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一种用于高性能光电器件的通用钙钛矿纳米晶体墨水。

A Universal Perovskite Nanocrystal Ink for High-Performance Optoelectronic Devices.

作者信息

Song Hochan, Yang Jonghee, Jeong Woo Hyeon, Lee Jeongjae, Lee Tack Ho, Yoon Jung Won, Lee Hajin, Ramadan Alexandra J, Oliver Robert D J, Cho Seong Chan, Lim Seul Gi, Jang Ji Won, Yu Zhongkai, Oh Jae Taek, Jung Eui Dae, Song Myoung Hoon, Park Sung Heum, Durrant James R, Snaith Henry J, Lee Sang Uck, Lee Bo Ram, Choi Hyosung

机构信息

Department of Chemistry, Research Institute for Convergence of Basic Science, and Research Institute for Natural Sciences, Hanyang University, Seoul, 04763, South Korea.

Institute for Advanced Materials and Manufacturing, Department of Materials Science and Engineering, University of Tennessee, Knoxville, TN, 37996, United States.

出版信息

Adv Mater. 2023 Feb;35(8):e2209486. doi: 10.1002/adma.202209486. Epub 2022 Dec 25.

Abstract

Semiconducting lead halide perovskite nanocrystals (PNCs) are regarded as promising candidates for next-generation optoelectronic devices due to their solution processability and outstanding optoelectronic properties. While the field of light-emitting diodes (LEDs) and photovoltaics (PVs), two prime examples of optoelectronic devices, has recently seen a multitude of efforts toward high-performance PNC-based devices, realizing both devices with high efficiencies and stabilities through a single PNC processing strategy has remained a challenge.  In this work, diphenylpropylammonium (DPAI) surface ligands, found through a judicious ab-initio-based ligand search, are shown to provide a solution to this problem. The universal PNC ink with DPAI ligands presented here, prepared through a solution-phase ligand-exchange process, simultaneously allows single-step processed LED and PV devices with peak electroluminescence external quantum efficiency of 17.00% and power conversion efficiency of 14.92% (stabilized output 14.00%), respectively. It is revealed that a careful design of the aromatic rings such as in DPAI is the decisive factor in bestowing such high performances, ease of solution processing, and improved phase stability up to 120 days. This work illustrates the power of ligand design in producing PNC ink formulations for high-throughput production of optoelectronic devices; it also paves a path for "dual-mode" devices with both PV and LED functionalities.

摘要

半导体卤化铅钙钛矿纳米晶体(PNCs)因其可溶液加工性和出色的光电性能,被视为下一代光电器件的有潜力候选材料。虽然发光二极管(LED)和光伏(PV)这两个光电器件的典型领域,近来在高性能PNC基器件方面进行了大量努力,但通过单一PNC加工策略实现兼具高效率和稳定性的这两种器件仍然是一项挑战。在这项工作中,通过基于第一性原理的明智配体搜索发现的二苯基丙基铵(DPAI)表面配体,被证明为这个问题提供了一个解决方案。这里展示的带有DPAI配体的通用PNC墨水,通过溶液相配体交换过程制备,同时允许单步加工的LED和PV器件,其峰值电致发光外量子效率分别为17.00%,功率转换效率为14.92%(稳定输出为14.00%)。结果表明,像DPAI中那样对芳香环进行精心设计是赋予如此高性能、易于溶液加工以及高达120天的改善相稳定性的决定性因素。这项工作说明了配体设计在生产用于光电器件高通量生产的PNC墨水配方方面的作用;它也为具有PV和LED功能的“双模”器件铺平了道路。

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