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Synthesis of photochromic nanoparticles and determination of the mechanism of photochromism

机译:光致变色纳米粒子的合成及光致变色机理的确定

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Photochromic nanoparticles of zinc-silicon oxide were synthesized using plasma enhanced chemical vapor deposition. These particles turned black upon irradiating with ultraviolet light. We investigated this phenomenon using density functional theory calculations. Silicon inclusions create trap levels and oxygen defects that reduce the ionization potential of ZnO. This forms a quantum potential between ZnO and zinc-silicon oxide, and the excited electron is stable. Because oxygen defects also increase the bond overlap population between the zinc atoms in a ZnO crystal, they introduce further defects and help in the formation of quantum potentials. Growth of a perfect crystal of ZnO prevents the formation of oxygen defects, which is not desirable for photochromism.
机译:使用等离子增强化学气相沉积法合成了氧化锌锌纳米粒子。这些颗粒在用紫外线照射时变黑。我们使用密度泛函理论计算研究了这种现象。硅内含物会产生陷阱能级和氧缺陷,从而降低ZnO的电离势。这在ZnO和氧化锌锌之间形成量子势,并且激发的电子是稳定的。由于氧缺陷还会增加ZnO晶体中锌原子之间的键重叠数量,因此它们会引入其他缺陷并有助于形成量子势。 ZnO完美晶体的生长可防止氧缺陷的形成,这对于光致变色是不希望的。

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