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A New Type of Electron Relay Station in Proteins: Three-Piece S:Π∴S↔S∴Π:S Resonance Structure

机译:蛋白质中新型电子中继站:三段式S:Π∴S↔S∴Π:S共振结构

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摘要

A type of relay station for electron transfer in proteins, three-piece five-electron bonding, is introduced in this paper, which is also first proposed here. The ab initio calculations predict the formation of S:Π∴S↔S∴Π:S resonance binding with an aromatic ring located in the middle of two sulfur-containing groups, which may participate in electron-hole transport in proteins. These special structures can lower the local ionization energies to capture electron holes efficiently and may be easily formed and broken because of their proper binding energies. In addition, the UV–vis spectra provide evidence of the formations of the three-piece five-electron binding. The cooperation of three adjacent pieces may be advantage to promote electron transfer a longer distance.
机译:本文介绍了一种在蛋白质中进行电子转移的中继站,即三件式五电子键,这也是本文首先提出的。从头算计算可以预测S:Π∴S↔S∴Π:S与位于两个含硫基团中间的芳香环的共振结合的形成,该芳香环可能参与蛋白质的电子空穴传输。这些特殊的结构可以降低局部电离能以有效地捕获电子空穴,并且由于其适当的结合能而易于形成和破坏。此外,UV-vis光谱提供了三件式五电子键形成的证据。三个相邻块的配合可能有利于促进电子传输更长的距离。

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