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Proton intercalated two-dimensional WO3 nano-flakes with enhanced charge-carrier mobility at room temperature

机译:质子间二维WO3nano-flakes增强型电荷载体的流动性在室温下

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Quasi two-dimensional (Q2D) semiconducting metal oxides with enhanced charge carrier mobility hold tremendous promise for nano-electronics, photonics, catalysis, nano-sensors and electrochromic applications. In addition to graphene and metal dichalcogenides MX2 (M = Mo, W; X = S, Se, Te), 2D sub-stoichiometric WO_(3-x) is gaining importance as a promising semiconductor material for field-effect-transistor (FED based devices. A combination of high permittivity, suppression of the Coulomb effects, and their stratified structure enhances the carrier mobility in such a material. Additionally, the sub-stoichiometry of this semiconductor oxide allows the reduction of the bandgap and increase of the free charge carriers at the same time. Here, we report for the first time H~+ intercalated WO3 FETs, made of Q2D nano-flakes, with enhanced charge-carrier mobility exceeding 319 cm~2 V~(-1) s~(-1) comparable with the charge-carrier mobility of Q2D dichalcogenides MoS2 and WSe2. Analyses indicate that the enhanced electrical properties of the sub-stoichiometric WO_(3_x) depend on the oxygen vacancies in the intercalated nano-flakes. These findings confirmed that Q2D sub-stoichiometric WO_(3_x) is a promising material for various functional FET devices.
机译:准二维(Q2D)半导体金属氧化物增强电荷载流子迁移率电子学的巨大承诺,光学、催化、纳米传感器电致变色的应用程序。石墨烯和金属dichalcogenides第二(M =莫,W;获得是一种很有前途的重要性吗半导体材料场效应晶体管(美联储的基础设备。高介电常数,抑制库仑作用,及其分层在这样一个结构提高了载流子迁移率材料。这个半导体氧化物允许减少隙和自由电荷的增加航空公司在同一时间。第一次H ~ +插入WO3场效应晶体管,制成的Q2D nano-flakes,增强电荷载体移动超过319厘米~ 2 V ~ (1) ~ (1)类似的电荷载子迁移率Q2D dichalcogenides MoS2和WSe2 .表明增强的电气性能的sub-stoichiometric WO_(3值)的依赖氧气在闰nano-flakes空缺。这些发现证实Q2Dsub-stoichiometric WO_(3值)是一种很有前途的材料为各种功能场效应晶体管器件。

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