array(2) { ["lab"]=> string(3) "660" ["publication"]=> string(4) "3955" } Phenyl and thienyl functionalized imidazolium iodides for highly efficient quasi-solid-state dye-sensitized solar cells - 复旦大学王忠胜课题组 | LabXing

复旦大学王忠胜课题组

简介 染料敏化/量子点/钙钛矿太阳能电池光伏领域

分享到

Phenyl and thienyl functionalized imidazolium iodides for highly efficient quasi-solid-state dye-sensitized solar cells

2017
期刊 JOURNAL OF MATERIALS CHEMISTRY A
下载全文
To enhance the ionic conductivity of imidazolium iodide based ionic conductors, the pi conjugation of the imidazolium cation is expanded via N-substitution with aromatic groups of phenyl and thienyl. Three ionic conductors (ICs) of MPhII, MT2II and MT3II are designed and synthesized by linking benzene, 2-thiophene, and 3-thiophene to the imidazolium ring, respectively, and their single crystal structures are revealed. Quasi-solid-state electrolytes are prepared by solidifying the IC-containing solutions with SiO2 nanoparticles for quasi-solid-state dye-sensitized solar cells (QSS-DSSCs). The ionic conductivity of these quasi-solid-state electrolytes depends on the substituent and the substitution position as well, which correlates well with the distance between adjacent iodides, as revealed by the crystal packing structures. Owing to the highest conductivity among the three electrolytes, the QSS-DSSC with the MPhII based quasi-solid-state electrolyte achieves the highest power conversion efficiency of 8.36% under AM 1.5G sunlight (100 mW cm(-2)), which also exhibits good long-term stability under one sun soaking for more than 2000 h.

  • 卷 5
  • 期 32
  • 页码 16976-16983
  • DOI: 10.1039/c7ta04717g