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- W3193941386 abstract "In this work, copper-coated CoFe2O4/iron foam ([email protected]2O4/Fe) is synthesized with a facile method, including the growth of the copper film on the surface of iron foam via a displacement reaction between iron foam and Cu(II), and the subsequent partial conversion of the interior iron to CoFe2O4 via a hydrothermal reaction by heating the copper-coated iron foam ([email protected]) in the aqueous solution of cobalt nitrate. Iron foam is used as the self-sacrificial template not only for the synthesis of cobalt ferrite foam but also the synthesis of the copper film. The high porosity of [email protected]2O4/Fe facilitates the mass and charge transport at the solution/electrode interface, while the coating of the CoFe2O4 with copper film effectively hinders the volume expansion of CoFe2O4 and subsequently prevents the falling off of CoFe2O4 during the vigorous charging/discharging process, as evidenced by the high areal capacity, good rate capacity and extraordinary cycling stability of [email protected]2O4/Fe." @default.
- W3193941386 created "2021-08-30" @default.
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- W3193941386 date "2021-12-01" @default.
- W3193941386 modified "2023-09-23" @default.
- W3193941386 title "The facile conversion of iron foam into copper-coated 3D porous cobalt ferrite/iron foam for high-performance asymmetric hybrid supercapacitor" @default.
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- W3193941386 doi "https://doi.org/10.1016/j.jallcom.2021.161603" @default.
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