论文标题

Mn掺杂的CSPBBR $ _3 $纳米晶体中向上转换的热电子的光发射

Photoemission of the Upconverted Hot Electrons in Mn-doped CsPbBr$_3$ Nanocrystals

论文作者

Wang, Chih-Wei, Liu, Xiaohan, Qiao, Tian, Khurana, Mohit, Akimov, Alexey V., Son, Dong Hee

论文摘要

热电子在提高光子转换或光催化反应的效率方面起着至关重要的作用。在半导体纳米晶体中,可以通过涉及掺杂的中间状态的上转换过程生成能够光发射的高能热电子,目前仅在Mn掺杂的Cadmium chalcogenide量子点中知道。在这里,我们报告说,MN掺杂的CSPBBR3纳米晶体是通过上转换产生热电子的绝佳平台,该平台可以受益于各种理想的激子特性和金属卤化物钙钛矿(MHP)的结构多样性。二维MN掺杂的CSPBBR $ _3 $纳米板块对于热电子上转换尤其有利,这是由于介导上转过程的强烈激动剂掺杂剂相互作用。此外,纳米平板电脑还通过长寿命的深色激子揭示了热电子上转换的证据,此外还可以提高上转效率。这项研究不仅建立了MHP宿主中热电子上转换的可行性,而且还证明了2维MHP纳米晶体的潜在优点。

Hot electrons play a crucial role in enhancing the efficiency of photon-to-current conversion or photocatalytic reactions. In semiconductor nanocrystals, energetic hot electrons capable of photoemission can be generated via the upconversion process involving the dopant-originated intermediate state, currently known only in Mn-doped cadmium chalcogenide quantum dots. Here, we report that Mn-doped CsPbBr3 nanocrystals are an excellent platform for generating hot electrons via upconversion that can benefit from various desirable exciton properties and the structural diversity of metal halide perovskites (MHP). 2-dimensional Mn-doped CsPbBr$_3$ nanoplatelets are particularly advantageous for hot electron upconversion due to the strong exciton-dopant interaction mediating the upconversion process. Furthermore, nanoplatelets reveal evidence for the hot electron upconversion via long-lived dark exciton in addition to bright exciton that may enhance the upconversion efficiency. This study not only establishes the feasibility of hot electron upconversion in MHP host but also demonstrates the potential merits of 2-dimensional MHP nanocrystals in hot electron upconversion.

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