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- W2783607666 endingPage "2081" @default.
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- W2783607666 abstract "Inspired by the biological metabolic process, some biomolecules with reversible redox functional groups have been used as promising electrode materials for rechargeable batteries, supercapacitors and other charge-storage devices. Although these biomolecule-based electrode materials possess remarkable beneficial properties, their controllable synthesis and morphology-related properties have been rarely studied. Herein, one dimensional nanostructures based on juglone biomolecules have been successfully fabricated by an antisolvent crystallization and self-assembly method. Moreover, the size effect on their electrochemical charge-storage properties has been investigated. It reveals that the diameters of the one dimensional nanostructure determine their electron/ion transport properties, and the juglone nanowires achieve a higher specific capacitance and rate capability. This work will promote the development of environmentally friendly and high-efficiency energy storage electrode materials." @default.
- W2783607666 created "2018-01-26" @default.
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- W2783607666 date "2018-01-01" @default.
- W2783607666 modified "2023-10-17" @default.
- W2783607666 title "Renewable juglone nanowires with size-dependent charge storage properties" @default.
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- W2783607666 doi "https://doi.org/10.1039/c7ra12489a" @default.
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