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Effect of ligand exchange on photocurrent enhancement in cadmium selenide (CdSe) quantum dot water splitting cells

机译:配体交换对硒化镉(CdSe)量子点水裂解池中光电流增强的影响

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We report photocurrent enhancement through ligand exchange in cadmium selenide (CdSe) photoelectrochemical (PEC) cells. CdSe quantum dot (QD) layers were used as a light absorption layer in combination with titanium dioxide (TiO2) layers. For a shorter ligand exchange, pristine CdSe QDs with oleic acid (OA) ligands were treated with 1,2-ethanedithiol (EDT) and CdSe QD PEC cells exhibited enhanced photocatalytic properties in comparison with pristine CdSe PEC cells. To articulate the origin of enhanced photocurrent, ligand dependent energy band bending at the CdSe/TiO2interface was probed from thickness dependent highest occupied molecular orbital level measurements using photoelectron spectroscopy in air. Increase in the photocurrent also originates from enhancement in charge transport through ligand exchange to shorter EDT ligands in the bulk CdSe film with OA ligands suppressing back diffusion of carriers from TiO2to CdSe.
机译:我们报告通过硒化镉(CdSe)光电化学(PEC)细胞中的配体交换提高光电流。 CdSe量子点(QD)层与二氧化钛(TiO2)层一起用作光吸收层。为了更短的配体交换,用1,2-乙二硫醇(EDT)处理具有油酸(OA)配体的原始CdSe QD,并且与原始CdSe PEC细胞相比,CdSe QD PEC细胞显示出增强的光催化性能。为了阐明增强的光电流的起源,使用空气中的光电子能谱从厚度依赖性最高占据分子轨道能级测量中探测了CdSe / TiO2界面处的配体依赖性能带弯曲。光电流的增加还源自通过配体交换到体相CdSe膜中较短的EDT配体的电荷传输增强,其中OA配体抑制了载体从TiO2向CdSe的反向扩散。

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