首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Enhancing visible-light-driven water splitting of ZnO nanorods by dual synergistic effects of plasmonic Au nanoparticles and Cu dopants
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Enhancing visible-light-driven water splitting of ZnO nanorods by dual synergistic effects of plasmonic Au nanoparticles and Cu dopants

机译:通过等离子体Au纳米粒子和Cu掺杂剂的双重协同作用,增强ZnO纳米棒的可见光水分裂

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摘要

Converting solar energy into chemical fuels is important to develop renewable energy. Here, Cu-doped ZnO nanorods (NRs) decorated with Au nanoparticles (NPs) are used as an efficient semiconductor catalyst for visible-light-driven water splitting. Doping Cu into ZnO NRs narrows the bandgap and shifts the absorbance toward red light; decorating Au NPs onto the ZnO:Cu NRs enhances the absorbance in the visible region and improves the solar energy conversion. The band gap of the ZnO:Cu NRs is optimized at 3% Cu doping, which presents a minimum value of 3.09 eV. Furthermore, the surface plasmon resonance effect, which is caused by decorating 10-nm Au NPs on the Cu-doped ZnO NRs, enhances the optical absorption and improves the photoelectrochemical water splitting performance. The presence of Au NPs on the surface of the NRs also reduces charge recombination, increasing the photocurrent. Under visible illumination (lambda > 420 nm), the considerable photocurrent density of this device reaches 10.2 mu A cm(-2) at 0.581 V, which is about 7.3 times higher than that of a pure ZnO NRs sample. The simple and cost-effective fabrication process of this design provides an innovative approach for water splitting and future optoelectronic devices.
机译:将太阳能转化为化学燃料对于开发可再生能源非常重要。这里,用Au纳米颗粒(NPS)装饰的Cu掺杂的ZnO纳米棒(NRS)用作可见光的水分裂的有效半导体催化剂。掺杂Cu进入ZnO NRS缩小带隙并将吸光度变为红灯;在ZnO上装饰AU NP:Cu NRS增强了可见区域中的吸光度并提高了太阳能转换。 ZnO:Cu NRS的带隙在3%Cu掺杂下优化,呈现为3.09eV的最小值。此外,通过在Cu掺杂的ZnO NR上装饰10-NM AU NPS引起的表面等离子体共振效应,增强了光学吸收并改善了光电化学水分裂性能。 NRS表面上的Au nP的存在也降低了电荷重组,增加了光电流。在可见光照射(Lambda> 420nm)下,该装置的相当光电流密度在0.581V的10.2μm(-2)达到10.2μm,其比纯ZnO NRS样品高约7.3倍。这种设计的简单且经济高效的制造过程为水分裂和未来光电器件提供了一种创新方法。

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