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剑桥结构数据库中有机分子晶体热膨胀系数的一项调查。

A survey of thermal expansion coefficients for organic molecular crystals in the Cambridge Structural Database.

作者信息

Bond Andrew D

机构信息

Yusuf Hamied Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, United Kingdom.

出版信息

Acta Crystallogr B Struct Sci Cryst Eng Mater. 2021 Jun 1;77(Pt 3):357-364. doi: 10.1107/S2052520621003309. Epub 2021 May 13.

Abstract

Typical ranges of thermal expansion coefficients are established for organic molecular crystals in the Cambridge Structural Database. The CSD Python API is used to extract 6201 crystal structures determined close to room temperature and at least one lower temperature down to 90 K. The data set is dominated by structure families with only two temperature points and is subject to various sources of error, including incorrect temperature reporting and missing flags for variable-pressure studies. For structure families comprising four or more temperature points in the range 90-300 K, a linear relationship between unit-cell volume and temperature is shown to be a reasonable approximation. For a selected subset of 210 structures showing an optimal linear fit, the volumetric expansion coefficient at 298 K has mean 173 p.p.m. K and standard deviation 47 p.p.m.  K. The full set of 6201 structures shows a similar distribution, which is fitted by a normal distribution with mean 161 p.p.m. K and standard deviation 51 p.p.m. K, with excess population in the tails mainly comprising unreliable entries. The distribution of principal expansion coefficients, extracted under the assumption of a linear relationship between length and temperature, shows a positive skew and can be approximated by two half normal distributions centred on 33 p.p.m. K with standard deviations 40 p.p.m. K (lower side) and 56 p.p.m. K (upper side). The distribution for the full structure set is comparable to that of the test subset, and the overall frequency of biaxial and uniaxial negative thermal expansion is estimated to be < 5% and ∼30%, respectively. A measure of the expansion anisotropy shows a positively skewed distribution, similar to the principal expansion coefficients themselves, and ranges based on suggested half normal distributions are shown to highlight literature cases of exceptional thermal expansion.

摘要

在剑桥结构数据库中确定了有机分子晶体热膨胀系数的典型范围。使用CSD Python应用程序编程接口提取了6201个在接近室温以及至少一个低至90 K的更低温度下测定的晶体结构。该数据集主要由只有两个温度点的结构族组成,并且存在各种误差来源,包括温度报告错误以及可变压力研究中缺少标记。对于在90 - 300 K范围内包含四个或更多温度点的结构族,晶胞体积与温度之间的线性关系被证明是一种合理的近似。对于显示出最佳线性拟合的210个结构的选定子集,298 K时的体积膨胀系数平均值为173 ppm K,标准偏差为47 ppm K。6201个结构的完整集合显示出类似的分布,该分布由平均值为161 ppm K、标准偏差为51 ppm K的正态分布拟合,尾部的过量总体主要由不可靠条目组成。在长度与温度之间存在线性关系的假设下提取的主膨胀系数分布显示出正偏态,并且可以由以33 ppm K为中心、标准偏差分别为40 ppm K(下侧)和56 ppm K(上侧)的两个半正态分布近似。完整结构集的分布与测试子集的分布相当,并且双轴和单轴负热膨胀的总体频率估计分别小于5%和约30%。膨胀各向异性的一种度量显示出正偏态分布,与主膨胀系数本身类似,并且基于建议的半正态分布的范围被证明可以突出热膨胀异常的文献案例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8438/8182801/003fd1658641/b-77-00357-fig1.jpg

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