Kuehnel Moritz F, Creissen Charles E, Sahm Constantin D, Wielend Dominik, Schlosser Anja, Orchard Katherine L, Reisner Erwin
Christian Doppler Laboratory for Sustainable Syngas Chemistry, Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, UK.
Department of Chemistry, Swansea University, Singleton Park, Swansea, SA2 8PP, UK.
Angew Chem Int Ed Engl. 2019 Apr 1;58(15):5059-5063. doi: 10.1002/anie.201814265. Epub 2019 Mar 6.
A precious-metal- and Cd-free photocatalyst system for efficient H evolution from aqueous protons with a performance comparable to Cd-based quantum dots is presented. Rod-shaped ZnSe nanocrystals (nanorods, NRs) with a Ni(BF ) co-catalyst suspended in aqueous ascorbic acid evolve H with an activity up to 54±2 mmol g h and a quantum yield of 50±4 % (λ=400 nm) under visible light illumination (AM 1.5G, 100 mW cm , λ>400 nm). Under simulated full-spectrum solar irradiation (AM 1.5G, 100 mW cm ), up to 149±22 mmol g h is generated. Significant photocorrosion was not noticeable within 40 h and activity was even observed without an added co-catalyst. The ZnSe NRs can also be used to construct an inexpensive delafossite CuCrO photocathode, which does not rely on a sacrificial electron donor. Immobilized ZnSe NRs on CuCrO generate photocurrents of around -10 μA cm in an aqueous electrolyte solution (pH 5.5) with a photocurrent onset potential of approximately +0.75 V vs. RHE. This work establishes ZnSe as a state-of-the-art light absorber for photocatalytic and photoelectrochemical H generation.
本文介绍了一种无贵金属和镉的光催化剂体系,该体系能有效地从水合质子中析出氢气,其性能与镉基量子点相当。悬浮在抗坏血酸水溶液中的带有Ni(BF )助催化剂的棒状ZnSe纳米晶体(纳米棒,NRs)在可见光照射(AM 1.5G,100 mW cm ,λ>400 nm)下析氢活性高达54±2 mmol g h,量子产率为50±4%(λ=400 nm)。在模拟全光谱太阳光照(AM 1.5G,100 mW cm )下,产氢量高达149±22 mmol g h。在40小时内未观察到明显的光腐蚀现象,甚至在不添加助催化剂的情况下也观察到了活性。ZnSe纳米棒还可用于构建一种廉价的铜铬铁矿CuCrO光电阴极,该光电阴极不依赖牺牲电子供体。在pH为5.5的水性电解质溶液中,固定在CuCrO上的ZnSe纳米棒产生的光电流约为-10 μA cm ,光电流起始电位约为相对于可逆氢电极(RHE)的+0.75 V。这项工作确立了ZnSe作为光催化和光电化学产氢的先进光吸收剂的地位。