Yang Hanjun, Shi Wenwu, Cai Tong, Hills-Kimball Katie, Liu Zhenyang, Dube Lacie, Chen Ou
Department of Chemistry, Brown University, 324 Brook Street, Providence, Rhode Island 02912, USA.
Nanoscale. 2020 Nov 26;12(45):23191-23199. doi: 10.1039/d0nr06771g.
Lead-free perovskites and their analogues have been extensively studied as a class of next-generation luminescent and optoelectronic materials. Herein, we report the synthesis of new colloidal Cs4M(ii)Bi2Cl12 (M(ii) = Cd, Mn) nanocrystals (NCs) with unique luminescence properties. The obtained Cs4M(ii)Bi2Cl12 NCs show a layered double perovskite (LDP) crystal structure with good particle stability. Density functional theory calculations show that both samples exhibit a wide, direct bandgap feature. Remarkably, the strong Mn-Mn coupling effect of the Cs4M(ii)Bi2Cl12 NCs results in an ultra-short Mn photoluminescence (PL) decay lifetime of around 10 μs, around two orders of magnitude faster than commonly observed Mn2+ dopant emission in NCs. Diluting the Mn2+ ion concentration through forming Cs4(Cd1-xMnx)Bi2Cl12 (0 < x < 1) alloyed LDP NCs leads to prolonged PL lifetimes and enhanced PL quantum yields. Our study provides the first synthetic example of Bi-based LDP colloidal NCs with potential for serving as a new category of stable lead-free perovskite-type materials for various applications.
无铅钙钛矿及其类似物作为一类下一代发光和光电子材料已得到广泛研究。在此,我们报告了具有独特发光特性的新型胶体Cs4M(ii)Bi2Cl12(M(ii)=Cd、Mn)纳米晶体(NCs)的合成。所获得的Cs4M(ii)Bi2Cl12 NCs呈现出具有良好颗粒稳定性的层状双钙钛矿(LDP)晶体结构。密度泛函理论计算表明,两个样品均呈现出宽的直接带隙特征。值得注意的是,Cs4M(ii)Bi2Cl12 NCs的强Mn-Mn耦合效应导致Mn光致发光(PL)衰减寿命极短,约为10 μs,比通常在NCs中观察到的Mn2+掺杂剂发射快约两个数量级。通过形成Cs4(Cd1-xMnx)Bi2Cl12(0<x<1)合金化LDP NCs来稀释Mn2+离子浓度,会导致PL寿命延长和PL量子产率提高。我们的研究提供了首个基于Bi的LDP胶体NCs的合成实例,这类材料有潜力作为一类新型稳定的无铅钙钛矿型材料用于各种应用。