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用于分子建模的具有立体化学控制的镧系元素配合物起始结构的复杂构建算法。

The complex build algorithm to set up starting structures of lanthanoid complexes with stereochemical control for molecular modeling.

作者信息

Munguba Gabriel H L, Urquiza-Carvalho Gabriel A, Silva Frederico T, Simas Alfredo M

机构信息

Departamento de Química Fundamental, CCEN, Universidade Federal de Pernambuco, Recife, Pernambuco, 50670-901, Brazil.

出版信息

Sci Rep. 2021 Nov 2;11(1):21493. doi: 10.1038/s41598-021-99525-0.

Abstract

When handling metallic centers of higher coordination numbers, one is commonly deluded with the presumption that any assembled metal complex geometry (including a crystallographic one) is good enough as a starting structure for computational chemistry calculations; all oblivious to the fact that such a structure is nothing short of just one out of several, sometimes dozens, or even thousands of other stereoisomers. Moreover, coordination chirality, so frequently present in complexes of higher coordination numbers, is another often overlooked property, rarely recognized as such. The Complex Build algorithm advanced in this article has been designed with the purpose of generating starting structures for molecular modeling calculations with full stereochemical control, including stereoisomer complete identification and coordination chirality recognition. Besides being in the chosen correct stereochemistry, the ligands are positioned by the Complex Build algorithm in a very unobstructed and unclogged manner, so that their degrees of freedom do not hinder or even choke one another, something that would otherwise tend to lead to negative force constants after further geometry optimizations by more advanced computational model chemistries. The Complex Build algorithm has been conceived for any metallic center, but at present is targeting primarily lanthanoids whose coordination numbers range mostly from 5 to 12 and often lead to a combinatorial explosion of stereoisomers.

摘要

在处理具有较高配位数的金属中心时,人们通常会误以为任何组装好的金属配合物几何结构(包括晶体学结构)都足以作为计算化学计算的起始结构;全然不顾这样的结构实际上只是几种,有时是几十种,甚至是数千种其他立体异构体中的一种。此外,在高配位数配合物中经常出现的配位手性是另一个常常被忽视的性质,很少被如此认识到。本文提出的配合物构建算法旨在生成用于分子建模计算的起始结构,并实现完全的立体化学控制,包括立体异构体的完全识别和配位手性识别。除了处于选定的正确立体化学结构中,配体通过配合物构建算法以非常通畅且无阻碍的方式定位,这样它们的自由度不会相互阻碍甚至阻塞,否则在通过更先进的计算模型化学进行进一步几何优化后往往会导致负力常数。配合物构建算法适用于任何金属中心,但目前主要针对配位数大多在5到12之间且常常导致立体异构体组合爆炸的镧系元素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2ac/8564551/5af44b746a3e/41598_2021_99525_Fig1_HTML.jpg

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