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Rational Design of Low-Band Gap Star-Shaped Molecules With 2,4,6-Triphenyl-1,3,5-triazine as Core and Diketopyrrolopyrrole Derivatives as Arms for Organic Solar Cells Applications
Frontiers in Chemistry
◽
10.3389/fchem.2019.00122
◽
2019
◽
Vol 7
◽
Cited By ~ 1
Author(s):
Xinhao Zhang
◽
Ruifa Jin
Keyword(s):
Solar Cells
◽
Band Gap
◽
Organic Solar Cells
◽
Rational Design
◽
Low Band Gap
Download Full-text
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Design of low band gap small molecules with alkyldicyanovinyl acceptor and different donor groups for efficient bulk heterojunction organic solar cells
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Low-Band-Gap Platinum Acetylide Polymers as Active Materials for Organic Solar Cells
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◽
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(1)
◽
pp. 150-161
◽
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Low Band Gap Donor−Acceptor Conjugated Polymers toward Organic Solar Cells Applications
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A Low Band Gap, Solution Processable Oligothiophene with a Diketopyrrolopyrrole Core for Use in Organic Solar Cells
The Journal of Physical Chemistry C
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◽
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◽
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Rational Design of Low Band Gap Polymers for Efficient Solar Cells with High Open-Circuit Voltage: The Profound Effect of Me and Cl Substituents with a Similar van Der Waals Radius
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◽
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◽
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◽
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◽
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◽
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◽
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◽
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A novel benzodipyrrolidone-based low band gap polymer for organic solar cells
Journal of Materials Chemistry A
◽
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A low band gap conjugated small molecule based on isoindigo flanked with diketopyrrolopyrrole for efficient organic solar cells
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Bis-Azide Low-Band Gap Cross-Linkable Molecule N3-[CPDT(FBTTh2)2] to Fully Thermally Stabilize Organic Solar Cells Based on P3HT:PC61BM
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