articleTop 1% cited
Manipulating the ion-transfer kinetics and interface stability for high-performance zinc metal anodes
Energy & Environmental Science · 2019 · Vol. 13(2) · pp. 503–510
Xuesong Xie(Central South University)Shuquan Liang(Central South University)Jiawei Gao(Central South University)Shan Guo(Central South University)Jiabao Guo(Central South University)Chao Wang(Massachusetts Institute of Technology)Guiyin Xu(Massachusetts Institute of Technology)Xianwen Wu(Jishou University)Gen Chen(Central South University)Jiang Zhou✉(Central South University)
Abstract
We report a new class of Zn anodes modified by a three-dimensional nanoporous ZnO architecture (Zn@ZnO-3D), which can accelerate the kinetics of Zn<sup>2+</sup> transfer and deposition, inhibit dendrite growth, and reduce the side-reactions.
Advanced battery technologies researchAdvanced Battery Materials and TechnologiesPerovskite Materials and ApplicationsNanoporousKineticsZincAnodeMaterials scienceMetalDendrite (mathematics)Deposition (geology)Chemical engineeringChemistry
Funding
- National Natural Science Foundation of China
- Central South University
Citations
1,243
FWCI
65.04
field-weighted impact
References
52
Percentile
100%
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Citations per year
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References
Recent Progress of the Solid‐State Electrolytes for High‐Energy Metal‐Based Batteries
Advanced Energy Materials · 2018 · 1,134 citations
Highly reversible zinc metal anode for aqueous batteries
Nature Materials · 2018 · 3,152 citations
“Water-in-deep eutectic solvent” electrolytes enable zinc metal anodes for rechargeable aqueous batteries
Nano Energy · 2018 · 648 citations
Diethyl ether as self-healing electrolyte additive enabled long-life rechargeable aqueous zinc ion batteries
Nano Energy · 2019 · 619 citations
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