Formation of hierarchically ordered structures in conductive polymers to enhance the performances of lithium-ion batteries

Author:

Zhu TianyuORCID,Sternlicht HadasORCID,Ha YangORCID,Fang ChenORCID,Liu Dongye,Savitzky Benjamin H.,Zhao XiaoORCID,Lu Yanying,Fu Yanbao,Ophus Colin,Zhu Chenhui,Yang WanliORCID,Minor Andrew M.ORCID,Liu GaoORCID

Funder

DOE | Office of Energy Efficiency & Renewable Energy | Vehicle Technologies Office

Toyota USA

DOE | Office of Science

DOE | SC | Basic Energy Sciences

Publisher

Springer Science and Business Media LLC

Subject

Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment,Electronic, Optical and Magnetic Materials

Reference50 articles.

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2. Jerome, D., Mazaud, A., Ribault, M. & Bechgaard, K. Superconductivity in a synthetic organic conductor (TMTSF)2PF6. J. Phys. 41, L95–L98 (1980).

3. Macdiarmid, A. G., Mammone, R. J., Kaner, R. B. & Porter, S. J. The concept of ‘doping’ of conducting polymers: the role of reduction potentials. Phil. Trans. R. Soc. A 314, 3–15 (1985).

4. Heeger, A. J. Semiconducting and metallic polymers: the fourth generation of polymeric materials (Nobel lecture). Angew. Chem. Int. Ed. 40, 2591–2611 (2001).

5. Paulsen, B. D., Tybrandt, K., Stavrinidou, E. & Rivnay, J. Organic mixed ionic–electronic conductors. Nat. Mater. 19, 13–26 (2020).

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