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Well-defined triblock copolymer/TiO2 composite gel electrolytes for high-performance dye-sensitized solar cells

机译:用于高性能染料敏化太阳能电池的明确定义的三嵌段共聚物/ TiO2复合凝胶电解质

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摘要

A PEG-functionalized macro-RAFT agent was prepared by reacting a DCMBAT (S-dodecyl-S '-(alpha-cyano-alpha '-methyl-alpha ''-butanoic acid)trithiocarbonate) RAFT agent with poly(ethylene glycol) (PEG) in a Steglich esterification reaction. Subsequently, two types of triblock copolymers were prepared by utilizing the PEG-functionalized macro-RAFT agent, and they have structures of PEG-b-(P(AN-co-BMAAm))(2) (SGT-602) and PEG-b-(P(AN-co-DMAAm))(2) (SGT-604). SGT-602 and SGT-604 were successfully dissolved in a liquid electrolyte with acetonitrile (ACN) solvent. The gel electrolyte, SGT-604 or SGT-602, was electrochemically investigated by using a symmetrical dummy cell, in which a thin layer of the gel electrolyte solution is sandwiched between two identical electrodes, and introduced to dye-sensitized solar cells (DSSCs). A TiO2 nanofiller was introduced into the gel electrolytes in order to improve cell performance with a fixed polymer content of 13 wt% and 15 wt% for SGT-602 and SGT-604, respectively. The optimized composition of the TiO2 nanofiller was found to be 10 wt% of the total weight of the polymer gel electrolyte. The resulting TiO2 composite gel electrolytes showed efficiencies of 9.30% and 9.39% for the TiO2 composite gel with SGT-602 (J(sc): 17.98 mA cm(-2), V-oc: 733 mV and FF: 70.59%) and SGT-604 (J(sc): 17.90 mA cm(-2), V-oc: 746 mV and FF: 70.35%), which are comparable to those of liquid-state DSSCs (eta: 9.86%, J(sc): 18.23 mA cm(-2), V-oc: 730 mV and FF: 74.05%). Electrochemical impedance spectra (EIS) and Tafel polarization curves were analyzed to explain the photovoltaic parameters. Finally, the efficiencies were traced under 1 sun illumination at 50 degrees C.
机译:通过与聚(乙二醇)反应DCMBAT(S-十二烷基-S' - (α-氰基-S' - 甲基 - 甲基甲酸)三碳酸酯)筏剂制备PEG官能化的宏观筏剂。 PEG)在STEGLICH酯化反应中。随后,通过利用PEG官能化的宏观筏剂制备两种类型的三嵌段共聚物,并且它们具有PEG-B-(P(AN-CO-BMAAM))(2)(SGT-602)和PEG-的结构B-(P(AN-CO-DMAAM))(2)(SGT-604)。将SGT-602和SGT-604成功地溶解在具有乙腈(ACN)溶剂的液体电解质中。通过使用对称虚设电池电化学研究凝胶电解质,SGT-604或SGT-602,其中凝胶电解质溶液的薄层夹在两个相同的电极之间,并引入染料敏化太阳能电池(DSSC) 。将TiO2纳米填充物引入凝胶电解质中,以改善SGT-602和SGT-604的固定聚合物含量为13wt%和15wt%的细胞性能。发现TiO2纳米填充物的优化组合物为聚合物凝胶电解质总重量的10wt%。通过SGT-602(J(SC):17.98 mA cm(-2),V-OC:733mV和FF:70.59%),所得TiO2复合凝胶电解质显示为9.30%和9.39%的效率为9.30%和9.39%(j(j(sc):17.98 ma cm(-2),V-oc:733mV和ff:70.59%)和SGT-604(J(SC):17.90 mA cm(-2),V-OC:746mV和FF:70.35%),与液态DSSCs(ETA:9.86%,J(SC)相当:18.23 mA cm(-2),V-OC:730 MV和FF:74.05%)。分析电化学阻抗谱(EIS)和TAFEL偏振曲线以解释光伏参数。最后,效率在50℃下在1次太阳照射下追踪。

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