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Visible light to electrical energy conversion using photoelectrochemical cells

机译:使用光电化学电池将可见光转换为电能

摘要

Sustained conversion of low energy visible or near i.r. light ( 1. 25 eV) to electrical energy has been obtained using wet photoelectrochemical cells where there are no net chemical changes in the system. Stabilization of n-type semi-conductor anodes of CdS, CdSe, CdTe, GaP, GaAs and InP to photoanodic dissolution is achieved by employing selected alkaline solutions of Na.sub.2 S, Na.sub.2 S/S, Na.sub.2 Se, Na. sub.2 Se/Se, Na.sub.2 Te and Na.sub.2 Te/Te as the electrolyte. The oxidation of (poly) sulfide, (poly)selenide or (poly)telluride species occurs at the irradiated anode, and reduction of polysulfide, polyselenide or polytelluride species occurs at the dark Pt cathode of the photoelectrochemical cell. Optical to electrical energy conversion efficiencies approaching 15% at selected frequencies have been observed in some cells. The wavelength for the onset of photocurrent corresponds to the band gap of the particular anode material used in the cell.
机译:可见光或接近红外光的低能量的持续转换使用湿式光电化学电池(系统中没有净化学变化)获得的光(> 1. 25 eV)转换为电能。 CdS,CdSe,CdTe,GaP,GaAs和InP的n型半导体阳极对光阳极溶解的稳定是通过使用选定的Na 2 S,Na 2 S / S,Na碱性溶液实现的。子2硒,钠Sub.2 Se / Se,Na.sub.2 Te和Na.sub.2 Te / Te作为电解质。 (聚)硫化物,(聚)硒化物或(聚)碲化物物质的氧化发生在被辐照的阳极处,而多硫化物,聚硒化物或聚碲化物物质的还原发生在光电化学电池的暗Pt阴极处。在某些电池中,已观察到在选定的频率下光能到电能的转换效率接近15%。产生光电流的波长对应于电池中使用的特定阳极材料的带隙。

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