首页> 外文期刊>Materials Science & Engineering >Nonlinear optoelectronic processes in organic optoelectronic devices: Triplet-triplet annihilation and singlet fission
【24h】

Nonlinear optoelectronic processes in organic optoelectronic devices: Triplet-triplet annihilation and singlet fission

机译:有机光电器件中的非线性光电过程:三重态-三重态an灭和单重态裂变

获取原文
获取原文并翻译 | 示例
           

摘要

Organic semiconductors with optoelectronic properties have attracted intensive interests in the fields of organic light-emitting diodes, organic photovoltaics and organic photodetectors. In these functional devices, exciton evolution is the key process. Generally, linear process is dominant that one photon is created from each injected electron-hole pair, vice versa. This linear process restricts the internal quantum efficiency to be 100% in optoelectronic devices. Alternatively, nonlinear optoelectronic processes, like triplet-triplet annihilation (TTA) and singlet fission (SF), can theoretically break the limitation stated in linear optoelectronic processes. TTA and SF are two dynamic reversible processes, which link one high-lying energy singlet with two low-lying energy triplet excitons on two neighboring chromophores. These nonlinear processes bring the possibility of novel functions and application scenarios, and hence have attracted more and more attentions recently. This review will systematically and comparatively summarize the basic properties of TTA and SF processes, and their applications in optoelectronic devices in the view of device physics. It starts with a concise introduction of basic knowledge of TTA and SF. Then, the characteristics used to identify these processes are described. Subsequently, implementing them in OLEDs are summarized, followed by the application examples in OPVs. Emphasis is laid on the triplet quenching mechanisms in working devices, since both TTA and SF processes highly rely on triplet excitons. These discussions on the recent important progresses aim to gain some insight into the device physics for device engineering. Finally, a perspective is presented.
机译:具有光电特性的有机半导体在有机发光二极管,有机光伏和有机光电探测器领域引起了广泛的关注。在这些功能器件中,激子演化是关键过程。通常,线性过程占优势,从每个注入的电子-空穴对产生一个光子,反之亦然。这种线性过程将内部量子效率限制为光电器件的100%。另外,非线性光电子过程,例如三重态-三重态an灭(TTA)和单重态裂变(SF),在理论上可以打破线性光电子过程中所述的局限性。 TTA和SF是两个动态可逆过程,将一个高能单重态与两个相邻生色团上的两个低能三重态激子联系起来。这些非线性过程带来了新颖的功能和应用场景的可能性,因此近来引起了越来越多的关注。这篇综述将系统地和比较地总结TTA和SF工艺的基本特性,以及从器件物理的角度来看它们在光电器件中的应用。首先简要介绍TTA和SF的基本知识。然后,描述用于识别这些过程的特征。随后,总结了在OLED中实现它们的方法,然后是在OPV中的应用示例。重点放在工作设备中的三重态淬灭机理上,因为TTA和SF工艺都高度依赖三重态激子。这些关于最近重要进展的讨论旨在获得对用于设备工程的设备物理学的一些见解。最后,提出了一个观点。

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