Cao Ze, Zhao Yue, Wu Gang, Cho Jiung, Abid Mohamed, Choi Miri, Ó Coileáin Cormac, Hung Kuan-Ming, Chang Ching-Ray, Wu Han-Chun
School of Physics, Beijing Institute of Technology, Beijing 100081, P. R. China.
Western Seoul Center, Korea Basic Science Institute, Seoul 03579, Republic of Korea.
ACS Appl Mater Interfaces. 2024 Feb 21;16(7):9495-9505. doi: 10.1021/acsami.3c17194. Epub 2024 Feb 9.
Nanodevices based on van der Waals heterostructures have been predicted, and shown, to have unprecedented operational principles and functionalities that hold promise for highly sensitive and selective gas sensors with rapid response times and minimal power consumption. In this study, we fabricated gas sensors based on vertical MoS/WS van der Waals heterostructures and investigated their gas sensing capabilities. Compared with individual MoS or WS gas sensors, the MoS/WS van der Waals heterostructure gas sensors are shown to have enhanced sensitivity, faster response times, rapid recovery, and a notable selectivity, especially toward NO. In combination with a theoretical model, we show that it is important to take into account created trapped states (flat bands) induced by the adsorption of gas molecules, which capture charges and alter the inherent built-in potential of van der Waals heterostructure gas sensors. Additionally, we note that the performance of these MoS/WS heterostructure gas sensors could be further enhanced using electrical gating and mechanical strain. Our findings highlight the importance of understanding the effects of altered built-in potentials arising from gas molecule adsorption induced flat bands, thus offering a way to enhance the gas sensing performance of van der Waals heterostructure gas sensors.
基于范德华异质结构的纳米器件已被预测并证明具有前所未有的工作原理和功能,有望用于具有快速响应时间和最低功耗的高灵敏度和高选择性气体传感器。在本研究中,我们制备了基于垂直MoS/WS范德华异质结构的气体传感器,并研究了它们的气敏性能。与单个MoS或WS气体传感器相比,MoS/WS范德华异质结构气体传感器表现出更高的灵敏度、更快的响应时间、快速恢复以及显著的选择性,尤其是对NO的选择性。结合理论模型,我们表明考虑气体分子吸附诱导产生的俘获态(平带)非常重要,这些俘获态捕获电荷并改变范德华异质结构气体传感器的固有内建电势。此外,我们注意到使用电门控和机械应变可以进一步提高这些MoS/WS异质结构气体传感器的性能。我们的研究结果突出了理解由气体分子吸附诱导平带引起的内建电势变化的影响的重要性,从而为提高范德华异质结构气体传感器的气敏性能提供了一种方法。