Logo image
Three-dimensional vertically aligned hybrid nanoarchitecture of two-dimensional molybdenum disulfide nanosheets anchored on directly grown one-dimensional carbon nanotubes for use as a counter electrode in dye-sensitized solar cells
期刊文章   同儕審查

Three-dimensional vertically aligned hybrid nanoarchitecture of two-dimensional molybdenum disulfide nanosheets anchored on directly grown one-dimensional carbon nanotubes for use as a counter electrode in dye-sensitized solar cells

Che-Hsien Lin, Chuen-Horng Tsai, Fan-Gang Tseng, Chen-Chi M. Ma, Hsuan-Chung WuChien-Kuo Hsieh
Journal of Alloys and Compounds, 卷.692, 頁碼.941-949
2017

摘要

CNTs Counter electrode Dye-sensitized solar cells Hybrid nanostructure MoS2nanosheets Mechanics of Materials Mechanical Engineering Metals and Alloys Materials Chemistry
Two-dimensional (2D) molybdenum disulfide (MoS 2 ) nanosheets were synthesized to anchor onto the surfaces of directly grown one-dimensional (1D) carbon nanotubes (CNTs) on fluorinated tin oxide (FTO) glass. This three-dimensional (3D) vertically aligned hybrid nanoarchitecture was used in Pt-free counter electrodes (CEs) for dye-sensitized solar cells (DSSCs). The prepared 2D MoS 2 nanosheets, with exposed layers, provided a great deal of edge-plane catalytically active sites for I 3 reduction. The directly grown 1D CNTs provide an attractive template that offers a large surface area to promote the loading of 2D MoS 2 nanosheets for enhancing electrochemical activity. The CNTs directly grown on the FTO substrate provided a high-speed pathway that promoted charge transport and transfer, resulting in a lower electron lifetime that increased the exchange current density and reduced the charge-transfer resistance. The DSSCs assembled with the 3D vertically aligned MoS 2 /CNT hybrid nanoarchitecture CE achieved a power conversion efficiency of 7.83%, 9.5% higher than that of a cell prepared with a Pt film CE (7.15%).

相關連結

指標

1 檢視次數

詳細資料

Logo image