Wu Jih-Jen, Hsieh Min-Da, Liao Wen-Pin, Wu Wei-Ting, Chen Jen-Sue
Department of Chemical Engineering, National Cheng Kung University, Tainan 701, Taiwan.
ACS Nano. 2009 Aug 25;3(8):2297-303. doi: 10.1021/nn900428s.
In this study, we demonstrate a photovoltachromic cell (PVCC) which is a solar cell and able to take solar energy to stimulate chromic behavior with the characteristic of tunable transmittance. The cell is composed of a patterned WO(3)/Pt electrochromic electrode and a dye-sensitized TiO(2) nanoparticle photoanode. Compared to reported photoelectrochromic cells (PECC) with nonpatterned WO(3) electrochromic electrodes, PVCC achieves a much faster bleaching time of only 60 s by blocking the light at short circuit. When PVCC is bleached under illumination at open circuit, an exceedingly short bleaching time of 4 s is achieved. Furthermore, PVCC has photovoltaic characteristics comparable to those of dye-sensitized solar cells (with Pt as the counter-electrode). In contrast to conventional photochromic devices, the transmittance of PVCC under a constant illumination can be adjusted by the resistance of a load in series with the cell. These characteristics are a result of the patterned WO(3)/Pt electrode, which provides effective charge transfer pathways to facilitate the charging/discharging of Li ions and electrons via the photovoltaic potential and the Pt-electrolyte catalytic route, respectively.
在本研究中,我们展示了一种光电压变色电池(PVCC),它是一种太阳能电池,能够利用太阳能激发具有可调透射率特性的变色行为。该电池由图案化的WO(3)/Pt电致变色电极和染料敏化TiO(2)纳米颗粒光阳极组成。与报道的具有非图案化WO(3)电致变色电极的光电致变色电池(PECC)相比,PVCC通过在短路时阻挡光线,实现了仅60秒的更快漂白时间。当PVCC在开路光照下漂白时,实现了仅4秒的极短漂白时间。此外,PVCC具有与染料敏化太阳能电池(以Pt作为对电极)相当的光伏特性。与传统光致变色器件不同,PVCC在恒定光照下的透射率可以通过与电池串联的负载电阻进行调节。这些特性是图案化的WO(3)/Pt电极的结果,该电极分别通过光伏电位和Pt-电解质催化途径提供有效的电荷转移途径,以促进锂离子和电子的充电/放电。