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Enhancing performance of ZnO dye-sensitized solar cells by incorporation of multiwalled carbon nanotubes
Authors:Chang Wei-Chen  Cheng Yao-Yi  Yu Wan-Chin  Yao Yih-Chun  Lee Chia-Hua  Ko Hung-Han
Affiliation:Institute of Organic and Polymeric Materials, National Taipei University of Technology, Taipei, Taiwan, 10608, Republic of China. wanchin@ntut.edu.tw.
Abstract:
ABSTRACT: A low-temperature, direct blending procedure was used to prepare composite films consisting of zinc oxide [ZnO] nanoparticles and multiwalled carbon nanotubes [MWNTs]. The mesoporous ZnO/MWNT films were fabricated into the working electrodes of dye-sensitized solar cells [DSSCs]. The pristine MWNTs were modified by an air oxidation or a mixed acid oxidation treatment before use. The mixed acid treatment resulted in the disentanglement of MWNTs and facilitated the dispersion of MWNTs in the ZnO matrix. The effects of surface property and loading of MWNTs on DSSC performance were investigated. The performance of DSSCs was found to depend greatly on the type and the amount of MWNTs incorporated. At a loading of 0.01 wt%, the acid-treated MWNTs were able to increase the power conversion efficiency of fabricated cells from 2.11% (without MWNTs) to 2.70%.
Keywords:ZnO   nanoparticle   multiwalled carbon nanotube   composite film   dye-sensitized solar cells   conversion efficiency
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