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首页> 外文期刊>Nature Communications >Nanoscale nickel oxideickel heterostructures for active hydrogen evolution electrocatalysis
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Nanoscale nickel oxideickel heterostructures for active hydrogen evolution electrocatalysis

机译:用于活性氢释放电催化的纳米级氧化镍/镍异质结构

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Active, stable and cost-effective electrocatalysts are a key to water splitting for hydrogen production through electrolysis or photoelectrochemistry. Here we report nanoscale nickel oxide / nickel heterostructures formed on carbon nanotube sidewalls as highly effective electrocatalysts for hydrogen evolution reaction with activity similar to platinum . Partially reduced nickel interfaced with nickel oxide results from thermal decomposition of nickel hydroxide precursors bonded to carbon nanotube sidewalls. The metal ion– carbon nanotube interactions impede complete reduction and Ostwald ripening of nickel species into the less hydrogen evolution reaction active pure nickel phase. A water electrolyzer that achieves ~20?mA?cm?2 at a voltage of 1.5?V, and which may be operated by a single-cell alkaline battery, is fabricated using cheap, non-precious metal-based electrocatalysts.
机译:活性,稳定且具有成本效益的电催化剂是通过电解或光电化学将水分解成氢的关键。在这里我们报告纳米级的氧化镍/镍异质结构形成在碳纳米管的侧壁上,作为氢析出反应的高效电催化剂,其活性与铂相似。与氧化镍接触的部分还原的镍是由于键合到碳纳米管侧壁上的氢氧化镍前体的热分解所致。金属离子-碳纳米管的相互作用阻碍了镍物种的完全还原和奥斯特瓦尔德(Ostwald)熟化,成为析氢反应较少的活性纯镍相。使用便宜的非贵金属制造的电解水在1.5?V的电压下达到〜20?mA?cm ?2 ,并且可以由单节碱性电池运行。基电催化剂。

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