings when the BINOL was doubly grafted to the elastomer network; no effect was observed when a single naphthyl ring of the BINOL was grafted to the elastomer network. We have determined that ca. 170 % extension of the elastomers led to the transfer of a mechanical force to the BINOL moiety of 2.5 kcal mol −1 Å −1 (ca. 175 pN) in magnitude and results in the opening of the DA of BINOL up to 130°.
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