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Zn(CN)₂ 中负热膨胀横向振动机制的直接观察:原子对分布函数分析

Direct observation of a transverse vibrational mechanism for negative thermal expansion in Zn(CN)2: an atomic pair distribution function analysis.

作者信息

Chapman Karena W, Chupas Peter J, Kepert Cameron J

机构信息

School of Chemistry, University of Sydney, Sydney, NSW 2006 Australia.

出版信息

J Am Chem Soc. 2005 Nov 9;127(44):15630-6. doi: 10.1021/ja055197f.

Abstract

The instantaneous structure of the cyanide-bridged negative thermal expansion (NTE) material Zn(CN)(2) has been probed using atomic pair distribution function (PDF) analysis of high energy X-ray scattering data (100-400 K). The temperature dependence of the atomic separations extracted from the PDFs indicates an increase of the average transverse displacement of the cyanide bridge from the line connecting the Zn(II) centers with increasing temperature. This allows the contraction of non-nearest-neighbor Zn...Zn' and Zn...C/N distances despite the observed expansion of the individual direct Zn-C/N and C-N bonds. Thus, this analysis provides definitive structural confirmation that an increase in the average displacement of bridging atoms is the origin of the NTE behavior. The lattice parameters reveal a slight reduction in the NTE behavior at high temperature from a minimum coefficient of thermal expansion (alpha = dl/ldT) of -19.8 x 10(-6) K(-1) below 180 K, which is attributed to interaction between the doubly interpenetrated frameworks that comprise the structure.

摘要

利用高能X射线散射数据(100 - 400K)的原子对分布函数(PDF)分析,对氰基桥连负热膨胀(NTE)材料Zn(CN)₂的瞬时结构进行了探测。从PDF中提取的原子间距的温度依赖性表明,随着温度升高,氰基桥相对于连接Zn(II)中心的直线的平均横向位移增加。这使得非最近邻的Zn...Zn'和Zn...C/N距离收缩,尽管观察到单个直接Zn - C/N和C - N键有膨胀。因此,该分析提供了明确的结构证据,证明桥连原子平均位移的增加是NTE行为的起源。晶格参数显示,在高温下NTE行为略有降低,低于180K时热膨胀系数(α = dl/ldT)的最小值为 - 19.8×10⁻⁶K⁻¹,这归因于构成该结构的双互穿框架之间的相互作用。

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