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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Oxidation of 2D-WS2 nanosheets for generation of 2D-WS2/WO3 heterostructure and 2D and nanospherical WO3
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Oxidation of 2D-WS2 nanosheets for generation of 2D-WS2/WO3 heterostructure and 2D and nanospherical WO3

机译:2D-WS2纳米片的氧化用于产生2D-WS2 / WO3异质结构和2D和纳米球瘤WO3

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The oxidation behaviour of tungsten disulphide (WS2) nanosheet powder with an average thickness of about 10 nm was studied in the temperature range of 25-700 degrees C. The samples were subjected to exposure in air in a short continuous mode as well as extended isothermal holding. It was observed that WS2 nanosheets were stable below 350 degrees C in air for short exposure times. A two-dimensional WS2/WO3 heterostructure evolved at 350 degrees C on short exposures to the oxidising atmosphere. Complete oxidation of WS2 nanosheets was observed at a temperature of about 450 degrees C in the continuous heating mode and at 350 degrees C under isothermal holding for an extended exposure time. During oxidation, WS2 nanosheets were initially transformed to 2D-WO3 nanosheets with an average thickness of about 10 nm. Significant distortion in the monoclinic structure of 2D-WO3 was observed. At higher temperatures, the WO3 nanosheets disintegrated initially to rod-shaped WO3 particles, which were subsequently transformed to thermodynamically stable spherical shaped WO3 nanoparticles.
机译:在25-700℃的温度范围内研究了钨钨(WS2)纳米片粉的氧化行为,其平均厚度为约10nm。在短的连续模式下,在空气中进行样品以及延伸等温保持。观察到,WS2纳米片在空气中稳定在350℃以下,用于短时间。在短的曝光到氧化气氛中,二维WS2 / WO3异质结构在350℃下进化。在连续加热模式下在约450℃的温度和350℃下在等温保持下进行延长的曝光时间,在约450℃的温度下观察到WS2纳米片的完全氧化。在氧化过程中,最初将WS2纳米片最初转化为2D-WO3纳米片,其平均厚度为约10nm。观察到2D-WO3的单斜晶结构中的显着变形。在较高的温度下,最初崩解的WO3纳米蛋白酶溶解于棒状WO3颗粒,随后将其转化为热力学稳定的球形WO3纳米颗粒。

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