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首页> 外文期刊>ACS Omega >Suppression of Photoinduced Surface Oxidation of Vanadium Dioxide Nanostructures by Blocking Oxygen Adsorption
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Suppression of Photoinduced Surface Oxidation of Vanadium Dioxide Nanostructures by Blocking Oxygen Adsorption

机译:阻断氧吸附抑制二氧化钒纳米结构的光诱导表面氧化

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Controlling the surface is necessary to adjust the essential properties and desired functions of nanomaterials and devices. For nanostructured multivalent vanadium oxides, unwanted surface oxidation occurs at ambient atmosphere generally and needs to be suppressed or avoided. We describe the suppressed surface oxidation of VO2 nanostructures through blocking oxygen adsorption. During an enhanced photoinduced surface oxidation process, the increased oxidation states of vanadium in VO2 nanostructures are suppressed by the use of an inert atmosphere or coating. Intermediate oxidation states are observed, and an ALD-TiO2 coating has a good antioxidant capacity for preventing the formation of oxygen-enriched components. Such oxidation suppression is beneficial to improving the stability of VO2 nanostructures. Controllable surface oxidation helps us to understand the physical essentials of surface chemical reactions and achieve better control of surface functions and performances on correlated vanadium oxide nanostructures.
机译:控制表面对于调节纳米材料和装置的基本特性和所需功能是必要的。对于纳米结构的多价钒氧化物,通常在环境气氛下发生不希望的表面氧化,需要抑制或避免。我们描述了通过阻止氧吸附抑制了VO2纳米结构的表面氧化。在增强的光致表面氧化过程中,通过使用惰性气氛或涂层抑制了VO2纳米结构中钒的增加的氧化态。观察到中间氧化态,并且ALD-TiO 2涂层具有良好的抗氧化能力以防止形成富氧组分。这样的氧化抑制有利于改善VO 2纳米结构的稳定性。可控制的表面氧化有助于我们了解表面化学反应的物理本质,并更好地控制相关钒氧化物纳米结构的表面功能和性能。

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