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通过铜/钙钛矿肖特基结构建超高电流直流摩擦光伏纳米发电机

Constructing Ultra-High Current Direct-Current Tribo-Photovoltaic Nanogenerators via Cu/Perovskite Schottky Junction.

作者信息

Luo Yuguang, Ding Yang, Liu Yangyang, Xiongsong Tengxiao, Yang Ziyi, Zhang Hao, Gao Mang, Li Hongjian, Dai Guozhang, Yang Junliang

机构信息

Hunan Key Laboratory of Nanophotonics and Devices, School of Physics, Central South University, Changsha, Hunan 410083, China.

Hunan Key Laboratory for Super-microstructure and Ultrafast Process, School of Physics, Central South University, Changsha 410083, China.

出版信息

ACS Nano. 2024 Dec 24;18(51):34803-34814. doi: 10.1021/acsnano.4c11758. Epub 2024 Dec 10.

Abstract

Perovskite-based direct-current triboelectric nanogenerators (DC-TENGs) leveraging the tribo-photovoltaic effect have garnered significant attention for their ability to simultaneously harvest mechanical and solar energy, effectively enhancing the output performance of DC-TENGs. Herein, we innovatively construct a rolling-mode Cu/ternary cation perovskite (FAMACsPb(IBr)) Schottky junction DC-TENGs with ultrahigh current output and excellent operational stability. The Cu/perovskite Schottky junction ensures the formation of an internal electric field, promoting carrier separation and directional movement for a stable DC output. Under AM 1.5 G illumination, the DC-TENG achieves a short-circuit current () and current density of 408 μA and 27.2 A/m, respectively, marking a 119 times increase as compared to dark conditions and the highest reported for perovskite DC-TENGs. With over 30 min of operation, the current output remains stable. The DC-TENGs exhibit promising applications in temperature and humidity sensing and self-powered photodetection. Furthermore, by adjusting the light power density, the optimal internal output impedance of DC-TENGs can be tuned broadly from 0.9 to 132 kΩ, offering great potential for impedance matching in self-powered microelectronic components. This research provides insights into the development of multifunctional DC-TENG devices with coupled mechanical and solar energy, expanding the application scope of perovskite materials and devices.

摘要

基于钙钛矿的利用摩擦光伏效应的直流摩擦纳米发电机(DC-TENGs)因其能够同时收集机械能和太阳能,有效提高DC-TENGs的输出性能而备受关注。在此,我们创新性地构建了一种具有超高电流输出和优异运行稳定性的滚动模式铜/三元阳离子钙钛矿(FAMACsPb(IBr))肖特基结DC-TENGs。铜/钙钛矿肖特基结确保形成内部电场,促进载流子分离和定向移动以实现稳定的直流输出。在AM 1.5 G光照下,该DC-TENG的短路电流()和电流密度分别达到408 μA和27.2 A/m,与黑暗条件相比提高了119倍,是报道的钙钛矿DC-TENGs中最高的。经过超过30分钟的运行,电流输出保持稳定。该DC-TENG在温度和湿度传感以及自供电光检测方面展现出有前景的应用。此外,通过调节光功率密度,DC-TENGs的最佳内部输出阻抗可在0.9至132 kΩ范围内广泛调谐,为自供电微电子元件中的阻抗匹配提供了巨大潜力。本研究为开发具有机械能和太阳能耦合的多功能DC-TENG器件提供了见解,扩展了钙钛矿材料和器件的应用范围。

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