Advanced Energy Materials | Vol.6, Issue.21 | | Pages
Solar Cells: Quaternary Organic Solar Cells Enhanced by Cocrystalline Squaraines with Power Conversion Efficiencies >10% (Adv. Energy Mater. 21/2016)
The first highly efficient single junction quaternary blend solar cells that break efficiency above 10% with complementary squaraine small molecules and low band-gap polymer combinations are reported by Nilay Hazari, André D. Taylor and co-workers in article number 1600660. The quaternary design demonstrates several advantages: (i) broader light absorption, (ii) improved surface morphology, (iii) enhanced co-crystallization packing, (iv) multiple energy and charge transfer pathways to reduce recombination, and (v) increased charge mobility.
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Solar Cells: Quaternary Organic Solar Cells Enhanced by Cocrystalline Squaraines with Power Conversion Efficiencies >10% (Adv. Energy Mater. 21/2016)
The first highly efficient single junction quaternary blend solar cells that break efficiency above 10% with complementary squaraine small molecules and low band-gap polymer combinations are reported by Nilay Hazari, André D. Taylor and co-workers in article number 1600660. The quaternary design demonstrates several advantages: (i) broader light absorption, (ii) improved surface morphology, (iii) enhanced co-crystallization packing, (iv) multiple energy and charge transfer pathways to reduce recombination, and (v) increased charge mobility.
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light recombination junction quaternary blend solar cells low cocrystallization polymer combinations surface morphology quaternary design
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André D. Taylor, Patrick R. Melvin, Minjoo L. Lee, Kevin G. Yager, Xiao Tong, Nilay Hazari,Tenghooi Goh, Matthew Y. Sfeir, Francisco Antonio, Chang-Yong Nam, Louise M. Guard, Jing-Shun Huang, Benjamin G. Bartolome,.Solar Cells: Quaternary Organic Solar Cells Enhanced by Cocrystalline Squaraines with Power Conversion Efficiencies >10% (Adv. Energy Mater. 21/2016). 6 (21),.
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