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首页> 外文期刊>Electrochimica Acta >Dextran based highly conductive hydrogel polysulfide electrolyte for efficient quasi-solid-state quantum dot-sensitized solar cells
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Dextran based highly conductive hydrogel polysulfide electrolyte for efficient quasi-solid-state quantum dot-sensitized solar cells

机译:基于葡聚糖的高导电性水凝胶多硫化物电解质,用于高效准固态量子点敏化太阳能电池

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摘要

Highly conductive hydrogel polysulfide electrolyte is first fabricated using dextran as gelator and used as quasi-solid-state electrolyte for quantum dot-sensitized solar cells (QDSSCs). The hydrogel electrolyte with gelator concentration of 15 wt% shows almost the same conductivity as the liquid one. Moreover, its liquid state at elevated temperature allow for the well penetration into the pores in electrodeposited CdS/CdSe co-sensitized TiO_2 photoanode. This gel electrolyte based QDSSC exhibits power conversion efficiency (η) of 3.23% under AG 1.5G one sun (100 mW cm~(-2)) illumination, slightly lower than that of liquid electrolyte based cell (3.69%). The dynamic electron transfer mechanism of the gel and liquid electrolyte based QDSSC are examined by electrochemical impedance spectroscopy (EIS) and controlled intensity modulated photocurrent/photovoltage spectroscopy (CIMPS/IMVS). It is found that the electron transport in gel electrolyte based cell is much faster than the liquid electrolyte based cell but it tends to recombine more easily than the latter. However, these differences fade away with increasing the light intensity, showing declining electron collection efficiency at higher light intensity illumination. As a result, a conversion efficiency of 4.58% is obtained for the gel electrolyte based quasi-solid-state QDSSC under 0.12 sun illumination. The high conductivity and the good permeation of gel electrolyte may contribute mainly to its excellent photovoltaic performance.
机译:高导电性的水凝胶多硫化物电解质首先使用右旋糖酐作为胶凝剂制造,并用作量子点敏化太阳能电池(QDSSC)的准固态电解质。胶凝剂浓度为15 wt%的水凝胶电解质显示出与液体电解质几乎相同的电导率。而且,其在高温下的液态允许孔很好地渗透到电沉积的CdS / CdSe共敏TiO_2光阳极中的孔中。这种基于凝胶电解质的QDSSC在AG 1.5G阳光下(100 mW cm〜(-2))照射下的功率转换效率(η)为3.23%,略低于基于液体电解质的电池(3.69%)。凝胶和液体电解质基QDSSC的动态电子转移机理通过电化学阻抗谱(EIS)和受控强度调制光电流/光电压谱(CIMPS / IMVS)进行了研究。已经发现,基于凝胶电解质的电池中的电子传输比基于液体电解质的电池中的电子传输快得多,但是与后者相比,它倾向于更容易重组。但是,这些差异随着光强度的增加而消失,显示出在较高光强度的照明下电子收集效率下降。结果,在0。12日光照射下,基于凝胶电解质的准固态QDSSC获得4.58%的转化效率。凝胶电解质的高导电性和良好的渗透性可主要有助于其优异的光伏性能。

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