Recent developments in polymer semiconductors with excellent electron transport performances
Chinese Academy of Sciences · Beijing National Laboratory for Molecular Sciences · +2 more institutions
Abstract
Benefiting from molecular design and device innovation, electronic devices based on polymer semiconductors have achieved significant developments and gradual commercialization over the past few decades. Most of high-performance polymer semiconductors that have been prepared exhibit p-type performances, and records of their carrier mobilities are constantly being broken through. Although ambipolar and n-type polymers are necessary for constructing p-n heterojunctions and logic circuits, only a few materials show outstanding device performances, which leads to their developments lagging far behind that of p-type analogues. As a consequence, it is extremely significant to summarize polymer semiconductors with…
Citation impact
- FWCI
- 24.29
- Percentile
- 100%
- References
- 351
Authors
5- YZYunchao Zhang
Chinese Academy of Sciences, Beijing National Laboratory for Molecular Sciences, University of Science and Technology Beijing
- WZWeifeng Zhang
Chinese Academy of Sciences, Beijing National Laboratory for Molecular Sciences, University of Chinese Academy of Sciences
- ZCZhihui Chen
Chinese Academy of Sciences, Beijing National Laboratory for Molecular Sciences
- LWLiping Wang
University of Science and Technology Beijing
- GYGui YuCorresponding
Chinese Academy of Sciences, Beijing National Laboratory for Molecular Sciences, University of Chinese Academy of Sciences
Topics & keywords
- Semiconductor
- Polymer
- Monomer
- Materials science
- Nanotechnology
- Electron transport chain
- Organic semiconductor
- Electron
Funding
- NNNational Natural Science Foundation of ChinaAwards: 22175021, 22075294, 22021002, 22275194, 22475220
- CAChinese Academy of SciencesAward: XDB0520000
- NKNational Key Research and Development Program of ChinaAward: 2024YFA1209600
- BNBeijing National Laboratory for Molecular SciencesAward: BNLMS-CXXM-202101