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Highly Sensitive Gas Sensing Material for Environmentally Toxic Gases Based on Janus NbSeTe Monolayer

机译:基于Janus Nbsete Monolayer的环保气体高敏感的气体传感材料

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摘要

Recently, a new family of the Janus NbSeTe monolayer has exciting development prospects for two-dimensional (2D) asymmetric layered materials that demonstrate outstanding properties for high-performance nanoelectronics and optoelectronics applications. Motivated by the fascinating properties of the Janus monolayer, we have studied the gas sensing properties of the Janus NbSeTe monolayer for CO, CO2, NO, NO2, H2S, and SO2 gas molecules using first-principles calculations that will have eminent application in the field of personal security, protection of the environment, and various other industries. We have calculated the adsorption energies and sensing height from the Janus NbSeTe monolayer surface to the gas molecules to detect the binding strength for these considered toxic gases. In addition, considerable charge transfer between Janus monolayer and gas molecules were calculated to confirm the detection of toxic gases. Due to the presence of asymmetric structures of the Janus NbSeTe monolayer, the projected density of states, charge transfer, binding strength, and transport properties displayed distinct behavior when these toxic gases absorbed at Se- and Te-sites of the Janus monolayer. Based on the ultra-low recovery time in the order of μs for NO and NO2 and ps for CO, CO2, H2S, and SO2 gas molecules in the visible region at room temperature suggest that the Janus monolayer as a better candidate for reusable sensors for gas sensing materials. From the transport properties, it can be observed that there is a significant variation of I−V characteristics and sensitivity of the Janus NbSeTe monolayer before and after adsorbing gas molecules demonstrates the feasibility of NbSeTe material that makes it an ideal material for a high-sensitivity gas sensor.
机译:最近,Janus Nbsete Monolayer的一个新的家庭具有令人兴奋的二维(2D)不对称层状材料的展望前景,其展示了高性能纳米电子和光电子应用的卓越性能。通过Janus Monolayer的迷人性质,我们研究了使用在领域中有卓有的应用的janus nbsete单层的Co,CO 2,NO,NO2,H 2 S和SO2气体分子的气体传感性能个人安全,保护环境和各种行业。我们已经计算了从Janus Nbsete单层表面到气体分子的吸附能量和感测高度,以检测这些被认为有毒气体的结合强度。此外,计算Janus单层和气体分子之间的相当大的电荷转移,以确认有毒气体的检测。由于Janus Nbsete单层的不对称结构,当Janus Monolayer的Se-and Te-testaer吸收的这些有毒气体时,突出的状态,电荷转移,结合强度和运输特性显示出不同的行为。基于在室温的可见区域中的μs的μs的μs和No2和Ps的NO 2和PS的ON,CO 2,H 2 S和SO2气体分子的顺序表明Janus Monolayer作为可重复使用传感器的更好候选者气体传感材料。从运输性质中,可以观察到,在吸附气体分子之前和之后Janus Nbsete单层的I-V型特性和敏感性的显着变化表明了NBSETE材料的可行性,使其成为高灵敏度的理想材料气体传感器。

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