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基于 1,3-双(苯并咪唑基)苯的硫属元素键给体的固态结构中的硫属元素键合。

Chalcogen bonding in the solid-state structures of 1,3-bis(benzimidazoliumyl)benzene-based chalcogen-bonding donors.

机构信息

Fakultät für Chemie und Biochemie, Ruhr-Universität Bochum, Universitätsstrasse 150, Bochum, 44801, Germany.

出版信息

Acta Crystallogr C Struct Chem. 2023 Feb 1;79(Pt 2):26-35. doi: 10.1107/S2053229622011536. Epub 2023 Jan 11.

Abstract

1,3-Bis(benzimidazoliumyl)benzene-based chalcogen-bonding catalysts were previously successfully applied in different benchmark reactions. In one of those examples, i.e. the activation of quinolines, sulfur- and selenium-based chalcogen-bonding catalysts showed comparable properties, which is unexpected, as the selenium-containing catalysts should show superior catalytic properties due to the increased polarizability of selenium compared to sulfur. Herein, we present four crystal structures of the respective 1,3-bis(benzimidazoliumyl)benzene-based chalcogen-bonding catalyst containing sulfur (3) and selenium (3, three forms) as Lewis acidic centres. The sulfur-containing catalyst shows weaker chalcogen bonding compared to its selenium analogue, as well as anion-π interactions. The selenium-based analogues, on the other hand, show stronger chalcogen-bonding motifs compared to the sulfur equivalent, depending on the crystallization conditions, but in every case, the intermolecular interactions are comparable in strength. Other interactions, such as hydrogen bonding and anion-π, were also observed, but in the latter case, the interaction distances are longer compared to those of the sulfur-based equivalent. The solid-state structures could not further explain the high catalytic activity of the sulfur-containing catalysts. Therefore, a comparison of their σ-hole depths from density functional theory (DFT) gas-phase calculations was performed, which are again in line with the previously found properties in the solid-state structures.

摘要

先前,基于 1,3-双(苯并咪唑基)苯的硫属元素键合催化剂已成功应用于不同的基准反应中。在这些例子中的一个,即喹啉的活化,硫和硒的硫属元素键合催化剂表现出相当的性质,这是出乎意料的,因为由于硒的极化率比硫高,含硒的催化剂应该表现出优越的催化性能。在此,我们提出了四种相应的基于 1,3-双(苯并咪唑基)苯的硫属元素键合催化剂的晶体结构,其中包含硫(3)和硒(3,三种形式)作为路易斯酸中心。含硫的催化剂与硒类似物相比,表现出较弱的硫属元素键合以及阴离子-π相互作用。另一方面,硒类似物表现出比硫等同物更强的硫属元素键合模式,这取决于结晶条件,但在每种情况下,分子间相互作用的强度相当。还观察到其他相互作用,如氢键和阴离子-π,但在后一种情况下,相互作用距离比基于硫的等同物长。固态结构无法进一步解释含硫催化剂的高催化活性。因此,对它们的 σ-hole 深度进行了密度泛函理论(DFT)气相计算的比较,这再次与固态结构中先前发现的性质相符。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcdd/9899511/615628bb8ee1/c-79-00026-fig1.jpg

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