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首页> 外文期刊>Nanotechnology >The effect of silver nanoparticles/graphene-coupled TiO2 beads photocatalyst on the photoconversion efficiency of photoelectrochemical hydrogen production
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The effect of silver nanoparticles/graphene-coupled TiO2 beads photocatalyst on the photoconversion efficiency of photoelectrochemical hydrogen production

机译:银纳米颗粒/石墨烯偶联的TiO2珠光催化剂对光电化学产氢光转化效率的影响

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摘要

In this work, a novel configuration of the photoelectrochemical hydrogen production device is demonstrated. It is based on TiO2 beads as the primary photoanode material with the addition of a heterostructure of silver nanoparticles/graphene. The heterostructure not only caters to a great improvement in light harvesting efficiency (LHE) but also enhances the charge collection efficiency. For LHE, the optimized cell based on TiO2 beads/Ag/graphene shows a 47% gain as compared to the cell having a photoanode of commercial P25 TiO2 powders. For the charge collection efficiency, there is a pronounced improvement of an impressive value of 856%. The reason for the improvement in light absorption is attributed to either the light scattering of TiO2 beads or the surface plasmonic resonance on the Ag nanoparticles/graphene. The photoconversion efficiency (PCE) of the resulting cells is also presented and discussed. The PCE of the TiO2 beads/Ag/graphene cell is approximately 2.5 times than that of pure P25 cell.
机译:在这项工作中,证明了光电化学制氢装置的新颖构造。它基于TiO2珠作为主要的光阳极材料,并添加了银纳米颗粒/石墨烯的异质结构。异质结构不仅大大提高了光收集效率(LHE),而且提高了电荷收集效率。对于LHE,与具有商用P25 TiO2粉末的光阳极的电池相比,基于TiO2珠/ Ag /石墨烯的优化电池显示47%的增益。对于电荷收集效率,显着提高了令人印象深刻的856%的值。吸光率提高的原因归因于TiO2珠的光散射或在银纳米颗粒/石墨烯上的表面等离子体共振。还介绍和讨论了所得电池的光转换效率(PCE)。 TiO2珠/ Ag /石墨烯电池的PCE约为纯P25电池的PCE的2.5倍。

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