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首页> 外文期刊>Angewandte Chemie >Theoretical, Solid-State, and Solution Quantification of the Hydrogen Bond-Enhanced Halogen Bond
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Theoretical, Solid-State, and Solution Quantification of the Hydrogen Bond-Enhanced Halogen Bond

机译:氢键增强卤素键的理论,固态和溶液定量

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Proximal noncovalent forces are commonplace in natural systems and understanding the consequences of their juxtaposition is critical. This paper experimentally quantifies for the first time a Hydrogen Bond-Enhanced Halogen Bond (HBeXB) without the complexities of protein structure or preorganization. An HBeXB is a halogen bond that has been strengthened when the halogen donor simultaneously accepts a hydrogen bond. Our theoretical studies suggest that electron-rich halogen bond donors are strengthened most by an adjacent hydrogen bond. Furthermore, stronger hydrogen bond donors enhance the halogen bond the most. X-ray crystal structures of halide complexes (X-=Br-, I-) reveal that HBeXBs produce shorter halogen bonds than non-hydrogen bond analogues. F-19 NMR titrations with chloride highlight that the HBeXB analogue exhibits stronger binding. Together, these results form the foundation for future studies concerning hydrogen bonds and halogen bonds in close proximity.
机译:近端非共价力在自然系统中很常见,理解它们并置的后果至关重要。本文首次在实验上量化了氢键增强的卤素键(HBeXB),而不需要复杂的蛋白质结构或预组织。HBeXB是一种卤素键,当卤素施主同时接受氢键时,这种键会得到加强。我们的理论研究表明,富于电子的卤素键供体被相邻的氢键加强最多。此外,更强的氢键供体对卤素键的增强作用最大。卤化物配合物(X-=Br-,I-)的X射线晶体结构表明,HBExB产生的卤素键比非氢键类似物短。用氯化物进行的F-19核磁共振滴定表明HBeXB类似物具有更强的结合力。这些结果共同构成了未来关于氢键和卤素键的研究的基础。

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