4.8 Article

All-Polymer Solar Cells with 3.3% Efficiency Based on Naphthalene Diimide-Selenophene Copolymer Acceptor

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JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 135, 期 40, 页码 14960-14963

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AMER CHEMICAL SOC
DOI: 10.1021/ja4085429

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  1. U.S. Department of Energy, Office of Basic Energy Sciences, Division of Materials Sciences [DEFG02-07ER46467]
  2. Office of Naval Research (ONR) [N00014-11-1-0317]
  3. NSF [DMR-1035196]

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The lack of suitable acceptor (n-type) polymers has limited the photocurrent and efficiency of polymer/polymer bulk heterojunction (BHJ) solar cells. Here, we report an evaluation of three naphthalene amide (NDI) copolymers as electron acceptors in BHJ solar cells which finds that all-polymer solar cells based on an NDI-selenophene copolymer (PNDIS-HD) acceptor and a thiazolothiazole copolymer (PSEHTT) donor exhibit a record 3.3% power conversion efficiency. The observed short circuit current density of 7.78 mA/cm(2) and external quantum efficiency of 47% are also the best such photovoltaic parameters seen in all-polymer solar cells so far. This efficiency is comparable to the performance of similarly evaluated [6,6]-Phenyl-C-61-butyric acid methyl ester (PC60BM)/PSEHTT devices. The lamellar, crystalline morphology of PNDIS-HD, leading to balanced electron and hole transport in the polymer/polymer blend solar cells accounts for its good photovoltaic properties.

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