...
首页> 外文期刊>Journal of chemical theory and computation: JCTC >Insight into the Origin of Chiral-Induced Spin Selectivity from a Symmetry Analysis of Electronic Transmission
【24h】

Insight into the Origin of Chiral-Induced Spin Selectivity from a Symmetry Analysis of Electronic Transmission

机译:从电子传输对称分析中洞察手性诱导的旋转选择性的起源

获取原文
获取原文并翻译 | 示例
           

摘要

The chiral-induced spin selectivity (CISS) effect, which describes the spin-filtering ability of diamagnetic structures like DNA or peptides having chiral symmetry, has emerged in the past years as the central mechanism behind a number of important phenomena, like long-range biological electron transfer, enantio-specific electrocatalysis, and molecular recognition. Also, CISS-induced spin polarization has a considerable promise for new spintronic devices and the design of quantum materials. The CISS effect is attributed to spin-orbit coupling, but a sound theoretical understanding of the surprising magnitude of this effect in molecules without heavy atoms is currently lacking. We are taking an essential step into this direction by analyzing the importance of imaginary terms in the Hamiltonian as a necessary condition for nonvanishing spin polarization in helical structures. On the basis of first-principles calculations and analytical considerations, we perform a symmetry analysis of the key quantities determining transport probabilities of electrons of different spin orientations. These imaginary terms originate from the spin-orbit coupling, and they preserve the Hermitian nature of the Hamiltonian. Hence, they are not related to the breaking of time-reversal symmetry resulting from the fact that molecules are open systems in a junction. Our symmetry analysis helps to identify essential constraints in the theoretical description of the CISS effect. We further draw an analogy with the appearance of imaginary terms in simple models of barrier scattering, which may help understanding the unusually effective long-range electron transfer in biological systems.
机译:在过去的几年中,手性诱导的旋转选择性(CISS)效应,其描述了DNA或肽如具有手性对称的DNA或肽,作为许多重要现象的中央机制,如长范围生物电子转移,肾特异性电催化和分子识别。此外,Ciss诱导的自旋极化对于新的旋转式装置和量子材料的设计具有相当大的希望。 CISS效应归因于旋转轨道耦合,但目前缺乏对没有重原子的分子在没有重原子的分子中这种效果的惊人大小的声音理论理解。我们通过分析汉密尔顿中的虚构术语作为螺旋结构中的非垂直旋转极化的必要条件来对此方向进行重要的一步。在第一原理计算和分析考虑的基础上,我们对确定不同旋定位的电子的钥匙数进行对称分析。这些假想的术语源自旋转轨道耦合,它们保留了汉密尔顿人的隐士性质。因此,它们与断开时间反转对称性的突破导致分子在连接中的开放系统中断。我们的对称性分析有助于确定CISS效应的理论描述中的基本限制。我们进一步在简单的障碍散射模型中汲取了假想术语的类比,这可能有助于了解生物系统中异常有效的远程电子转移。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号