Dual-Mode Photoresponse of the Gr/MoS2/VO2 Heterostructure toward Multifunctional Optoelectronic Applications
Jing‐Yuan Wu, Bingbo Guo, Zhaoyang Wen, Yuyang Wu, Huijie Wang, Liangcai Wu, Chunrui Wang, Renchao Che
Donghua University Fudan University Advanced Energy Materials (United States) Collaborative Innovation Center of Chemistry for Energy Materials
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摘要与影响
The advent of two-dimensional materials with diverse structures and exceptional properties has emerged as highly promising candidates for next-generational optoelectronic devices. In particular, there is a pressing need for integrating both photodetection and processing abilities in a single device. Here, a multifunctional optoelectronic device based on the MoS 2 /VO 2 heterostructure is presented, with multilayer graphene (Gr) and gold serving as electrodes contacted with MoS 2 and VO 2, respectively. The energy band is electrically modulated to realize a switchable photoresponse between the photovoltaic device and photoconductor. In photovoltaic mode, the device exhibits self-powered photoresponse in a broadband spectrum range with a rapid response speed based on the built-in field of the MoS 2 /VO 2 interface, which is suitable for high-speed infrared optical communication. Moreover, the phase transition property of VO 2 enabled high-temperature photodetection. In photoconductive mode, the device owns a long-term memory characteristic effectively modulated by light intensity and pulse, essential for realizing an optoelectronic synapse. This work provides a strategy for implementing intelligent sensing and integrated optoelectronic devices.
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材料 / 化学Transition Metal Oxide Nanomaterials
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