Biomass-derived mesoporous core-shell Fe3C@graphene oxide nanospheres for electrochemical energy storage
Author:
Funder
National Natural Science Foundation of China
Natural Science Foundation of Shandong Province
Publisher
Elsevier BV
Reference46 articles.
1. Electric vehicles batteries: requirements and challenges;Deng;Joule,2020
2. Recent advancement made in the field of reduced graphene oxide-based nanocomposites used in the energy storage devices: a review;Kumar;J Energy Storage,2021
3. Metal Ti quantum chain-inlaid 2D NaSn2(PO4)3/H-doped hard carbon hybrid electrodes with ultrahigh energy storage density;He;Chem Eng J,2021
4. A high-performance rocking-chair lithium-ion battery-supercapacitor hybrid device boosted by doubly matched capacity and kinetics of the faradaic electrodes;Su;Energy Environ Sci,2021
5. Hybrid energy storage devices: advanced electrode materials and matching principles;Tie;Energy Storage Mater,2019
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