首页> 外文期刊>Crystal growth & design >Strengthening π-π Interactions while suppressing C_(sp2)-H?π (T-shaped) interactions via perfluoroalkylation: A crystallographic and computational study that supports the beneficial formation of 1-D π-π Stacked aromatic materials
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Strengthening π-π Interactions while suppressing C_(sp2)-H?π (T-shaped) interactions via perfluoroalkylation: A crystallographic and computational study that supports the beneficial formation of 1-D π-π Stacked aromatic materials

机译:通过全氟烷基化增强π-π相互作用同时抑制C_(sp2)-H?π(T形)相互作用:晶体学和计算研究均支持形成一维π-π堆叠芳族材料

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摘要

The design and synthesis of aromatic crystalline materials with controllable crystal structure packing is of particular interest in organic semiconductor and optoelectronic devices, where 1-D π-π stacked structures that enhance charge mobility are the most beneficial. We report here that the π-π interactions between aromatic molecules can be strengthened and the C_(sp2)-H?π (T-shape) interaction can be suppressed by perfluoroalkylation of corresponding aromatics. Both crystal structure data and ab initio calculations show that the π-π interaction is strengthened due to the electronic effects of perfluoroalkyl substituents, and the C_(sp2)-H?π interaction is suppressed by the steric effects of the perfluoroalkyl substituents. The C_(sp3)-F?F-C_(sp3) attractive interactions between perfluoroalkyl chains further stabilize the crystal structures. We also found that C_(sp3)-F?π interaction can be eliminated if an optimal electron deficiency of the π system is tuned by adjusting the number of perfluoroalkyl substituents. The insight gained from this study is of particular interest in organic semiconductor research as well as the fields of molecular recognition, sensing, and design of enzyme inhibitors where π-π interactions are also important.
机译:具有可控晶体结构堆积的芳族晶体材料的设计和合成在有机半导体和光电器件中特别受关注,其中增强电荷迁移率的1-Dπ-π堆叠结构是最有益的。我们在这里报告说,芳香分子之间的π-π相互作用可以得到加强,而相应芳族化合物的全氟烷基化可以抑制C_(sp2)-H?π(T形)相互作用。晶体结构数据和从头算都表明,由于全氟烷基取代基的电子作用,π-π相互作用增强,而全氟烷基取代基的空间效应抑制了C_(sp2)-Hαπ相互作用。全氟烷基链之间的C_(sp3)-F2F-C_(sp3)吸引相互作用进一步稳定了晶体结构。我们还发现,如果通过调节全氟烷基取代基的数量来调整π系统的最佳电子缺陷,则可以消除C_(sp3)-F?π相互作用。从这项研究中获得的见解在有机半导体研究以及分子识别,传感和酶抑制剂设计领域中特别重要,在这些领域中π-π相互作用也很重要。

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