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首页> 外文期刊>Advanced Sustainable Systems >Overcoming Electron Transfer Efficiency Bottlenecks for Hydrogen Production in Highly Crystalline Carbon Nitride‐Based Materials
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Overcoming Electron Transfer Efficiency Bottlenecks for Hydrogen Production in Highly Crystalline Carbon Nitride‐Based Materials

机译:克服电子传输效率瓶颈制氢的高度晶体氮化碳量的基础材料

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摘要

Abstract The hydrogen evolution reaction (HER) is a complex reaction involving many interdependent physicochemical steps. Highly ordered carbon nitride‐based materials, such as Na‐PHI and K‐PHI, display some of the highest activities for H2 evolution among the carbon nitride‐based materials, due to their electronic properties, but also the presence of cyanimide terminations, which favors the charge transfer for the Pt cocatalyst nanoparticles (NPs). For such highly optimized semiconductor structures, the necessity to control and improve other steps of the photocatalytic process becomes essential, in particular the poor electron transfer from the Pt NPs to the protons in solution over the Helmholtz or Stern layer. Taking highly ordered Na‐PHI as a test material, the influence of water‐dissolved alkali cations on the HER is systematically studied and it is experimentally verified that the electron transfer from the Pt NPs to the protons in solution limits the efficiency of heterogeneous carbon nitride‐based catalysts. This paper explains how hydrated alkali cations influence electron transfer and are able to boost the H2 evolution rate of the same Na‐PHI from 2401 up to 5330 µmol h−1 g−1 with an apparent quantum yield of 13% at 420 nm.
机译:摘要氢进化反应(她)一个复杂的反应涉及许多相互依存的物理化学步骤。氮化硅量为基础的材料,如Naφ和K量φ,显示最高的活动H2进化中碳氮化的基础材料,由于其电子特性,但也存在cyanimide终止妊娠,支持工党的电荷转移助催化剂纳米颗粒(NPs)。半导体结构,优化的必要性控制和改善的其他步骤光催化过程就变得非常重要了,特定的穷人从Pt电子转移亥姆霍兹NPs质子的解决方案或船尾层。测试材料,水还是溶解的影响碱阳离子系统地对她研究和实验验证,从工党NPs电子转移在溶液中质子的效率极限基于异构氮化碳量的催化剂。本文解释了水合碱阳离子影响电子转移和能够提高H2进化速率相同的钠量φ2401 5330µ摩尔h−1 g−1明显在420纳米量子收益率为13%。

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