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In our earlier communications, we have shown that appropriate modifications of graphite and multiwalled CNTs can enhance the physico mechanical properties of the nanocomposites [21, 22].
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Various grafting methods for surface modification of graphite powder are reported.
The surface modification of graphite by the annealing of polyvinyl chloride mostly prohibits the continuous consumption of lithium at the graphite anode.
Herein, we demonstrate that surface modification of graphite using oxygen-deficient black titanium oxide (TiO2−x) is an efficient way to improve the fast charging capability of graphite anode material for LIB.
The surface modification of graphite felt with concentrated sulphuric acid has led to dramatic improvement in the electroactivity of this material in the vanadium redox cell.
In this research single-step procedure for the modification of graphite electrode by polypyrrole (PPy), Prussian blue (PB) and glucose oxidase (GOx) based composite layer (PPy/PB/GOx) is reported.
In order to develop an environmental benign method for the modification of graphite felt (GF) electrode, laccase-catalyzed electrochemical fabrication of polyaniline/graphene oxide (PANi/GO) composite at facile pH condition was investigated in this study.
The catalytic responses of class II N. crassa CDH and class I P. chrysosporium CDH could not be improved by the pre-modification of graphite electrodes with PEI.
A process of modification of natural graphite materials as anode for lithium ion batteries was attempted.
Modification of natural graphite has recently moved into the focus of methods to prepare anode materials for lithium ion batteries.
The present work describes a typical functionalized fullerene (C60 -based imprinted polymer C60 -basedfor the modimprinted of polymergraphite elecomposite
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