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铁掺杂对CsPbCl光致发光的淬灭作用:胶体合成、结构与光学性质

Photoluminescence Quenching in CsPbCl upon Fe Doping: Colloidal Synthesis, Structural and Optical Properties.

作者信息

Chakraborty Saptarshi, Mandal Prasenjit, Viswanatha Ranjani

机构信息

New Chemistry Unit.

International Centre for Materials Science, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur, Bangalore, 560064, India.

出版信息

Chem Asian J. 2022 Aug 15;17(16):e202200478. doi: 10.1002/asia.202200478. Epub 2022 Jun 30.

Abstract

Doped perovskite lead halide nanocrystals (PHNCs) are promising materials for various optoelectronic applications, but the major challenge faced by the researchers is the inability to dope foreign elements into perovskite lattice because of the strong lead-halide bond energies. In this work, we have used Fe as a dopant in CsPbCl to explore different doping techniques based on the colloidal synthesis of PHNCs to investigate the advantages and disadvantages of different techniques. We are able to dope a relatively higher amount of Fe (∼10%) than reported and observe clear optical signatures when the precursor does not have pre-existing Pb-Cl bonds. We prove that there are two competing processes inside a doped PHNC - one is the effect of dopant energy levels, and the other is surface passivation by halide ions. Using the most optimal synthesis strategy, we show that although Fe does act as a luminescence quencher in perovskite similar to II-VI quantum dots (QDs), the quenching requires much more Fe compared to trace amounts of Fe required in traditional QDs. Our work will assist in giving an overall comparative idea of doping and finding the most optimized strategy and help identify the underlying physical processes in perovskite based QDs.

摘要

掺杂的钙钛矿型卤化铅纳米晶体(PHNCs)是用于各种光电子应用的有前途的材料,但研究人员面临的主要挑战是由于铅 - 卤化物键能很强,无法将外来元素掺杂到钙钛矿晶格中。在这项工作中,我们在CsPbCl中使用Fe作为掺杂剂,基于PHNCs的胶体合成探索不同的掺杂技术,以研究不同技术的优缺点。当前驱体不存在预先存在的Pb - Cl键时,我们能够掺杂比报道的相对更高量的Fe(约10%)并观察到清晰的光学特征。我们证明,在掺杂的PHNC内部存在两个相互竞争的过程——一个是掺杂剂能级的影响,另一个是卤离子的表面钝化。使用最优化的合成策略,我们表明尽管Fe在钙钛矿中确实像II - VI族量子点(QDs)一样充当发光猝灭剂,但与传统QDs中所需的痕量Fe相比,猝灭需要更多的Fe。我们的工作将有助于给出掺杂的整体比较概念,找到最优化的策略,并有助于识别基于钙钛矿的量子点中的潜在物理过程。

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