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DOI: 10.1002/adfm.201504408
¤ OpenAccess: Green
This work has “Green” OA status. This means it may cost money to access on the publisher landing page, but there is a free copy in an OA repository.

High Responsivity Phototransistors Based on Few‐Layer ReS<sub>2</sub> for Weak Signal Detection

Erfu Liu,Mingsheng Long,Junwen Zeng,Wenhua Luo,Yaojia Wang,Yiming Pan,Wei Zhou,Baigeng Wang,Weida Hu,Zhenhua Ni,Yu‐Meng You,Xueao Zhang,Shiqiao Qin,Yi Shi,Kenji Watanabe,Huatang Yuan,Harold Y. Hwang,Yi Cui,Feng Miao,D. Y. Xing

Responsivity
Optoelectronics
Photoconductivity
2016
2D transition metal dichalcogenides are emerging with tremendous potential in many optoelectronic applications due to their strong light–matter interactions. To fully explore their potential in photoconductive detectors, high responsivity is required. Here, high responsivity phototransistors based on few‐layer rhenium disulfide (ReS 2 ) are presented. Depending on the back gate voltage, source drain bias and incident optical light intensity, the maximum attainable photoresponsivity can reach as high as 88 600 A W −1 , which is a record value compared to other individual 2D materials with similar device structures and two orders of magnitude higher than that of monolayer MoS 2 . Such high photoresponsivity is attributed to the increased light absorption as well as the gain enhancement due to the existence of trap states in the few‐layer ReS 2 flakes. It further enables the detection of weak signals, as successfully demonstrated with weak light sources including a lighter and limited fluorescent lighting. Our studies underscore ReS 2 as a promising material for future sensitive optoelectronic applications.
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    High Responsivity Phototransistors Based on Few‐Layer ReS<sub>2</sub> for Weak Signal Detection” is a paper by Erfu Liu Mingsheng Long Junwen Zeng Wenhua Luo Yaojia Wang Yiming Pan Wei Zhou Baigeng Wang Weida Hu Zhenhua Ni Yu‐Meng You Xueao Zhang Shiqiao Qin Yi Shi Kenji Watanabe Huatang Yuan Harold Y. Hwang Yi Cui Feng Miao D. Y. Xing published in 2016. It has an Open Access status of “green”. You can read and download a PDF Full Text of this paper here.