Improving efficiency of MEH-PPV/TiO2 solar cells by lithium salt modification
The modification of MEH-PPV/TiO2 photovoltaic devices with the lithium salt, Li[CF3SO2]2N, is shown to result in a 40% increase in both the short-circuit current and fill factor while not affecting the open-circuit voltage. The power conversion efficiency of the modified devices is 1.05% under 80 mW...
Main Authors: | Barkhouse, D, Bishop, H, Henry, B, Webster, G, Burn, P, Assender, H |
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Format: | Journal article |
Sprog: | English |
Udgivet: |
2010
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Lignende værker
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Description of exciton transport in a TiO2/MEH-PPV heterojunction photovoltaic material
af: Kawata, K, et al.
Udgivet: (2005) -
Twofold efficiency increase in nanocrystalline-TiO2/polymer photovoltaic devices by interfacial modification with a lithium salt
af: Barkhouse, D, et al.
Udgivet: (2006) -
Correlation between photoconductivity in nanocrystalline titania and short circuit current transients in MEH-PPV/titania solar cells
af: Xie, Z, et al.
Udgivet: (2007) -
Photovoltaic characterizations of nanocomposited MEH-PPV: TiO₂ organic solar cell / Fazlinashatul Suhaidah Zahid
af: Zahid, Fazlinashatul Suhaidah
Udgivet: (2014) -
The effect of TiO2 surface modification on the photovoltaic properties of hybrid bulk heterojunction solar cells based on MEH-PPV/CdS/TiO2 active layer
af: Duong Vu Thi Thuy, et al.
Udgivet: (2015-04-01)