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首页> 外文期刊>Journal of the American Chemical Society >Kinetically controlled catalytic formation of zinc oxide thin films at low temperature - art. no. JA062434L
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Kinetically controlled catalytic formation of zinc oxide thin films at low temperature - art. no. JA062434L

机译:在低温下动力学控制催化氧化锌薄膜的形成-艺术没有。 JA062434L

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摘要

We developed a unique method to produce ZnO thin films by kinetically controlled catalytic hydrolysis of a molecular precursor at low temperature, operating in conjunction with the vectorial control of crystal growth. Using a system in which the diffusion of a volatile catalyst into a solution of molecular precursor of the metal oxide limits the rate of hydrolysis and establishes a gradient of catalyst concentration, we investigated the nucleation of textured nanoparticles at the gas-liquid interface and characterized their subsequent growth. Use of this slow diffusion method combined with prediction of molecular species using a partial charge model enables a higher level of organizational control than obtained in other low-temperature synthesis methods, without the use of organic molecules. Various metal oxides and their morphologies and chemical compositions can be tailored for specific applications using this relatively simple approach.
机译:我们开发了一种独特的方法,该方法通过在低温下动态控制分子前驱体的催化水解并结合晶体生长的矢量控制来生产ZnO薄膜。使用一种系统,其中挥发性催化剂扩散到金属氧化物的分子前体溶液中,限制了水解速率并建立了催化剂浓度梯度,我们研究了气-液界面上织构化的纳米颗粒的形核并对其特征进行了表征随后的增长。与不使用有机分子的其他低温合成方法相比,使用这种缓慢扩散方法结合使用部分电荷模型预测分子种类可实现更高水平的组织控制。使用这种相对简单的方法,可以为各种特定应用量身定制各种金属氧化物及其形态和化学成分。

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