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调控三维钙钛矿铁电体(Me-Hdabco)CsI Sn(II)掺杂的发光特性。

Tuning the luminescent properties of a three-dimensional perovskite ferroelectric (Me-Hdabco)CsI Sn(II) doping.

作者信息

Wang Ze-Jie, Wu Ling-Kun, Wang Na, Hu Qian-Qian, Li Jian-Rong, Ye Heng-Yun

机构信息

Chaotic Matter Science Research Center, Jiangxi University of Science and Technology, Ganzhou 341000, Jiangxi, P. R. China.

State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian 350002, P.R. China.

出版信息

Dalton Trans. 2023 Feb 28;52(9):2799-2803. doi: 10.1039/d2dt03939g.

Abstract

As promising functional materials, organic-inorganic hybrid metal halide perovskites have attracted significant interest because of their excellent photovoltaic performance. However, although considerable efforts have been made, three-dimensional (3D) metal halide perovskites beyond lead halides have been rarely reported. Herein, a new 3D organic-inorganic hybrid ferroelectric material (Me-Hdabco)CsI (1, Me-Hdabco = -methyl-1,4-diazoniabicyclo[2.2.2]octane) was synthesized and characterized. 1 underwent a ferroelectric to paraelectric phase transition at = 441 K, which was investigated by differential scanning calorimetry (DSC), dielectric measurements, and variable temperature structural analyses. Moreover, 1 shows a clear ferroelectric domain switching recorded by piezoelectric force microscopy. More interestingly, the pristine colorless crystal of 1 has no photoluminescence properties, while 10% Sn(II):(Me-Hdabco)CsI shows intense photoluminescence with a quantum yield of 8.90% under UV excitation. This finding will open up a new avenue to probe organic-inorganic hybrid multifunctional materials integrated ferroelectric and photoluminescence.

摘要

作为很有前景的功能材料,有机-无机杂化金属卤化物钙钛矿因其优异的光伏性能而备受关注。然而,尽管已经做出了相当大的努力,但除铅卤化物之外的三维(3D)金属卤化物钙钛矿却鲜有报道。在此,合成并表征了一种新型的3D有机-无机杂化铁电材料(Me-Hdabco)CsI(1,Me-Hdabco = -甲基-1,4-二氮杂双环[2.2.2]辛烷)。通过差示扫描量热法(DSC)、介电测量和变温结构分析对1在441 K时发生的铁电-顺电相变进行了研究。此外,通过压电力显微镜记录到了1明显的铁电畴切换。更有趣的是,1的原始无色晶体没有光致发光特性,而10% Sn(II):(Me-Hdabco)CsI在紫外激发下显示出强烈的光致发光,量子产率为8.90%。这一发现将为探索集成铁电和光致发光的有机-无机杂化多功能材料开辟一条新途径。

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