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Morphology Transition Engineering of ZnO Nanorods to Nanoplatelets Grafted Mo8O23-MoO2 by Polyoxometalates: Mechanism and Possible Applicability to other Oxides

机译:多金属氧酸盐将ZnO纳米棒形态转变为接枝Mo8O23-MoO2的纳米片的机理:机理及对其他氧化物的适用性

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摘要

A new fundamental mechanism for reliable engineering of zinc oxide (ZnO) nanorods to nanoplatelets grafted Mo8O23-MoO2 mixed oxide with controlled morphology, composition and precise understanding of the nanoscale reaction mechanism was developed. These hybrid nanomaterials are gaining interest due to their potential use for energy, catalysis, biomedical and other applications. As an introductory section, we demonstrate a new expansion for the concept ‘materials engineering’ by discussing the fabrication of metal oxides nanostructures by bottom-up approach and carbon nanoparticles by top-down approach. Moreover, we propose a detailed mechanism for the novel phenomenon that was experienced by ZnO nanorods when treated with phosphomolybdic acid (PMA) under ultra-sonication stimulus. This approach is expected to be the basis of a competitive fabrication approach to 2D hybrid nanostructures. We will also discuss a proposed mechanism for the catalytic deposition of Mo8O23-MoO2 mixed oxide over ZnO nanoplatelets. A series of selection rules (SRs) which applied to ZnO to experience morphology transition and constitute theory for morphology transition engineering (TMTE) will be demonstrated through the article, besides a brief discussion about possibility of other oxides to obey this theory.
机译:开发了一种新的基本机理,可以可靠地工程设计氧化锌(ZnO)纳米棒到纳米片上接枝的Mo8O23-MoO2混合氧化物,其形貌,组成和对纳米级反应机理的精确控制。这些杂化纳米材料因其在能源,催化,生物医学和其他应用中的潜在用途而受到关注。作为入门部分,我们通过讨论自下而上的方法制造金属氧化物纳米结构和自上而下的方法制造碳纳米颗粒,展示了“材料工程”概念的新扩展。此外,我们提出了一种新的机理的详细机制,当在超声刺激下用磷钼酸(PMA)处理ZnO纳米棒时,会遇到这种现象。预期该方法将成为2D杂化纳米结构竞争性制造方法的基础。我们还将讨论在ZnO纳米片上催化沉积Mo8O23-MoO2混合氧化物的机制。除了简要讨论其他氧化物遵守该理论的可能性外,本文还将展示一系列适用于ZnO的选择规则(SRs),以经历形态学转变并构成形态学转变工程(TMTE)的理论。

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