Stability Modification of Dye-sensitized Solar Cells by Ruthenium Dyes Embedded on Eggshell Membranes

Author:

Tanifuji Naoki1ORCID,Shimizu Takeshi1,Shimizu Akihiro2,Shimizu Kaho2,Abe Kizuna2,Tanaka Miki2,Wang Heng3,Yoshikawa Hirofumi4ORCID

Affiliation:

1. Chemistry and Biochemistry Division, Department of Integrated Engineering, National Institute of Technology, Yonago College, 4448 Hikona-cho, Yonago 683-8502, Tottori, Japan

2. Department of Materials Science, National Institute of Technology, Yonago College, Yonago 683-8502, Tottori, Japan

3. School of Material and Chemical Engineering, Zhengzhou University of Light Industry, Zhengzhou 450002, China

4. School of Engineering, Kwansei Gakuin University, 2-1 Gakuen, Sanda 669-1337, Hyogo, Japan

Abstract

Dye-sensitized solar cells (DSSCs) have been one of the most promising technologies to convert sunlight into electricity repeatedly based on the mechanism that dyes inject/accept electron into the metal oxides/from redox mediator. Specifically, N719 ([RuL2(NCS)2], L: 4,4′-dicarboxy-2,2′-bipyridine), immobilized on TiO2 through the interaction between its ligands (-COO− and -NCS) and the oxygen on the TiO2 surface, has been used as a conventional DSSC dye with high voltage. Nevertheless, -NCS ligands have been removed from Ru2+ in N719 due to UV irradiation and exchanged with H2O or OH− in electrolyte, resulting in voltage drop. In this work, we developed the first DSSC using the N719-adsorbed Eggshell (ESM)-TiO2 composite to maintain the immobilization of N719 on TiO2 through electrostatic interaction between the protein of ESM and N719. The DSSC using the composite maintained the voltage even after 12 h light irradiation, although the voltage of DSSC without ESM dropped drastically. It means that the ESM contributed to stable photovoltaic performances of DSSCs through the protection of NCS ligands of N719.

Funder

JSPS KAKENHI

Research Foundation for the Electrotechnology of Chubu

Electric Technology Research Foundation of Chugoku

National Institute of Technology

Publisher

MDPI AG

Subject

General Materials Science

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5. Enhanced Performance in Inverted Polymer Solar Cells with D-π-A-Type Molecular Dye Incorporated on ZnO Buffer Layer;Song;ChemSusChem,2013

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