Hot plasmonic electrons for generation of enhanced photocurrent in gold-TiO2 nanocomposites

被引:2
|
作者
Lorcan J Brennan
Finn Purcell-Milton
Aurélien S Salmeron
Hui Zhang
Alexander O Govorov
Anatoly V Fedorov
Yurii K Gun’ko
机构
[1] Trinity College Dublin,School of Chemistry and CRANN Institute
[2] Ohio University,Department of Physics and Astronomy
[3] ITMO University,undefined
来源
关键词
Surface plasmon resonance; Hot electrons; Au-TiO; nanocomposite; TiO; films;
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摘要
In this manuscript, for the first time, we report a combination of electrophoretic and sintering approaches for introducing gold nanoparticles into nanoporous TiO2 films to generate ‘hot’ electrons resulting in a strong enhancement of photocurrent. The Au-TiO2 nanocomposite material was prepared by the electrophoretic deposition of gold nanoparticles into a porous nanoparticulate titanium dioxide film, creating a photoactive electrode. The composite film demonstrates a significant increase in the short circuit current (Isc) compared to unmodified TiO2 when excited at or close to the plasmon resonance of the gold nanoparticles. Then, we employed a thermal ripening process as a method of increasing the Isc of these electrodes and also as a method of tuning the plasmon peak position, with a high degree of selectivity. Photo-electrochemical investigations revealed that the increase in photocurrent is attributed to the generation and separation of plasmonically generated hot electrons at the gold/TiO2 interface and also the inter-band generation of holes in gold nanoparticles by photons with λ < 520 nm. Theoretical modelling outputs perfectly match our results obtained from photo-physical studies of the processes leading to enhanced photocurrent.
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