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Improvement of Gas-Sensing Performance of Large-Area Tungsten Disulfide Nanosheets by Surface Functionalization

机译:通过表面功能化改善大面积二硫化钨纳米片的气体传感性能

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摘要

Semiconducting two-dimensional (2D) transition metal dichalcogenides (TMDCs) are promising gas-sensing materials due to their large surface to -volume ratio. However, their poor gas-sensing performance resulting from the low response, incomplete recovery, and insufficient selectivity hinders the realization of high-performance 2D TMDC gas sensors. Here, we demonstrate the improvement of gas-sensing performance of large-area tungsten disulfide (WS2) nanosheets through surface functionalization using Ag nanowires (NWs). Large-area WS, nanosheets were synthesized through atomic layer deposition of WO3 followed by sulfurizatdon. The pristine WS2 gas sensors exhibited a significant response to acetone and NO2 but an incomplete recovery in the case of NO2 sensing. After AgNW functionalization, the WS, gas sensor showed dramatically improved response (667%) and recovery upon NO2 exposure. Our results establish that the proposed method is a promising strategy to improve 2D TMDC gas sensors.
机译:半导体的二维(2D)过渡金属二硫化碳(TMDC)由于其大的表面体积比而成为很有前途的气体传感材料。但是,由于响应低,回收率不完全以及选择性不足而导致的气体传感性能差,阻碍了高性能2D TMDC气体传感器的实现。在这里,我们演示了通过使用Ag纳米线(NWs)进行表面功能化来改善大面积二硫化钨(WS2)纳米片的气敏性能。大面积WS纳米片是通过WO3的原子层沉积,然后是硫氮杂化合成的。原始的WS2气体传感器显示出对丙酮和NO2的显着响应,但是在检测NO2的情况下恢复不完全。经过AgNW功能化后,WS气体传感器显示出显着改善的响应(667%)和NO2暴露后的恢复。我们的结果表明,提出的方法是改进2D TMDC气体传感器的有前途的策略。

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