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分级组织的二氧化钛纳米结构中铌掺杂对染料敏化太阳能电池性能的影响。

Influence of niobium doping in hierarchically organized titania nanostructure on performance of dye-sensitized solar cells.

作者信息

Park Jong Hoon, Noh Jun Hong, Han Byung Suh, Shin Seong Sik, Park Ik Jae, Kim Dong Hoe, Hong Kug Sun

机构信息

WCU Hybrid Materials Program, Department of Materials Science and Engineering, Seoul National University, Seoul 151-744, Korea.

出版信息

J Nanosci Nanotechnol. 2012 Jun;12(6):5091-5. doi: 10.1166/jnn.2012.4920.

Abstract

Niobium doped hierarchically organized TiO2 nanostructures composed of 20 nm size anatase nanocrystals were synthesized using pulsed laser deposition (PLD). The Nb doping concentration could be facilely controlled by adjusting the concentration of Nb in target materials. We could investigate the influence of Nb doping in the TiO2 photoelectrode on the cell performance of dye-sensitized solar cells (DSSCs) by the exclusion of morphological effects using the prepared Nb-doped TiO2 anostructures. We found no significant change in short circuit current density (Jsc) as a function of Nb doping concentration. However, open circuit voltage (Voc) and fill factor (FF) monotonously decrease with increasing Nb concentration. Dark current characteristics of the DSSCs reveal that the decrease in Voc and FF is attributed to the decrease in shunt resistance due to the increase in conductivity TiO2 by Nb doping. However, electrochemical impedance spectra (EIS) analysis at open circuit condition under illumination showed that the resistance at the TiO2/dye/electrolyte interface increases with Nb concentration, revealing that Nb doping suppress the charge recombination at the interface. In addition, electron life time obtained using characteristic frequency in Bode plot increases from 14 msec to 56 msec with increasing Nb concentration from 0 to 1.2 at%. This implies that the improved light harvesting can be achieved by increasing diffusion length through Nb-doping in the conventional TiO2 photoelectrode.

摘要

采用脉冲激光沉积(PLD)法合成了由20nm尺寸锐钛矿纳米晶体组成的铌掺杂分级有序TiO₂纳米结构。通过调整靶材中铌的浓度,可以轻松控制铌的掺杂浓度。利用制备的铌掺杂TiO₂纳米结构,排除形态学效应,我们可以研究TiO₂光电极中铌掺杂对染料敏化太阳能电池(DSSC)电池性能的影响。我们发现短路电流密度(Jsc)随铌掺杂浓度的变化没有显著变化。然而,开路电压(Voc)和填充因子(FF)随着铌浓度的增加而单调下降。DSSC的暗电流特性表明,Voc和FF的下降归因于铌掺杂导致TiO₂电导率增加,从而使并联电阻降低。然而,光照下开路条件下的电化学阻抗谱(EIS)分析表明,TiO₂/染料/电解质界面处的电阻随铌浓度增加而增加,这表明铌掺杂抑制了界面处的电荷复合。此外,随着铌浓度从0增加到1.2at%,使用Bode图中的特征频率获得的电子寿命从14毫秒增加到56毫秒。这意味着通过在传统TiO₂光电极中进行铌掺杂来增加扩散长度,可以实现光捕获的改善。

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