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Surface-to-volume ratio drives photoelelectron injection from nanoscale gold into electrolyte

DOI:10.1021/acscatal.9b00384 期刊:ACS Catalysis 出版年份:2019 更新时间:2025-10-22 19:40:53
摘要: Hot charge carriers from plasmonic nanomaterials currently receive increased attention due to their promising potential in important applications such as solar water splitting. While a number of important contributions were made on plasmonic charge carrier generation and their transfer into the metal’s surrounding in the last decades, the local origin of those carriers is still unclear. With our study employing a nanoscaled bicontinous network of nanoporous gold, we take a comprehensive look at both subtopics in one approach and give unprecedented insights into the physical mechanisms controlling the broadband optical absorption and the generation and injection of hot electrons into an adjacent electrolyte where they enhance electrocatalytic hydrogen evolution. This absorption behavior is very different from the well-known localized surface plasmon resonance effects observed in metallic nanoparticles. For small ligament sizes the plasmon decay in our network is strongly enhanced via surface collisions of electrons. These surface collisions are responsible for the energy transfer to the carriers, thus, the creation of hot electrons from a broad spectrum of photon energies. As we reduce the gold ligament sizes below 30 nm, we demonstrate an occurring transition from absorption that is purely exciting 5d-electrons from deep below the Fermi level to an absorption which significantly excites “free” 6sp-electrons to be emitted. We differentiate these processes via assessing the internal quantum efficiency of the gold network photoelectrode as a function of the feature size providing a size-dependent understanding of the hot electron generation and injection processes in nanoscale plasmonic systems. We demonstrate that the surface effect - compared to the volume effect – becomes dominant and leads to significantly improved efficiencies. The most important fact to recognize is that in the surface photoeffect presented here, absorption and electron transfer are both part of the same quantum mechanical event.
作者: Matthias Graf,Dirk Jalas,J?rg Weissmüller,Alexander Yu. Petrov,Manfred Eich
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To investigate the local origin of hot charge carriers in plasmonic nanomaterials, specifically focusing on how the surface-to-volume ratio in nanoporous gold affects the generation and injection of hot electrons into an electrolyte for applications like solar water splitting.

The study demonstrates that reducing ligament size in npAu below 30 nm enhances hot electron injection due to increased surface collisions, with surface photoelectron emission becoming dominant. The internal quantum efficiency increases significantly with smaller ligament sizes, and the energy barrier for electron injection is around 3.2 eV. The findings highlight the importance of surface effects in plasmonic catalysts for improving efficiency.

The study is limited to npAu with ligament sizes down to 9 nm; smaller sizes were not investigated. The presence of 5d-band absorption in Au reduces efficiency, suggesting that metals without significant interband transitions might perform better. The measurements assume negligible adsorbate effects under the conditions used.

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