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Zinc/Nickel-Doped Hollow Core-Shell Co O Derived from a Metal-Organic Framework with High Capacity, Stability, and Rate Performance in Lithium/Sodium-Ion Batteries. | LitMetric

Zinc/Nickel-Doped Hollow Core-Shell Co O Derived from a Metal-Organic Framework with High Capacity, Stability, and Rate Performance in Lithium/Sodium-Ion Batteries.

Chemistry

Key Laboratory of Cluster Science, Ministry of Education of China, School of Chemistry, Beijing Institute of Technology, 5 South Zhongguancun Street, Beijing, 100081, P.R. China.

Published: February 2018

Transition-metal oxides are one of the most promising anode materials for energy storage in lithium- and sodium-ion batteries (LIBs and NIBs, respectively). To improve the electrochemical performance of metal oxides (e.g., Co O ), such as capacity and cyclability, a convenient strategy (with a metal-organic framework as a template) is introduced to generate Zn- or Ni-doped Co O . The obtained hollow core-shell nanosized Co O (denoted as Zn/Ni-Co-Oxide) derived from pyrolyzing zinc or nickel co-doped ZIF-67 (Co(mIm) ; mIm=methylimidazole) shows a drastically enhanced capacity of 1300 mAh g at a high current density of 5000 mA g , compared with that of pristine cobalt oxide (800 mAh g ) in LIBs. A zinc-doped Zn-Co-Oxide demonstrates a stable capacity of 1600 mAh g at 1000 mA g for 700 cycles and an excellent performance in full coin cells (cycled with LiNi Co Mn O ). Moreover, NIB tests show a stable capacity of 300 mAh g for more than 250 cycles.

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Source
http://dx.doi.org/10.1002/chem.201704416DOI Listing

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