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A new design strategy for redox-active molecular assemblies with crystalline porous structures for lithium-ion batteries.


ABSTRACT: A new design strategy for high-performance organic cathode active materials for lithium-ion batteries is presented, which involves the assembly of redox-active organic molecules with a crystalline porous structure using mixed-stacked charge-transfer (CT) complexes. Hexahydroxytriphenylene was used as a donor molecule and 1,4,5,8,9,12-hexaazatriphenylene-2,3,6,7,10,11-hexacarbonitrile as an acceptor molecule to give a new porous CT complex (PCT-1) with a pseudo-hexagonal mixed columnar structure. X-ray diffraction measurements and sorption experiments demonstrated that the intercolumnar spaces in PCT-1 can incorporate various molecules accompanied by lattice expansion. A lithium metal battery containing PCT-1 as a cathode active material exhibited a high capacity of 288 mA h g-1 at 500 mA g-1, and this performance was attributed to a combination of the redox-active units and the porous structure of PCT-1.

SUBMITTER: Nakashima K 

PROVIDER: S-EPMC7067258 | biostudies-literature | 2020 Jan

REPOSITORIES: biostudies-literature

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A new design strategy for redox-active molecular assemblies with crystalline porous structures for lithium-ion batteries.

Nakashima Kensuke K   Shimizu Takeshi T   Kamakura Yoshinobu Y   Hinokimoto Akira A   Kitagawa Yasutaka Y   Yoshikawa Hirofumi H   Tanaka Daisuke D  

Chemical science 20191129 1


A new design strategy for high-performance organic cathode active materials for lithium-ion batteries is presented, which involves the assembly of redox-active organic molecules with a crystalline porous structure using mixed-stacked charge-transfer (CT) complexes. Hexahydroxytriphenylene was used as a donor molecule and 1,4,5,8,9,12-hexaazatriphenylene-2,3,6,7,10,11-hexacarbonitrile as an acceptor molecule to give a new porous CT complex (<b>PCT-1</b>) with a pseudo-hexagonal mixed columnar str  ...[more]

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