Electronic-Grade High-Quality Perovskite Single Crystals by a Steady Self-Supply Solution Growth for High-Performance X-ray Detectors.

Wang, Wenzhen; Meng, Hua; Qi, Huanzhen; Xu, Haitao; Du, Wenbin; Yang, Yiheng; Yi, Yongsheng; Jing, Shengqi et al. · Adv Mater · 2020

basic_science · Level V

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Abstract

High-quality perovskite single crystals with large size are highly desirable for the fundamental research and high energy detection application. Here, a simple and convenient solution method, featuring continuous-mass transport process (CMTP) by a steady self-supply way, is shown to keep the growth of semiconductor single crystals continuously stable at a constant growth rate until an expected crystal size is achieved. A significantly reduced full width at half-maximum (36 arcsec) of the (400) plane from the X-ray rocking curve indicates a low angular dislocation of 6.8 × 10<sup>6</sup> cm<sup>-2</sup> and hence a higher crystalline quality for the CH<sub>3</sub> NH<sub>3</sub> PbI<sub>3</sub> (MAPbI<sub>3</sub> ) single crystals grown by CMTP as compared to the conventional inverse temperature crystallization (ITC) method. Furthermore, the CMTP-based single crystals have lower trap density, reduced by nearly 200% to 4.5 × 10<sup>9</sup> cm<sup>-3</sup> , higher mobility increased by 187% to 150.2 cm<sup>2</sup> V<sup>-1</sup> s<sup>-1</sup> , and higher mobility-lifetime product increased by around 450% to 1.6 × 10<sup>-3</sup> cm<sup>2</sup> V<sup>-1</sup> , as compared with the ITC-grown reference sample. The high performance of the CMTP-based MAPbI<sub>3</sub> X-ray detector is comparable to that of a traditional high-quality CdZnTe device, indicating the CMTP method as being a cost-efficient strategy for high-quality electronic-grade semiconductor single crystals.