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Nanomaterials of high surface energy with exceptional properties in catalysis and energy storage

机译:具有高表面能的纳米材料,在催化和能量存储方面具有出色的性能

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摘要

The properties of nanomaterials for use in catalytic and energy storage applications strongly depends on the nature of their surfaces. Nanocrystals with high surface energy have an open surface structure and possess a high density of low-coordinated step and kink atoms. Possession of such features can lead to exceptional catalytic properties. The current barrier for widespread industrial use is found in the difficulty to synthesise nanocrystals with high-energy surfaces. In this critical review we present a review of the progress made for producing shape-controlled synthesis of nanomaterials of high surface energy using electrochemical and wet chemistry techniques. Important nanomaterials such as nanocrystal catalysts based on Pt, Pd, Au and Fe, metal oxides TiO(2) and SnO(2), as well as lithium Mn-rich metal oxides are covered. Emphasis of current applications in electrocatalysis, photocatalysis, gas sensor and lithium ion batteries are extensively discussed. Finally, a future synopsis about emerging applications is given (139 references).
机译:用于催化和能量存储应用的纳米材料的性能很大程度上取决于其表面的性质。具有高表面能的纳米晶体具有开放的表面结构,并具有高密度的低配位阶跃和扭结原子。拥有这些特征可导致出色的催化性能。在难以合成具有高能表面的纳米晶体中发现了广泛的工业用途的当前障碍。在本篇重要的综述中,我们对使用电化学和湿化学技术生产高表面能纳米材料的形状控制合成的进展进行了综述。覆盖了重要的纳米材料,例如基于Pt,Pd,Au和Fe的纳米晶体催化剂,金属氧化物TiO(2)和SnO(2)以及富含锂锰的金属氧化物。重点讨论了当前在电催化,光催化,气体传感器和锂离子电池中的应用。最后,给出了有关新兴应用程序的未来提要(139个参考文献)。

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