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Formation Process of Eosin Y-Adsorbing ZnO Particles by Electroless Deposition and Their Photoelectric Conversion Properties

机译:化学沉积沉积曙红Y吸附ZnO颗粒的过程及其光电转换性能

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The thin films consisting of crystalline ZnO particles were prepared on fluorine-doped tin oxide electrodes by electroless deposition. The particles were deposited from an aqueous solution containing zinc nitrate, dimethyamine-borane, and eosin Y at 328 K. As the Pd particles were adsorbed on the substrate, not only the eosin Y monomer but also the dimer and debrominated species were rapidly adsorbed on the spherical ZnO particles, which were aggregated and formed secondary particles. On the other hand, in the absence of the Pd particles, the monomer was adsorbed on the flake-shaped ZnO particles, which vertically grew on the substrate surface and had a high crystallinity. The photoelectric conversion efficiency was higher for the ZnO electrodes containing a higher amount of the monomer during light irradiation.
机译:通过化学沉积在掺氟的氧化锡电极上制备由结晶ZnO颗粒组成的薄膜。颗粒是在328 K时从含有硝酸锌,二甲基胺-硼烷和曙红Y的水溶液中沉积的。当Pd颗粒吸附在基质上时,不仅曙红Y单体而且二聚体和脱溴物种也迅速吸附在基质上。球形的ZnO颗粒聚集并形成次级颗粒。另一方面,在不存在Pd粒子的情况下,单体被吸附在薄片状的ZnO粒子上,该薄片状的ZnO粒子在基板表面上垂直生长且结晶性高。含有较多单体的ZnO电极在光照射期间的光电转换效率较高。

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