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Preparation of Polyaniline Emeraldine Salt for Conducting-Polymer-Activated Counter Electrode in Dye Sensitized Solar Cell (DSSC) using Rapid-Mixing Polymerization at Various Temperature

机译:在染料中染料中的聚合物活化对电极进行聚苯胺欧洲盐的制备在各种温度下使用快速混合聚合在荧光致敏太阳能电池(DSSC)中的聚合物 - 活化对电极

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摘要

Polyaniline Emeraldine Salt (PANI ES) as a conductive polymer has been used as a Pt-free counter electrode materials in DSSC. In this study, polymerization temperature was varied at relatively high temperature from 308 to 348 K with respect to the standard low polymerization temperature at 273 K. The synthesis held in varied high-temperature to study the effect of synthesis condition resulted to the performance as counter electrode in DSSC. The effect of high-temperature synthesis condition gives interesting results, the FTIR-ATR spectra show the presence of vibrational modes of phenazine structure obtained at high polymerization temperature, indicate the changing in the chain geometry. Raman Spectroscopy shows the decrease of the I1194/I1623 intensity ratio that can be interpreted that the degree-of-freedom of C-H bond bending mode decreases in the benzenoid ring, while the stretching mode degree-of-freedom along the chain is preserved or increased. The electrical conductivity profile has changed from metal-like at low-temperature into a semiconductor-like profile at high-temperature. Scanning Electron Microscope images reveals that a change in the morphology of PANI ES with temperature. At low-temperature (273 K) the morphology has a globular shape, while at high-temperature it tends to form nanorod structure. DSSC device with highest efficiency is attained for PANI ES polymerized at 273 K (1.91%) due to its high conductivity. The lowest efficiency is observed in device using PANI ES synthesized at 328 K (1.15%) due to its low conductivity due to the formation of phenazine structure. Copyright © 2019 BCREC Group. All rights reserved
机译:聚苯胺欧洲盐(PANI ES)作为导电聚合物已被用作DSSC中的无规型对应电极材料。在该研究中,在273k的标准低聚温度下,聚合温度在相对高的温度下在相对高的温度范围内变化。在不同的高温下持有的合成,研究合成条件的效果导致表现为柜台DSSC中的电极。高温合成条件的效果具有有趣的结果,FTIR-ATR光谱显示在高聚合温度下获得的苯吡啶结构的振动模式的存在,表明链几何形状变化。拉曼光谱显示I1194 / I1623强度比的降低,可以解释为CH键弯曲模式的自由度在苯内环中降低,而沿着链条的拉伸模式自由度被保存或增加。电导率曲线在高温下从低温下的金属状变为半导体样曲线。扫描电子显微镜图像揭示了PANI ES与温度的形态的变化。在低温(273k)时,形态学具有球状,而在高温下,它倾向于形成纳米棒结构。由于其高导电性,在273 k(1.91%)以273k(1.91%)聚合的PANI ES而达到了最高效率的DSSC装置。由于其由于苯吡啶结构的形成而在328k(1.15%),在328k(1.15%)中,在装置中使用Pani ES在装置中观察到最低效率。版权所有©2019 BCRec组。版权所有

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