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Chemical sintering of TiO2 based photoanode for efficient dye sensitized solar cells using Zn nanoparticles

机译:基于TiO2光电的化学烧结使用Zn纳米粒子高效染料敏化太阳能电池

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摘要

Recombination reactions due to poor inter-particle contact at lower temperatures ( 450 degrees C) is a bottle neck for cost effective flexible dye sensitized solar cells (DSSCs). In this study, TiO2 sintering to Coble initial stage at low temperatures has been achieved with low melting point zinc (Zn) metal nanoparticles. Zn nanoparticles showed improved inter-particle contact by formation of necks due to high surface diffusion at relatively lower temperatures (200 degrees C). Addition of Zn nanoparticles showed comparable, rather improved efficiency at 200 degrees C compared to reference TiO2 photoanode fabricated at 450 degrees C due to neck formation and surface plasmonic resonance (SPR) effect. Morphological studies revealed high contactformation between TiO2 and Zn nanoparticles. Electrochemical impedance and Uv vis spectroscopy showed improvements in charge transfer and light absorption activity respectively. Structural studies showed no any detectable change in phase due to high surface diffusion and capillary forces produced by Zn nanoparticles at the TiO2/Zn interface.
机译:由于在较低温度下颗粒间接触差(<450℃)的颗粒间接触引起的重组反应是用于成本有效的柔性染料敏化太阳能电池(DSSCs)的瓶颈。在该研究中,通过低熔点锌(Zn)金属纳米颗粒已经实现了在低温下脱铅阶段的TiO2烧结。由于高表面扩散在相对较低的温度(200℃)下,Zn纳米粒子通过形成颈部的形成改善了颗粒间接触。与在450摄氏度的摄影和表面等离子体共振(SPR)效应上相比,Zn纳米粒子的添加,Zn纳米颗粒在200摄氏度的比较时显示了相当的相当提高的效率。形态学研究揭示了TiO2和Zn纳米颗粒之间的高次枢纽。电化学阻抗和UV Vis光谱分别显示出电荷转移和光吸收活性的改善。由于在TiO2 / Zn界面处的Zn纳米颗粒产生的高表面扩散和毛细力,结构研究显示了由于Zn纳米颗粒产生的高表面扩散和毛细力的阶段的任何可检测变化。

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