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具有1300纳米近红外光响应的钯掺杂CsAgBiBr

Palladium-Doped CsAgBiBr with 1300 nm Near-Infrared Photoresponse.

作者信息

Lei Hongwei, Singh Utkarsh, Ji Fuxiang, Lin Tinghao, Kobera Libor, Shang Yuequn, Cai Xinyi, Ning Weihua, Mahun Andrii, Abbrent Sabina, Tan Zuojun, Brus Jiri, Li Dehui, Simak Sergei I, Abrikosov Igor A, Gao Feng

机构信息

College of Engineering, Huazhong Agricultural University, Wuhan, 430070, China.

Department of Physics, Chemistry and Biology (IFM), Linköping University, Linköping, SE-581 83, Sweden.

出版信息

Small. 2024 Dec;20(49):e2404188. doi: 10.1002/smll.202404188. Epub 2024 Sep 20.

Abstract

Lead-free halide double perovskite (HDP) CsAgBiBr has set a benchmark for research in HDP photoelectric applications due to its attractive optoelectronic properties. However, its narrow absorption range is a key limitation of this material. Herein, a novel dopant, palladium (Pd), is doped into CsAgBiBr and significantly extends the absorption to ≈1400 nm. Pd ions are partially doped in the host lattice, most probably replacing Ag atoms and introducing a sub-bandgap state within the host bandgap, as indicated by the combination of spectroscopical measurements and theoretical calculations. Importantly, this sub-bandgap state extends the photoresponse of CsAgBiBr up to the NIR-II region of 1300 nm, setting a new record for HDPs. This work demonstrates a novel and efficient dopant for HDPs and highlights the effectiveness of employing a sub-bandgap to broaden the absorption of HDPs, shedding new light on tailoring large bandgap HDPs for NIR optoelectronic applications.

摘要

无铅卤化物双钙钛矿(HDP)CsAgBiBr因其具有吸引力的光电特性,为HDP光电应用研究树立了标杆。然而,其狭窄的吸收范围是这种材料的一个关键限制。在此,一种新型掺杂剂钯(Pd)被掺杂到CsAgBiBr中,并将吸收显著扩展至约1400纳米。光谱测量和理论计算相结合表明,Pd离子部分掺杂在主体晶格中,很可能取代了Ag原子,并在主体带隙内引入了一个亚带隙态。重要的是,这种亚带隙态将CsAgBiBr的光响应扩展到了1300纳米的近红外二区,创造了HDP的新纪录。这项工作展示了一种用于HDP的新型高效掺杂剂,并突出了利用亚带隙拓宽HDP吸收的有效性,为定制用于近红外光电应用的大带隙HDPs提供了新的思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c064/11618710/b2a86ff0dc37/SMLL-20-2404188-g004.jpg

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