Chen Xiao, Chen Daqin, Li Junni, Fang Gaoliang, Sheng Hongchao, Zhong Jiasong
College of Materials & Environmental Engineering, Hangzhou Dianzi University, Hangzhou, Zhejiang 310018, P. R. China.
Dalton Trans. 2018 Apr 24;47(16):5670-5678. doi: 10.1039/c8dt00430g.
As a novel type of promising materials, metal halide perovskites are a rising star in the field of optoelectronics. On this basis, a new frontier of zero-dimensional perovskite-related Cs4PbBr6 with bright green emission and high stability has attracted an enormous amount of attention, even though its photoluminescence still requires to clarification. Herein, the controllable phase transformation between three-dimensional CsPbBr3 and zero-dimensional Cs4PbBr6 is easily achieved in a facile ligand-assisted supersaturated recrystallization synthesis procedure via tuning the amount of surfactants, and their unique optical properties are investigated and compared in detail. Both Cs4PbBr6 and CsPbBr3 produce remarkably intense green luminescence with quantum yields up to 45% and 80%, respectively; however, significantly different emitting behaviors are observed. The fluorescence lifetime of Cs4PbBr6 is much longer than that of CsPbBr3, and photo-blinking is easily detected in the Cs4PbBr6 product, proving that the zero-dimensional Cs4PbBr6 is indeed a highly luminescent perovskite-related material. Additionally, for the first time, tunable emissions over the visible-light spectral region are demonstrated to be achievable via halogen composition modulations in the Cs4PbX6 (X = Cl, Br, I) samples. Our study brings a simple method for the phase control of CsPbBr3/Cs4PbBr6 and demonstrates the intrinsic luminescence nature of the zero-dimensional perovskite-related Cs4PbX6 products.
作为一类新型的有前途的材料,金属卤化物钙钛矿是光电子学领域的一颗新星。在此基础上,一种具有亮绿色发射和高稳定性的零维钙钛矿相关的Cs4PbBr6新前沿引起了极大关注,尽管其光致发光仍有待阐明。在此,通过调节表面活性剂的量,在简便的配体辅助过饱和重结晶合成过程中容易实现三维CsPbBr3和零维Cs4PbBr6之间的可控相变,并详细研究和比较了它们独特的光学性质。Cs4PbBr6和CsPbBr3都产生显著强烈的绿色发光,量子产率分别高达45%和80%;然而,观察到明显不同的发光行为。Cs4PbBr6的荧光寿命比CsPbBr3长得多,并且在Cs4PbBr6产物中很容易检测到光闪烁,证明零维Cs4PbBr6确实是一种高发光的钙钛矿相关材料。此外,首次证明通过Cs4PbX6(X = Cl、Br、I)样品中的卤素组成调制可在可见光光谱区域实现可调发射。我们的研究为CsPbBr3/Cs4PbBr6的相控制带来了一种简单方法,并证明了零维钙钛矿相关的Cs4PbX6产物的固有发光性质。