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Synthesis and gas sensing properties of WS2 nanocrystallites assembled hierarchical WS2 fibers by electrospinning

机译:WS2纳米晶体通过静电纺丝组装分层WS2纤维的合成及气体传感性能

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A gas sensor based on a hierarchical WS2 structure embedded with vertically aligned WS2 nanocrystallites was demonstrated. The three-dimensional (3D) hierarchical structure provides many edge sites of nanocrystallites and an extremely large gas contact volume, resulting in a high gas response. The decreased contact resistance between the 3D hierarchical WS2 fibers and sensor electrode resulted in improved NO2 response. We fabricated a one-dimensional (1D) conductive WS2 fiber using a two-step annealing process under sulfur flow (sulfurization). It delivers a continuous and conductive carrier path and lowers the potential barrier at the interface of the WS2 nanocrystallites (top) and electrospun WS2 fiber (bottom), resulting in an improved gas response. We developed 3D hierarchical WS2 fibers embedded with vertically aligned WS2 nanocrystallites to increase the gas adsorption site in comparison with that of 1D WS2 fibers without WS2 flakes. Vertically aligned WS2 nanocrystallites were formed after a two-step annealing treatment. Sensors based on the 3D hierarchical WS2 fibers embedded with WS2 flakes, showed higher response to NO2 gas in comparison to that of pure WS2 fibers without WS2 flakes.
机译:基于嵌入有垂直对齐的纳米晶WS2的分层结构WS2的气体传感器被证明。三维(3D)分层结构提供纳米晶和一个非常大的气体接触体积的许多边缘位点,导致高的气体响应。导致改善的响应NO2所述3D分层WS2纤维和传感器电极之间的降低的接触电阻。我们使用下硫流量(硫化)的两步骤退火工艺制造的一维(1D)导电WS2纤维。它提供了连续的和导电载体路径和降低在WS2纳米微晶(顶部)和电纺丝纤维WS2(底部)的界面处的势垒,从而产生改进的气体反应。我们研发的嵌入式与垂直对齐的WS2纳米晶增加气体吸附网站与1D WS2纤维的比较没有WS2片3D分层WS2纤维。垂直对准的纳米晶WS2被一个两步骤退火处理后形成。基于嵌入WS2薄片三维分层WS2纤维传感器,显示出相比于纯WS2纤维而不WS2薄片以NO2气体更高的响应。

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