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掺杂Sb/Er的氯化物双钙钛矿作为可见光-近红外区域稳定有效的发光材料

Chloride Double Perovskites Doped With Sb/Er as Stable and Effective Luminescence Material in the Vis-NIR Region.

作者信息

Ivashchenko Inna A, Halyan Volodymyr V, Gulay Lubomir D, Yukchymchuk Volodymyr O, Eich Andreas, Rusu Marin, Gurieva Galina, Schorr Susan, Dąbczyński Paweł, Kazarinov Yurij, Lamonova Karina V, Khyzhun Oleg, Matras-Postołek Katarzyna

机构信息

Cracow University of Technology, Faculty of Chemical Engineering and Technology, Warszawska St. 24, Cracow, 31-155, Poland.

Lesya Ukrainka Volyn National University, Voli Ave. 13, Lutsk, 43000, Ukraine.

出版信息

Chemistry. 2025 Jun 26;31(36):e202500066. doi: 10.1002/chem.202500066. Epub 2025 Jun 8.

Abstract

The luminescence properties of stable chloride double perovskites CsBInCl, where B is 4 at.% Ag, 6 at.% Na, doped with Sb and Er  were investigated for the first time in the 250-1600 nm region and revealed significant potential for advanced application. We employed XPS and ToF-SIMS for chemical analyses, while SEM, XRD, and Raman spectroscopy provided insights into the morphology, crystal structure, and vibrational characteristics of the samples. The crystal structures of CsAgNaInCl, CsAgNaInErCl, CsAgNaInErSbCl were examined using single-crystal methods. The excited Sb⁺ ions emitted blue light at 450 nm due to electronic absorption at sub-band gap levels, facilitating energy transfer to Er⁺ ions. Notably, the Er⁺ emitted radiation at 1540 nm, a wavelength particularly useful for optical communication applications. Additionally, emissions at 525 nm, 552 nm, 665 nm, and 805 nm were observed, corresponding to f-f transitions of Er⁺ ions. These compelling results were supported with calculations based on the Modified Crystal Field Theory, explaining the effects of varying concentrations of Sb⁺ and Er⁺ on the crystal structure and luminescent properties. By using the synthesized materials, we successfully developed an LED prototype that utilized a UV chip (320 nm) combined with the CsAgNaInErSbCl powder as a stable and effective luminophore for possible application in optoelectronics.

摘要

首次在250 - 1600纳米区域研究了稳定的氯化物双钙钛矿CsBInCl(其中B为4原子%的Ag、6原子%的Na)掺杂Sb和Er后的发光特性,结果显示其在先进应用方面具有巨大潜力。我们采用XPS和ToF - SIMS进行化学分析,同时利用SEM、XRD和拉曼光谱来深入了解样品的形态、晶体结构和振动特性。使用单晶方法研究了CsAgNaInCl、CsAgNaInErCl、CsAgNaInErSbCl的晶体结构。由于子带隙能级的电子吸收,被激发的Sb⁺离子在450纳米处发射蓝光,这有助于能量转移到Er⁺离子。值得注意的是,Er⁺在1540纳米处发射辐射,该波长对光通信应用特别有用。此外,还观察到在525纳米、552纳米、665纳米和805纳米处的发射,这对应于Er⁺离子的f - f跃迁。基于修正晶体场理论的计算支持了这些引人注目的结果,解释了不同浓度的Sb⁺和Er⁺对晶体结构和发光特性的影响。通过使用合成材料,我们成功开发了一种LED原型,该原型利用紫外芯片(320纳米)与CsAgNaInErSbCl粉末相结合,作为一种稳定且有效的发光体,有可能应用于光电子学领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e425/12202846/49931dd4bea4/CHEM-31-e202500066-g020.jpg

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