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Platinum-nickel alloy excavated nano-multipods with hexagonal close-packed structure and superior activity towards hydrogen evolution reaction

机译:六方密堆积结构且对氢气析出反应具有优异活性的铂镍合金开挖纳米多脚架

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Crystal phase regulations may endow materials with enhanced or new functionalities. However, syntheses of noble metal-based allomorphic nanomaterials are extremely difficult, and only a few successful examples have been found. Herein, we report the discovery of hexagonal close-packed Pt–Ni alloy, despite the fact that Pt–Ni alloys are typically crystallized in face-centred cubic structures. The hexagonal close-packed Pt–Ni alloy nano-multipods are synthesized via a facile one-pot solvothermal route, where the branches of nano-multipods take the shape of excavated hexagonal prisms assembled by six nanosheets of 2.5?nm thickness. The hexagonal close-packed Pt–Ni excavated nano-multipods exhibit superior catalytic property towards the hydrogen evolution reaction in alkaline electrolyte. The overpotential is only 65?mV versus reversible hydrogen electrode at a current density of 10?mA?cm?2, and the mass current density reaches 3.03?mA?μgPt?1 at ?70?mV versus reversible hydrogen electrode, which outperforms currently reported catalysts to the best of our knowledge.
机译:晶相规定可以赋予材料增强的功能或新的功能。然而,基于贵金属的同质纳米材料的合成非常困难,并且仅发现了一些成功的实例。在这里,我们报道了六方密堆积的Pt-Ni合金的发现,尽管事实是Pt-Ni合金通常在面心立方结构中结晶。六方密堆积的Pt-Ni合金纳米多脚架通过一种便捷的一锅溶剂热法合成,其中纳米多脚架的分支采用由六块2.5纳米厚的纳米片组装而成的开挖六角形棱柱形。六角形密堆积的Pt-Ni挖出的纳米多脚架对碱性电解液中的氢气释放反应具有优异的催化性能。在电流密度为10?mA?cm ?2 的情况下,相对于可逆氢电极而言,超电势仅为65?mV,质量电流密度达到3.03?mA?μgPt?1 相对于可逆氢电极,在?70?mV下,据我们所知,其性能优于目前报道的催化剂。

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