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Nanoplasmonic zirconium nitride photocatalyst for direct overall water splitting

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摘要 The ability of plasmonic nanostructures to efficiently harvest light energy and generate energetic hot carriers makes them promising materials for utilization in photocatalytic water spitting. Apart from the traditional Au and Ag based plasmonic photocatalysts, more recently the noble-metal-free alternative plasmonic materials have attracted ever-increasing interest. Here we report the first use of plasmonic zirconium nitride (ZrN) nanoparticles as a promising photocatalyst for water splitting. Highly crystalline ZrN nanoparticles with sizes dominating at 30-50 nm were synthesized that exhibit intense visible and near-infrared absorption due to localized surface plasmon resonance (LSPR). Without utilizing any noble metal cocatalysts such as Pt, the plasmonic ZrN nanoparticles alone showed stable photocatalytic activity for H_(2) evolution in aqueous solution with methanol as sacrificial electron donor. The addition of a cobalt oxide (CoO_(x)) cocatalyst can facilitate the separation of photogenerated charge carriers and further improve the photocatalytic activity. The optimized CoO_(x) modified ZrN photocatalyst was observed not only to activate the O_(2) evolution reaction with presence of electron acceptor, but also to drive overall water splitting for the simultaneous H_(2) and O_(2) evolution in the absence of any sacrificial agents.
出处 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第3期1271-1274,共4页 中国化学快报(英文版)
基金 supported by the Natural Science Foundation of China (Nos. 21872172, 21773303, 51472267 and 51421002) Chinese Academy of Sciences (Nos. XDB30000000, XDB07030100,Y8K5261B11 and ZDYZ2015-1)。
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