自发发射和受激发射中轨道和自旋极化对有机和钙钛矿材料发光特性的自旋-轨道耦合效应

Bin Hu
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引用次数: 0

摘要

本报告将介绍我们最近在有机和钙钛矿材料中自旋轨道耦合(SOC)对发光性能的影响的研究。一般来说,SOC会产生两个基本结果:(i)在没有轨道动量的情况下自旋翻转,(ii)在有轨道动量的情况下Rashba效应。前者和后者在控制发光性能方面起着至关重要的作用。在有机材料中,本报告将讨论在没有重金属复合结构的情况下,从非晶态电荷转移态形成SOC的新机制。本质上,电荷转移态同时具有内部相互作用的电偶极子和自旋偶极子,为产生作为人工形成的SOC的电磁耦合现象提供了基本的可能性,从而实现了有机分子中的热激活延迟荧光(TADF)。在钙钛矿中,本演讲将讨论轨道-轨道相互作用
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spin-orbital coupling effects on light-emitting properties in organic and perovskite materials through orbital and spin polarizations in spontaneous and stimulated emission
This presentation will present our recent studies on spin-orbital coupling (SOC) effects of light-emitting properties in organic and perovskite materials. In general, SOC generates two fundamental outcomes: (i) spin flipping in the absence of orbital momentum and (ii) Rashba effects in the existence of orbital momentum. The former and latter play a critical role in controlling light-emitting properties. In organic materials, this presentation will discuss the new mechanism of forming SOC from amorphous charge-transfer states in the absence of heavy-metal complex structures. Essentially, a charge-transfer state simultaneously possesses internally-interacting electrical dipole and spin dipole, providing the fundamental possibility to generate an electric-magnetic coupling phenomenon functioning as an artificially-formed SOC, towards realizing a thermally activated delayed fluorescence (TADF) in organic molecules. In perovskites, this presentation will discuss the orbit-orbit interaction
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