Epitaxial Growth of Highly Transparent Metal-Porphyrin Framework Thin Films for Efficient Bifacial Dye-Sensitized Solar Cells.

ACS Appl Mater Interfaces

State Key Laboratory of Structural Chemistry , Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences , Fuzhou 350002 , P. R. China.

Published: January 2020

AI Article Synopsis

  • Bifacial dye-sensitized solar cells (DSSCs) are innovative solar energy devices that achieve high efficiency with reduced resource use.
  • A new counter electrode (CE) made from a highly transparent Zn-TCPP thin film doped with single Pt atoms demonstrates similar catalytic activity to traditional commercial Pt CEs but offers better light transmission.
  • The bifacial DSSC using this Zn-TCPP-Pt CE achieves impressive power conversion efficiencies of 5.48% and 4.88% for front and rear irradiation, indicating enhanced performance with minimal platinum usage.

Article Abstract

Bifacial dye-sensitized solar cells (DSSCs) are regarded as promising solar energy conversion devices with high efficiency and less resource consumption. In this work, a highly transparent and efficient counter electrode (CE) is fabricated by introducing highly dispersed single Pt atoms doped into the van der Waals layer-by-layer epitaxially grown Zn-TCPP thin film (Zn-TCPP-Pt). The resulting Zn-TCPP-Pt CE has similar catalytic activity to commercial Pt CE but shows a better light transmission capacity in the range of visible light. The bifacial DSSC with Zn-TCPP-Pt thin film CE achieves high power conversion efficiencies of 5.48 and 4.88% under front-side and rear-side irradiation, respectively. With maximized atomic efficiency, excellent performance was obtained with about 1% Pt content and highly transparent CEs. Therefore, the light energy resource utilization rate of such less Pt and transparence CE is greatly improved in bifacial dye-sensitized solar cells, making it a promising candidate to replace Pt CE.

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Source
http://dx.doi.org/10.1021/acsami.9b19022DOI Listing

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