2020•RSC AdvancesOpen access

The influence of three diphenylpyran isomer co-sensitizers with different sterical structures on N719-based dye sensitized solar cells

Xinxin Wang, Xiuhua Hang, Altan Bolag, Yun Yi Wu, Tana Bao, Jun Ning, Hexig Alata, Tegus Ojiyed

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Abstract

as well as the prevention of dye aggregation. Co-sensitization of the DO molecule with less steric hindrance reduced the desorbed N719 dye amount by half leading to a decline of the photo-harvesting ability and photocurrent generation in DSCs.

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as well as the prevention of dye aggregation. Co-sensitization of the DO molecule with less steric hindrance reduced the desorbed N719 dye amount by half leading to a decline of the photo-harvesting ability and photocurrent generation in DSCs.

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Available abstract

as well as the prevention of dye aggregation. Co-sensitization of the DO molecule with less steric hindrance reduced the desorbed N719 dye amount by half leading to a decline of the photo-harvesting ability and photocurrent generation in DSCs.

Key concepts: Dye-sensitized solar cell, Chemistry, Photochemistry, Materials science, Physical chemistry, Electrode, Electrolyte

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