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通过界面热光电子效应增强自供电金/二硒化钨/硫化钽镍/金异质结的性能

Enhanced Performance of a Self-Powered Au/WSe/TaNiS/Au Heterojunction by the Interfacial Pyro-phototronic Effect.

作者信息

Wang Danzhi, Ling Shiyu, Hou Pengfei

机构信息

School of Materials Science and Engineering, Xiangtan University, Xiangtan 411105, Hunan, China.

出版信息

ACS Appl Mater Interfaces. 2024 Sep 11;16(36):48576-48584. doi: 10.1021/acsami.4c10005. Epub 2024 Aug 29.

Abstract

The growing need for wearable electronics and self-powered electronic devices has driven the successful development of self-powered two-dimensional (2D) photodetectors using the photovoltaic effect of Schottky and p-n junctions. However, there is an urgent need to develop multifunctional photodetectors capable of harvesting energy from different sources to overcome their limitations in efficiency and cost. While the pyro-phototronic effect has been shown to effectively influence optoelectronic processes in heterojunctions, the number of reported two-dimensional heterojunctions exhibiting interfacial pyroelectricity is still limited, and the responsivity and detectivity based on such heterojunctions tend to be low. In this study, a photodetector based on an Au/WSe/TaNiS/Au heterojunction was designed and fabricated. By harnessing the interfacial pyro-phototronic effect arising from the built-in electric fields at the Au/WSe Schottky junction and WSe/TaNiS heterojunction, the photodetector exhibits a broadband response range of 405-1064 nm, with approximately 12 times enhancement in output current compared to solely relying on the photovoltaic effect. Under 660 nm light irradiation, the self-powered photodetector exhibits a responsivity of 121 mA/W, an external quantum efficiency of 22.64%, and a specific detectivity of 2 × 10 Jones. Notably, its pyroelectric coefficient exceeds 8 × 10 μC·m·K. These findings pave the way for effectively detecting weak light and temperature variation while presenting a new strategy for developing high-performance photodetectors utilizing the interfacial pyro-phototronic effect.

摘要

对可穿戴电子产品和自供电电子设备日益增长的需求推动了利用肖特基和 p-n 结的光伏效应成功开发自供电二维 (2D) 光电探测器。然而,迫切需要开发能够从不同来源收集能量的多功能光电探测器,以克服其在效率和成本方面的局限性。虽然热光电子效应已被证明能有效影响异质结中的光电过程,但报道的表现出界面热电性的二维异质结数量仍然有限,并且基于此类异质结的响应度和探测率往往较低。在本研究中,设计并制造了一种基于 Au/WSe/TaNiS/Au 异质结的光电探测器。通过利用 Au/WSe 肖特基结和 WSe/TaNiS 异质结处的内建电场产生的界面热光电子效应,该光电探测器展现出 405 - 1064 nm 的宽带响应范围,与仅依靠光伏效应相比,输出电流增强了约 12 倍。在 660 nm 光照射下,该自供电光电探测器的响应度为 121 mA/W,外量子效率为 22.64%,比探测率为 2×10 Jones。值得注意的是,其热电系数超过 8×10 μC·m·K。这些发现为有效检测弱光和温度变化铺平了道路,同时为利用界面热光电子效应开发高性能光电探测器提出了一种新策略。

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