首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Highly efficient photoelectrochemical response by sea-urchin shaped ZnO/TiO2 nano/micro hybrid heterostructures co-sensitized with CdS/CdSe
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Highly efficient photoelectrochemical response by sea-urchin shaped ZnO/TiO2 nano/micro hybrid heterostructures co-sensitized with CdS/CdSe

机译:与CdS / CdSe共敏化的海胆形ZnO / TiO2纳米/微杂化异质结构的高效光电化学响应

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摘要

Photoelectrochemical cells have existed for decades. However, the poor efficiency of such devices is still problematic because of trade-offs between different materials properties used for photoelectrochemical reactions. Here we report a novel photoanode architecture consisting of CdS/CdSe co-sensitized sea urchin-shaped ZnO/TiO2-based nano/micro hybrid heterostructures that simultaneously offer better light scattering over the entire visible frequency domain, better separation of photo-generated charge carriers, significantly improved light absorption that extends over a broad visible spectrum, and better transport of electrons through a highly connected network of conducting ZnO nanowires than existing architectures. Use of the synthesized structures as photoanodes in a photoelectrochemical cell yielded a photocurrent density as high as 11.8 mA cm~(-2) with a remarkable photo-conversion efficiency of 6.4%.
机译:光电化学电池已经存在了数十年。然而,由于用于光电化学反应的不同材料特性之间的折衷,这种设备的效率仍然很成问题。在这里,我们报告了一种新颖的光电阳极架构,该架构由CdS / CdSe共敏化的海胆形ZnO / TiO2基纳米/微杂化异质结构组成,可同时在整个可见频域提供更好的光散射,更好地分离光生电荷载流子与现有架构相比,这种技术大大改善了光吸收范围,并扩展了可见光范围,并且使电子更好地通过导电性ZnO纳米线的高度连接网络传输。在光电化学电池中使用合成结构作为光阳极产生的光电流密度高达11.8 mA cm〜(-2),光转换效率高达6.4%。

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