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- W2755817963 abstract "Abstract Redox chemistry is the cornerstone of various electrochemical energy conversion and storage systems, associated with ion diffusion process. To actualize both high energy and power density in energy storage devices, both multiple electron transfer reaction and fast ion diffusion occurred in one electrode material are prerequisite. The existence forms of redox ions can lead to different electrochemical thermodynamic and kinetic properties. Here, we introduce novel colloid system, which includes multiple varying ion forms, multi‐interaction and abundant redox active sites. Unlike redox cations in solution and crystal materials, colloid system has specific reactivity‐structure relationship. In the colloidal ionic electrode, the occurrence of multiple‐electron redox reactions and fast ion diffusion leaded to ultrahigh specific capacitance and fast charge rate. The colloidal ionic supercapattery coupled with redox electrolyte provides a new potential technique for the comprehensive use of redox ions including cations and anions in electrode and electrolyte and a guiding design for the development of next‐generation high performance energy storage devices." @default.
- W2755817963 created "2017-09-25" @default.
- W2755817963 creator A5018357834 @default.
- W2755817963 creator A5052820004 @default.
- W2755817963 date "2017-09-11" @default.
- W2755817963 modified "2023-10-18" @default.
- W2755817963 title "Colloidal Supercapattery: Redox Ions in Electrode and Electrolyte" @default.
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- W2755817963 doi "https://doi.org/10.1002/tcr.201700037" @default.
- W2755817963 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/28892248" @default.
- W2755817963 hasPublicationYear "2017" @default.
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