A test of crystal structure prediction of small organic molecules

晶体结构预测 晶体结构 参数化(大气建模) 排名(信息检索) 晶格能 试验装置 计算机科学 集合(抽象数据类型) 分子 格子(音乐) 试验数据 算法 结晶学 化学 物理 人工智能 有机化学 辐射传输 量子力学 程序设计语言 声学
作者
Jos P. M. Lommerse,W.D.S. Motherwell,Herman L. Ammon,Jack D. Dunitz,A. Gavezzotti,Detlef W. M. Hofmann,Frank J. J. Leusen,Wijnand T. M. Mooij,Sarah L. Price,W. Bernd Schweizer,Martin U. Schmidt,Bouke P. van Eijck,P. Verwer,Donald E. Williams
出处
期刊:Acta crystallographica [Wiley]
卷期号:56 (4): 697-714 被引量:431
标识
DOI:10.1107/s0108768100004584
摘要

A collaborative workshop was held in May 1999 at the Cambridge Crystallographic Data Centre to test how well currently available methods of crystal structure prediction perform when given only the atomic connectivity for an organic compound. A blind test was conducted on a selection of four compounds and a wide range of methodologies representing the principal computer programs currently available were used. There were 11 participants who were allowed to propose at most three structures for each compound. No program gave consistently reliable results. However, seven proposed structures were close to an experimental one and were classified as `correct'. One compound occurred in two polymorphs, but only one form was predicted correctly among the calculated structures. The basic problem with lattice energy based methods of crystal structure prediction is that many structures are found within a few kJ mol −1 of the global minimum. The fine detail of the force-field methodology and parametrization influences the energy ranking within each method. Nevertheless, present methods may be useful in providing a set of structures as possible polymorphs for a given molecular structure.

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