Institute of Optoelectronics & Nanomaterials, Herbert Gleiter Institute of Nanoscience, Jiangsu Key Laboratory of Advanced Micro & Nano Materials and Technology, College of Materials Science and Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China.
Small. 2016 Oct;12(40):5622-5632. doi: 10.1002/smll.201602366. Epub 2016 Aug 23.
All-inorganic perovskites have high carrier mobility, long carrier diffusion length, excellent visible light absorption, and well overlapping with localized surface plasmon resonance (LSPR) of noble metal nanocrystals (NCs). The high-performance photodetectors can be constructed by means of the intrinsic outstanding photoelectric properties, especially plasma coupling. Here, for the first time, inorganic perovskite photodetectors are demonstrated with synergetic effect of preferred-orientation film and plasmonic with both high performance and solution process virtues, evidenced by 238% plasmonic enhancement factor and 10 on/off ratio. The CsPbBr and Au NC inks are assembled into high-quality films by centrifugal-casting and spin-coating, respectively, which lead to the low cost and solution-processed photodetectors. The remarkable near-field enhancement effect induced by the coupling between Au LSPR and CsPbBr photogenerated carriers is revealed by finite-difference time-domain simulations. The photodetector exhibits a light on/off ratio of more than 10 under 532 nm laser illumination of 4.65 mW cm . The photocurrent increases from 0.67 to 2.77 μA with centrifugal-casting. Moreover, the photocurrent rises from 245.6 to 831.1 μA with Au NCs plasma enhancement, leading to an enhancement factor of 238%, which is the most optimal report among the LSPR-enhanced photodetectors, to the best of our knowledge. The results of this study suggest that all-inorganic perovskites are promising semiconductors for high-performance solution-processed photodetectors, which can be further enhanced by Au plasmonic effect, and hence have huge potentials in optical communication, safety monitoring, and biological sensing.
全无机钙钛矿具有高载流子迁移率、长载流子扩散长度、优异的可见光吸收能力,并且与贵金属纳米晶体(NCs)的局域表面等离激元共振(LSPR)很好地重叠。通过固有优异的光电特性,尤其是等离子体耦合,可以构建高性能光电探测器。在这里,首次通过具有择优取向膜和等离子体协同效应的无机钙钛矿光电探测器展示了这种协同效应,其具有高性能和溶液处理的优点,等离子体增强因子为 238%,开关比为 10。通过离心铸造和旋涂分别将 CsPbBr 和 Au NC 油墨组装成高质量薄膜,从而实现了低成本和溶液处理的光电探测器。通过有限差分时域模拟揭示了 Au LSPR 与 CsPbBr 光生载流子之间的耦合引起的显著近场增强效应。在 532nm 激光照射下,光电探测器的光开关比大于 10,光功率为 4.65mWcm 。通过离心铸造,光电流从 0.67μA 增加到 2.77μA。此外,随着 Au NCs 等离子体增强,光电流从 245.6μA 增加到 831.1μA,增强因子为 238%,据我们所知,这是 LSPR 增强型光电探测器中最优化的报告。这项研究的结果表明,全无机钙钛矿是高性能溶液处理光电探测器有前途的半导体,可以通过 Au 等离子体效应进一步增强,因此在光通信、安全监测和生物传感方面具有巨大的潜力。