Electron-deficient anthraquinone derivatives as cathodic material for lithium ion batteries
We studied the electronic and structural properties of electron-deficient anthraquinone (AQ) derivatives, Me4N4AQ and TCNAQ, and investigated their charge-discharge properties in lithium ion batteries along with those of AQ. Cyclic voltammogram, X-ray structure analysis and theoretical calculations...
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Published in | Journal of power sources Vol. 328; pp. 228 - 234 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
01.10.2016
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Abstract | We studied the electronic and structural properties of electron-deficient anthraquinone (AQ) derivatives, Me4N4AQ and TCNAQ, and investigated their charge-discharge properties in lithium ion batteries along with those of AQ. Cyclic voltammogram, X-ray structure analysis and theoretical calculations revealed that these three acceptors have different features, such as different electron-accepting properties with different reduction processes and lithium coordination abilities, and different packing arrangements with different intermolecular interactions. These differences greatly affect the charge-discharge properties of lithium ion batteries that use these compounds as cathode materials. Among these compounds, Me4N4AQ showed a high charge/discharge voltage (2.9–2.5 V) with high cyclability (>65% of the theoretical capacity after 30 cycles; no decrease after 15 cycles). These results provide insight into more in-depth design principles for lithium ion batteries using AQ derivatives as cathodic materials.
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•We studied the electronic/structural properties of electron-deficient AQ derivatives.•Design principles for Li-ion batteries using AQ derivatives as cathode were obtained.•Differences of Li coordination and structure of AQ greatly affect battery properties.•Me4N4AQ showed a high charge/discharge voltage with high cyclability. |
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AbstractList | We studied the electronic and structural properties of electron-deficient anthraquinone (AQ) derivatives, Me4N4AQ and TCNAQ, and investigated their charge-discharge properties in lithium ion batteries along with those of AQ. Cyclic voltammogram, X-ray structure analysis and theoretical calculations revealed that these three acceptors have different features, such as different electron-accepting properties with different reduction processes and lithium coordination abilities, and different packing arrangements with different intermolecular interactions. These differences greatly affect the charge-discharge properties of lithium ion batteries that use these compounds as cathode materials. Among these compounds, Me4N4AQ showed a high charge/discharge voltage (2.9–2.5 V) with high cyclability (>65% of the theoretical capacity after 30 cycles; no decrease after 15 cycles). These results provide insight into more in-depth design principles for lithium ion batteries using AQ derivatives as cathodic materials.
[Display omitted]
•We studied the electronic/structural properties of electron-deficient AQ derivatives.•Design principles for Li-ion batteries using AQ derivatives as cathode were obtained.•Differences of Li coordination and structure of AQ greatly affect battery properties.•Me4N4AQ showed a high charge/discharge voltage with high cyclability. |
Author | Masuda, Asuna Taniki, Ryosuke Honma, Itaru Takeda, Takashi Akutagawa, Tomoyuki |
Author_xml | – sequence: 1 givenname: Takashi surname: Takeda fullname: Takeda, Takashi email: takeda@tagen.tohoku.ac.jp – sequence: 2 givenname: Ryosuke surname: Taniki fullname: Taniki, Ryosuke – sequence: 3 givenname: Asuna surname: Masuda fullname: Masuda, Asuna – sequence: 4 givenname: Itaru surname: Honma fullname: Honma, Itaru – sequence: 5 givenname: Tomoyuki surname: Akutagawa fullname: Akutagawa, Tomoyuki email: akuta@tagen.tohoku.ac.jp |
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SubjectTerms | Anthraquinone Electron acceptor Lithium coordination Lithium-ion batteries Structure-properties relationship |
Title | Electron-deficient anthraquinone derivatives as cathodic material for lithium ion batteries |
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