Structures and properties of diradical compounds containing disulfide and nitroxide groups

[Display omitted] •We prepared eight disulfide derivatives carrying a nitroxide radical.•We elucidated the crystal structures of four derivatives by X-ray analyses.•The structure/magnetic property relationships of the derivatives were investigated.•The CV data of the derivatives revealed dual redox...

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Published inSynthetic metals Vol. 208; pp. 17 - 20
Main Authors Fujikura, Kouki, Akutsu, Hiroki, Yamada, Jun-ichi, Nakatsuji, Shin’ichi, Satoh, Masaharu
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.10.2015
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Abstract [Display omitted] •We prepared eight disulfide derivatives carrying a nitroxide radical.•We elucidated the crystal structures of four derivatives by X-ray analyses.•The structure/magnetic property relationships of the derivatives were investigated.•The CV data of the derivatives revealed dual redox nature.•They exhibited multi-step charge–discharge profiles with relatively large capacities. In order to develop a kind of dual redox system with rechargeable battery property having potential high charge density, eight disulfide compounds carrying nitroxide radical have been prepared. Reflecting their multi-redox nature observed in their cyclic voltammetry data, they exhibit multi-step charge–discharge profiles with fairly large capacities over 200Ahkg−1 for the first discharging processes. The Curie–Weiss type behaviors or 1D Heisenberg type profiles found for the respective radical compounds could be understandable by investigating the clarified crystal structures of four compounds (3, 4, 7, and 8) among them.
AbstractList [Display omitted] •We prepared eight disulfide derivatives carrying a nitroxide radical.•We elucidated the crystal structures of four derivatives by X-ray analyses.•The structure/magnetic property relationships of the derivatives were investigated.•The CV data of the derivatives revealed dual redox nature.•They exhibited multi-step charge–discharge profiles with relatively large capacities. In order to develop a kind of dual redox system with rechargeable battery property having potential high charge density, eight disulfide compounds carrying nitroxide radical have been prepared. Reflecting their multi-redox nature observed in their cyclic voltammetry data, they exhibit multi-step charge–discharge profiles with fairly large capacities over 200Ahkg−1 for the first discharging processes. The Curie–Weiss type behaviors or 1D Heisenberg type profiles found for the respective radical compounds could be understandable by investigating the clarified crystal structures of four compounds (3, 4, 7, and 8) among them.
In order to develop a kind of dual redox system with rechargeable battery property having potential high charge density, eight disulfide compounds carrying nitroxide radical have been prepared. Reflecting their multi-redox nature observed in their cyclic voltammetry data, they exhibit multi-step charge-discharge profiles with fairly large capacities over 200Ahkg-1 for the first discharging processes. The Curie-Weiss type behaviors or 1D Heisenberg type profiles found for the respective radical compounds could be understandable by investigating the clarified crystal structures of four compounds (3, 4, 7, and 8) among them.
Author Fujikura, Kouki
Akutsu, Hiroki
Yamada, Jun-ichi
Satoh, Masaharu
Nakatsuji, Shin’ichi
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Keywords Magnetic property
Redox property
Battery property
Nitroxide
Disulfide
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Snippet [Display omitted] •We prepared eight disulfide derivatives carrying a nitroxide radical.•We elucidated the crystal structures of four derivatives by X-ray...
In order to develop a kind of dual redox system with rechargeable battery property having potential high charge density, eight disulfide compounds carrying...
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SubjectTerms Battery property
Charge density
Crystal structure
Discharge
Disulfide
Disulfides
Magnetic property
Nitroxide
Radicals
Rechargeable batteries
Redox property
Synthetic metals
Voltammetry
Title Structures and properties of diradical compounds containing disulfide and nitroxide groups
URI https://dx.doi.org/10.1016/j.synthmet.2015.03.009
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