首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Electrochromic devices based on poly(3-methylthiophene) and various secondary electrochromic materials
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Electrochromic devices based on poly(3-methylthiophene) and various secondary electrochromic materials

机译:基于聚(3-甲基噻吩)和各种二次电致变色材料的电致变色器件

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In this paper, the electrochemical properties of poly(3-methylthiophene) (PMT), poly(3,4-ethylenedioxythiophene) (PEDOT) and niobium pentoxide (Nb_2O_5) films deposited on ITO are described. PMT films were made by galvanostatic electrodeposition. PEDOT and Nb_2O_5 were deposited by spin-coating from a suspension, in the case of PEDOT, and from a precursor solution obtained by the Pechini method, for Nb_2O_5. Three electrochromic devices were assembled from these films, with different arrangements of electrodes, using poly(epichlorohydrin-co-ethylene oxide) (P(EPI-EO))+LiClO_4 as the polymer electrolyte. The PMT films were employed as the working electrode (E_1) and PEDOT, Nb_2O_5 or ITO as counter-electrodes (E_2). The devices showed color changes from red to blue in response to the applied potential from -1.5 to +1.5 V (PMT vs. E_2), respectively. The transmittance variation was measured in the visible region (λ=650 nm) during the polarization. The systems were also characterized with respect to their coulombic efficiency (CE), electrochromic efficiency (η) and response time (τ). The three devices gave similar results, as follows: CE of 107%, η from 92 to 126 cm~2 C~(-1) and τ~2 s. The cycle life and optical memory were also analyzed and the devices showed good durability for 1000 cycles and good optical memory, demonstrating the potential applicability of the electrochromic devices presented here.
机译:本文描述了沉积在ITO上的聚(3-甲基噻吩)(PMT),聚(3,4-乙撑二氧噻吩)(PEDOT)和五氧化二铌(Nb_2O_5)的电化学性能。 PMT膜是通过恒电流电沉积制成的。通过旋涂从悬浮液(对于PEDOT而言)和从通过Pechini方法获得的前体溶液中沉积Nb_2O_5,从而沉积PEDOT和Nb_2O_5。使用聚(环氧氯丙烷-环氧乙烷)(P(EPI-EO))+ LiClO_4作为聚合物电解质,由这些膜组装了三个电致变色器件,电极排列不同。使用PMT膜作为工作电极(E_1),使用PEDOT,Nb_2O_5或ITO作为反电极(E_2)。器件响应从-1.5到+1.5 V的施加电势(PMT与E_2),颜色从红色变为蓝色。在偏振期间在可见光区域(λ= 650nm)中测量透射率变化。该系统还具有库仑效率(CE),电致变色效率(η)和响应时间(τ)的特征。三种装置给出的结果相似:CE为107%,η为92至126 cm〜2 C〜(-1),τ〜2 s。还分析了循环寿命和光学记忆,并且该器件在1000个循环中显示出良好的耐久性以及良好的光学记忆,证明了此处介绍的电致变色器件的潜在适用性。

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