Xu Leimeng, Li Jianhai, Fang Tao, Zhao Yongli, Yuan Shichen, Dong Yuhui, Song Jizhong
MIIT Key Laboratory of Advanced Display Materials and Devices, Institute of Optoelectronics and Nanomaterials, School of Materials Science and Engineering, Nanjing University of Science and Technology Nanjing 210094 China
Nanoscale Adv. 2018 Dec 27;1(3):980-988. doi: 10.1039/c8na00291f. eCollection 2019 Mar 12.
All-inorganic cesium lead halide perovskites have emerged as promising semiconductor materials due to their preeminent performance in lighting, display, light detecting, and laser fields. However, the applications of lead halide perovskites are limited by the dissatisfactory stability owing to their fragile ionic crystal characteristics and highly dynamic surface-coordinated states. The diphase structure passivation possessing the same chemical constituents (such as passivating CsPbBr with CsPbBr) has been proven to be an effective way to improve the stabilities and simultaneously maintain the highly efficient luminescence properties. Herein, for the first time, we report a novel anion-cation reaction method to synthesize the lead halide perovskite NCs with diphase CsPbBr@CsPbBr structure. Moreover, we have found that the phase transformation between CsPbBr and CsPbBr is temperature dependent. Thus, we could control the relative composition of the diphase CsPbBr@CsPbBr composite by adjusting the temperature. The optimized CsPbBr@CsPbBr composite NCs achieve highly light emissive performance and stabilities against atmosphere, moisture and heating. Furthermore, we could obtain 135% of the NTSC color gamut through anion exchange. These highly emissive composite NCs with improved stabilities exhibit great potential in future optoelectronic fields.
全无机铯铅卤化物钙钛矿因其在照明、显示、光探测和激光领域的卓越性能,已成为有前景的半导体材料。然而,由于其脆弱的离子晶体特性和高度动态的表面配位状态,卤化铅钙钛矿的稳定性不尽人意,限制了其应用。具有相同化学成分的双相结构钝化(如用CsPbBr钝化CsPbBr)已被证明是提高稳定性并同时保持高效发光性能的有效方法。在此,我们首次报道了一种新颖的阴离子-阳离子反应方法来合成具有双相CsPbBr@CsPbBr结构的卤化铅钙钛矿纳米晶。此外,我们发现CsPbBr和CsPbBr之间的相变与温度有关。因此,我们可以通过调节温度来控制双相CsPbBr@CsPbBr复合材料的相对组成。优化后的CsPbBr@CsPbBr复合纳米晶实现了高光发射性能以及对大气、湿气和加热的稳定性。此外,通过阴离子交换我们可以获得135%的NTSC色域。这些具有更高稳定性的高发射复合纳米晶在未来光电子领域展现出巨大潜力。