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非晶态固体中的手性研究:聚合物玻璃态对桥连桨状联萘外消旋化动力学的影响。

Chiral studies in amorphous solids: the effect of the polymeric glassy state on the racemization kinetics of bridged paddled binaphthyls.

作者信息

Park J W, Ediger M D, Green M M

机构信息

Herman F. Mark Polymer Research Institute, Polytechnic University, Six Metrotech Center, Brooklyn, New York 11201, USA.

出版信息

J Am Chem Soc. 2001 Jan 10;123(1):49-56. doi: 10.1021/ja0023231.

Abstract

Optical activity, used here for the first time to gain information about the amorphous solid state, allows previously unavailable insight into the dynamic properties of polymer glasses and their effect on a chemical process. This is accomplished by dispersing in polymer glasses atropisomeric bridged binaphthyls with appended oligophenyl paddles of varying sizes and studying the racemization kinetics as a function of temperature. The racemization occurs by a simple one-dimensional twisting motion and, without effect on the intrinsic mechanism, sweeps out a variable volume of the matrix as the paddle length is increased. The racemization is limited by the polymer matrix only for probes with a minimum paddle size and only when the time scale for racemization is comparable to the time scale for segmental motion of the polymer matrix. The high barrier for this racemization is unique in probe studies of glasses and causes these overlapping time scales to occur significantly below the glass transition temperature. These measurements yield a clear quantitative view of the role of segmental dynamics on the racemization kinetics of the binaphthyls and allow the important demonstration, via the transition from first-order to stretched exponential kinetics, that heterogeneous dynamics persist deep within the glassy state.

摘要

本文首次运用旋光性来获取关于非晶态固体的信息,这使得人们能够洞察此前无法得知的聚合物玻璃态的动态特性及其对化学过程的影响。具体做法是将带有不同尺寸寡聚苯撑桨状结构的阻转异构桥连联萘分散在聚合物玻璃中,并研究消旋动力学随温度的变化。消旋通过简单的一维扭转运动发生,在不影响内在机制的情况下,随着桨状结构长度的增加,会扫过不同体积的基体。仅对于具有最小桨状尺寸的探针,且仅当消旋时间尺度与聚合物基体的链段运动时间尺度相当时,消旋才会受到聚合物基体的限制。这种消旋的高势垒在玻璃态的探针研究中是独特的,并且导致这些重叠的时间尺度在显著低于玻璃化转变温度时出现。这些测量结果清晰地定量展现了链段动力学对联萘消旋动力学的作用,并通过从一级动力学向拉伸指数动力学的转变,重要地证明了非均匀动力学在玻璃态深处持续存在。

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