研究目的
To develop effective solution processable hole transport materials for inverted polymer solar cells that can be scaled up for commercial development.
研究成果
The insertion of a thin layer of a soluble vanadium or molybdenum polyoxometallate between the active layer and PEDOT:PSS leads to efficiencies closer or even greater than evaporated molybdenum oxide. This has been confirmed both for spincoated devices on glass support and for slot-die coated devices on flexible support.
研究不足
The study acknowledges the need for further adjustments of the ink formulations for their use in high-throughput printing or coating processes. The performance of the materials with non-fullerene acceptors was not explored.
The study involved the development of vanadium and molybdenum polyoxometallate salts as hole transport materials. These materials were tested with different active systems (PTB7:PC71BM, PV2000:PCBM, PffBT4T:PC71BM) in inverted polymer solar cells. The materials were deposited from solutions and their performance was compared to that of evaporated molybdenum oxide (e-MoOx) and PEDOT:PSS. The study also included slot-die coating of PV2000:PCBM solar cells on flexible substrates.
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PEDOT:PSS
Clevios AI4083
Heraeus
Hole transport material
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PEDOT:PSS
Clevios CPP105D
Heraeus
Hole transport material
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PEDOT:PSS
Clevios PH1000
Heraeus
Hole transport material
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PEDOT:PSS
HTL Solar 388
Heraeus
Hole transport material
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MoOx
Hole transport material
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VOx
Hole transport material
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WOx
Hole transport material
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NiOx
Hole transport material
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PTB7:PC71BM
Active layer material
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PV2000:PCBM
Active layer material
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PffBT4T:PC71BM
Active layer material
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P3HT:PCBM
Active layer material
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