Improving the optoelectronic properties of monolayer MoS2 field effect transistor through dielectric engineering

电介质 材料科学 光电子学 单层 晶体管 场效应晶体管 栅极电介质 场效应 散射 纳米技术 光学 电气工程 电压 物理 工程类
作者
P Vrinda Narayanan,S. P. Majumder,M. A. Gokul,Chetna Taneja,G. V. Pavan Kumar,Atikur Rahman
出处
期刊:Nanotechnology [IOP Publishing]
卷期号:34 (50): 505713-505713 被引量:2
标识
DOI:10.1088/1361-6528/acf9aa
摘要

The reduced dielectric screening in atomically thin two-dimensional materials makes them very sensitive to the surrounding environment, which can be modulated to tune their optoelectronic properties. In this study, we significantly improved the optoelectronic properties of monolayer MoS2by varying the surrounding environment using different liquid dielectrics, each with a specific dielectric constant ranging from 1.89 to 18. Liquid mediums offer the possibility of environment tunability on the same device. For a back-gated field effect transistor, the field effect mobility exhibited more than two-order enhancement when exposed to a high dielectric constant medium. Further investigation into the effect of the dielectric environment on the optoelectronic properties demonstrated a variation in photoresponse relaxation time with the dielectric medium. The rise and decay times were observed to increase and decrease, respectively, with an increase in the dielectric constant of the medium. These results can be attributed to the dielectric screening provided by the surrounding medium, which strongly modifies the charged impurity scattering, the band gap, and defect levels of monolayer MoS2. These findings have important implications for the design of biological and chemical sensors, particularly those operating in a liquid environment. By leveraging the tunability of the dielectric medium, we can optimize the performance of such sensors and enhance their detection capabilities.
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