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首页> 外文期刊>Nanoscale >Confinement of Pt NPs by hollow-porous-carbon-spheres via pore regulation with promoted activity and durability in the hydrogen evolution reaction
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Confinement of Pt NPs by hollow-porous-carbon-spheres via pore regulation with promoted activity and durability in the hydrogen evolution reaction

机译:Pt NPs的监禁通过孔隙hollow-porous-carbon-spheres监管与推广活动和耐用性析氢反应

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摘要

Electrochemical water splitting is a promising method to generate pollution-free and sustainable hydrogen energy. However, the specific activity and durability of noble metal catalysts is the main hindrance to the hydrogen evolution reaction. Based on the continuous pore regulation of hollow porous carbon spheres (N-HPCSs) by hexadecyl trimethyl ammonium bromide, the 6.21 wt% Pt/N-HPCSs exhibited good dispersibility, according to a low overpotential of 45 mV (10 mA cm(-2)/1 M KOH). Its mass activity was 4 times that of the commercial 20 wt% Pt/C at -0.07 V (vs. RHE) potential. We analyse that the excellent activity is due to the interaction between Pt nanoparticles and N-HPCSs so that the electron density around the Pt atoms increases, which is beneficial for H2O to obtain electrons and transform into H-ad. Meanwhile the sea urchin-like structure of N-HPCSs facilitates the desorption of H-2. Furthermore, the overpotential showed no obvious decrease in the long-term durability test, which should be attributed to the confinement of Pt nanoparticles by the well-defined pores in N-HPCSs to avoid the aggregation of Pt nanoparticles during long-term testing.
机译:电化学水分裂是一种很有前途的方法生成无污染、可持续氢能源。和持久性的贵金属催化剂主要阻碍氢进化的反应。多孔碳空心球(N-HPCSs)十六烷基三甲基溴化胺,6.21wt % Pt / N-HPCSs展出分散性好,根据过电压低45号(10马厘米(2)/ 1米KOH)。商业20 wt %的Pt / C -0.07 V(与流值)的潜力。优秀的活动是由于交互Pt纳米粒子和N-HPCSs这样之间Pt原子周围的电子密度增加,这是有利于水获得电子呢和转换成经历。urchin-like N-HPCSs促进了结构氢的解吸。显示没有明显的长期下降耐久性试验,这应归因于Pt纳米粒子的监禁定义在N-HPCSs避免毛孔在长期的Pt纳米粒子的聚合测试。

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