Enhanced light-harvesting by plasmonic hollow gold nanospheres for photovoltaic performance

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Abstract

A ‘sandwich’-structured TiO2NR/HGN/CdS photoanode was successfully fabricated by the electrophoretic deposition of hollow gold nanospheres (HGNs) on the surface of TiO2 nanorods (NRs). The HGNs presented a wide surface Plasmon resonance character in the visible region from 540 to 630 nm, and further acted as the scatter elements and light energy ‘antennas’ to trap the local-field light near the TiO2NR/CdS layer, resulting in the increase of the light harvesting. An outstanding enhancement in the photochemical behavior of TiO2NR/HGN/CdS photoanodes was attained by the contribution of HGNs in increasing the light absorption and the number of electron-hole pairs of photosensitive semiconductors. The optimized photochemical performance of TiO2NR/HGN/CdS photoanodes by using plasmonic HGNs demonstrated their potential application in energy conversion devices.

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APA

Ding, H., Lv, J., Wu, H., Chai, G., & Liu, A. (2018). Enhanced light-harvesting by plasmonic hollow gold nanospheres for photovoltaic performance. Royal Society Open Science, 5(1). https://doi.org/10.1098/rsos.171350

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