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High-performance flexible photodetectors based on CdTe/MoS 2 heterojunction.

Shuo YangYunjie LiuYupeng WuFuhai GuoMingcong ZhangXinru ZhuRuqing XuLanzhong Hao
Published in: Nanoscale (2024)
Flexible photodetectors have attracted escalating attention due to their pivotal role in next-generation wearable optoelectronic devices. This work presents high-performance photodetector devices based on CdTe/MoS 2 heterojunctions, showcasing outstanding photodetecting and distinctive mechanical properties. The MoS 2 film was exfoliated from bulk layered MoS 2 and covered by a sputtered ultrathin CdTe film (∼8.4 nm) to form a heterojunction. Benefitting from the photovoltaic effect induced by the built-in electrical field near the high-quality interface, the fabricated CdTe/MoS 2 heterojunction photodetector can operate as a self-powered photodetector without any external bias voltage, especially showing a high photodetectivity of 5.84 × 10 11 Jones, remarkable photoresponsivity of 270.3 mA W -1 , fast photoresponse with a rise/fall time of ∼44.8/134.2 μs and excellent bending durability. These results demonstrate that the CdTe/MoS 2 heterojunctions could have significant potential for future applications in optoelectronic devices.
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