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首页> 外文期刊>Nanoscale >Anin situphosphorization strategy towards doped Co2P scaffolded within echinus-like carbon for overall water splitting
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Anin situphosphorization strategy towards doped Co2P scaffolded within echinus-like carbon for overall water splitting

机译:对掺杂Anin situphosphorization策略Co2P echinus-like内搭建碳整体水分裂

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Eco-environmental synthesis of non-expensive electrocatalysts such as transition-metal phosphides (TMPs) is critical to advancing renewable hydrogen fuel. TMP nanostructures prepared typically by introducing additional conventional phosphorus sources are suggested as promising durable and low-cost electrocatalysts. Herein, an eco-efficient guest/host precursor-based synthesis route is demonstrated to prepare doped Co2P scaffolded within echinus-like carbon ((M0.2Co0.8)(2)P@C, M = Fe and Ni) as electrocatalysts for overall water splitting. (Fe0.2Co0.8)(2)P@C is derived by directly pyrolyzing a precursor of sodium dodecyl phosphate-intercalated CoFe-layered double hydroxide (CoFe-LDH), without introducing any additional phosphorus source. Electrocatalytic testing shows that (Fe0.2Co0.8)(2)P@C requires overpotentials of 290 and 130 mV at a current density of 10 mA cm(-2)for oxygen and hydrogen evolution reactions (OER and HER) in an alkaline electrolyte, respectively. Furthermore, a different (Ni0.2Co0.8)(2)P@C composite, obtained only by altering a NiCo-LDH host, exhibits better electrocatalytic activities than those of Fe-doped (Fe0.2Co0.8)(2)P@C. In particular, the (No0.2Co0.8)(2)P@C||(Ni0.2Co0.8)(2)P@C electrolyzer affords a current density of 10 mA cm(-2)at a decent voltage of 1.62 V for overall water splitting. Electron energy-loss spectroscopy (EELS) observations show the oxyhydroxide layer formed on the surface, and density functional theory (DFT) calculations reveal that Fe-/Ni-doping lowers the Gibbs free energy barrier for the OER and the HER, both underpinning the enhancements.
机译:生态环境的综合non-expensiveelectrocatalysts等过渡金属磷化(tmp)是发展的关键可再生氢燃料。通常通过引入额外的准备传统的磷来源的建议是有前途的持久的和低成本的electrocatalysts。在此,一个eco-efficient客人/主机precursor-based合成路线准备掺杂Co2P搭建echinus-like碳((M0.2Co0.8) (2) P@C M =铁和倪)作为整体electrocatalysts水分裂。直接pyrolyzing钠十二烷基的前兆phosphate-intercalated CoFe-layered双氢氧化(CoFe-LDH),没有引入任何额外的磷源。测试表明,(Fe0.2Co0.8) (2) P@C要求290和130 mV的过电压马密度为10厘米(2)氧和氢进化反应在碱性(OER和她的)分别为电解质。不同的(Ni0.2Co0.8) (2) P@C复合,获得只有通过改变NiCo-LDH主机,展品更好比electrocatalytic活动(2) P@C Fe-doped (Fe0.2Co0.8)。(No0.2Co0.8) (2) P@C | | (Ni0.2Co0.8) (2) P@C电解槽提供10马的电流密度厘米(2)在一个体面的电压为1.62 V水分裂。光谱学(鳗鱼)观察显示氢氧化物层表面上,形成密度泛函理论(DFT)计算显示,Fe - / Ni-doping降低吉布斯自由能量势垒OER和她,基础的增强。

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