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首页> 外文期刊>ACS Omega >Electrochemical Deposition of Conformal Semiconductor Layers in Nanoporous Oxides for Sensitized Photoelectrodes
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Electrochemical Deposition of Conformal Semiconductor Layers in Nanoporous Oxides for Sensitized Photoelectrodes

机译:用于敏感光电极的纳米多孔氧化物中共形半导体层的电化学沉积

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摘要

Nanoporous photoelectrodes with photoactive semiconductors have been investigated for various energy applications such as solar cells and photoelectrochemical cells, but the deposition of the semiconducting materials on the nanoporous electrodes has been very challenging due to pore clogging or complete pore filling. Here, we propose a band alignment model that explains the morphology of the electrochemically deposited semiconductor layer on the semiconducting nanoporous oxide electrode. Briefly, the coating material with a conduction band edge higher (i.e., more negative) than that of the electrode material forms a conformal coating, which maintains the initial nanoporous structure. As a result, a conformal CdSe layer can be electrodeposited onto TiO2 nanotubes, which can be used as a photoelectrode of a sensitized solar cell. The electron dynamics studies revealed that the CdSe-sensitized TiO2 nanotube electrode exhibited faster charge transport and slower charge recombination than its dye-sensitized counterpart, which has been ascribed to the passivation of surface traps and the physically blocked back-electron transfer by the CdSe layer as well as the higher conduction band of CdSe.
机译:已经研究了具有光活性半导体的纳米多孔光电极用于各种能量应用,例如太阳能电池和光电化学电池,但是由于孔堵塞或孔被完全填充,半导体材料在纳米孔电极上的沉积一直是非常具有挑战性的。在这里,我们提出了能带对准模型,该模型解释了在半导体纳米多孔氧化物电极上电化学沉积的半导体层的形态。简而言之,具有比电极材料的导带边缘高(即,更负)的导带边缘的涂层材料形成保形涂层,其保持初始的纳米多孔结构。结果,可以将保形的CdSe层电沉积到TiO 2纳米管上,其可以用作敏化太阳能电池的光电极。电子动力学研究表明,CdSe敏化的TiO2纳米管电极比其染料敏化的电极显示出更快的电荷传输和更慢的电荷重组,这归因于表面陷阱的钝化和CdSe层对电子的物理阻挡以及更高的CdSe导带。

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