Spaced-confined heterostructure engineering enables rapid ion transport in MoS2–Co9S8@C yolk-shell polyhedron for efficient lithium storage
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Physical and Theoretical Chemistry,Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment
Reference56 articles.
1. Porous carbon matrix-encapsulated MnO in situ derived from metal-organic frameworks as advanced anode materials for Li-ion capacitors;Jiang;Sci. China Mater.,2021
2. Self-adaptive FeP@C nanocages for reversible and long-term lithium-ion batteries;Zhou;Chem. Eng. J.,2020
3. High-energy and high-power pseudocapacitor-battery hybrid sodium-ion capacitor with Na(+) intercalation pseudocapacitance anode;Wei;Nano-Micro Lett.,2021
4. Surface pseudocapacitive mechanism of molybdenum phosphide for high‐energy and high‐power Sodium‐ion capacitors;Jiang;Adv. Energy Mater.,2019
5. A hollow multi-shelled structure for charge transport and active sites in lithium-ion capacitors;Bi;Angew. Chem. In. Ed,2020
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4. Rational design of hierarchical nanoporous yolk-shell Co9S8@ZnGa2S4 heterostructured cages as novel electrode for energy storage systems;Journal of Energy Storage;2023-11
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