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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Vertically aligned single-crystalline ultra-thin CuO nanosheets: Low-temperature fabrication, growth mechanism, and excellent field emission
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Vertically aligned single-crystalline ultra-thin CuO nanosheets: Low-temperature fabrication, growth mechanism, and excellent field emission

机译:垂直排列的单晶超薄CuO纳米片:低温制造,生长机理和出色的场发射

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摘要

An effective and one-step solvothermal process is developed to fabricate vertically aligned ultra-thin CuO nanosheets with high-quality single crystalline structure on Cu substrate at low temperature of 90℃. The thickness and size of the prepared nanosheets can be tailored by changing reaction duration and temperature. On the basis of experimental results, a possible mechanism for the formation of the vertically aligned ultra-thin CuO nanosheets is speculated. Moreover, the prepared ultra-thin CuO nanosheets exhibit excellent field emission (FE) properties, a low turn-on electric field of 2.19 V/um and a high current density of 4.5 mA/cm~2 at 8.23 V/um can be realized from the optimized sample. More importantly, the optimized sample also shows excellent FE stability with fluctuations within 2%. Based on temperature-dependent FE measurement, the stable FE property can be attributed to the low local heating effects of sheet-like CuO emitters, originating from their superior heat dissipation ability and low Joule heating.
机译:研究了一种有效的一步溶剂热法,以在90℃的低温下在Cu衬底上制备垂直取向的具有高质量单晶结构的超薄CuO纳米片。制备的纳米片的厚度和尺寸可以通过改变反应时间和温度来调整。根据实验结果,推测了形成垂直排列的超薄CuO纳米片的可能机制。此外,所制备的超薄CuO纳米片表现出优异的场发射(FE)特性,在8.23 V / um下可实现2.19 V / um的低导通电场和4.5 mA / cm〜2的高电流密度。从优化的样本中提取。更重要的是,优化的样品还显示出出色的FE稳定性,波动范围在2%以内。基于温度相关的有限元测量,稳定的有限元性能可归因于片状CuO发射器的局部低热效应,这是由于它们具有出色的散热能力和较低的焦耳热。

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