Ordered Multimodal Porous Carbon as Highly Efficient Counter Electrodes in Dye-Sensitized and Quantum-Dot Solar Cells

  • Fan, Sheng-Qiang
  • Fang, Baizeng
  • Kim, Jung Ho
  • Jeong, Banseok
  • Kim, Chulwoo
  • 외 2명
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초록

Ordered multimodal porous carbon (OMPC) was explored as a counter electrode in ruthenium complex dye-sensitized solar cells (DSSCs) and CdSe quantum-dot solar cells (QDSCs). The unique structural characteristics such as large surface area and well-developed three-dimensional (3-D) interconnected ordered macropore framework with open mesopores embedded in the macropore walls make the OM PC electrodes have high catalytic activities and fast mass transfer kinetics toward both triiodide/iodide and polysulfide electrolytes. The efficiency (ca. 8.67%) of the OMPC based DSSC is close to that (ca. 9.34%) of the Pt based one. Most importantly, the QDSC employing OM PC material presents a high efficiency of up to 4.36%, which is significantly higher than those of Pt- and activated carbon based solar cells, ca. 2.29% and 3.30%, respectively.

키워드

HIERARCHICAL NANOSTRUCTURED CARBONEQUIVALENT-CIRCUITCOST
제목
Ordered Multimodal Porous Carbon as Highly Efficient Counter Electrodes in Dye-Sensitized and Quantum-Dot Solar Cells
저자
Fan, Sheng-QiangFang, BaizengKim, Jung HoJeong, BanseokKim, ChulwooYu, Jong-SungKo, Jaejung
DOI
10.1021/la1019873
발행일
2010-08-17
유형
Article
저널명
Langmuir
26
16
페이지
13644 ~ 13649