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Photodetector Based on Spontaneously Grown Strongly Coupled MAPbBr3/N-rGO Hybrids Showing an Enhanced Performance

DOI:10.1021/acsami.9b18598 期刊:ACS Applied Materials & Interfaces 出版年份:2019 更新时间:2025-09-12 10:27:22
摘要: Recently, metal-halide perovskites have emerged as a candidate for optoelectronic applications such as photodetectors. However, the poor device performance and instability have limited their future commercialization. We herein report the spontaneous growth of perovskite/N-rGO hybrid structures using a facile solution method and their application for photodetectors. In the hybrid structures, perovskites were homogeneously wrapped by N-rGO sheets through strong hydrogen bonding. The strongly coupled N-rGOs facilitate the charge carrier transportation across the perovskite crystals, but also distort the surface lattice of the perovskite creating potential barrier for charge transfer. We optimize the addition of N-rGO in the hybrid structures to balance the interfacial structural distortion and the inter-crystal conductivity. A high-performance photodetection up to 3 × 104 A/W, external quantum efficiency (EQE) exceeding 105 % and detectivity up to 1012 Jones were achieved in the optimal device with the weight ratio between perovskites and N-rGO to be 8:1.5. The underlying mechanism behind the optimal N-rGO addition ratio in the hybrids has also been rationalized via time-resolved spectroscopic studies as a reference for future application.
作者: Yingying Tang,Mingli Liang,MinWei Zhang,Alireza Honarfar,Xianshao Zou,Mohamed Abdellah,T?nu Pullerits,Kaibo Zheng,Qijin Chi
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To develop a high-performance photodetector based on spontaneously grown strongly coupled MAPbBr3/N-rGO hybrids showing enhanced performance.

The MAPbBr3/N-rGO hybrid composites demonstrated significantly enhanced photodetection performance, with high responsivity, EQE, and detectivity. The optimal N-rGO addition ratio was found to balance interfacial structural distortion and inter-crystal conductivity, leading to the highest photocurrent. The findings suggest potential applications in photocatalytic and optoelectronic devices.

The study is limited by the specific conditions under which the hybrid materials were synthesized and the photodetectors were fabricated. The performance may vary under different environmental conditions or with variations in the synthesis process.

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