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Embedding Cobalt Into ZIF-67 to Obtain Cobalt-Nanoporous Carbon Composites as Electrode Materials for Lithium ion Battery
Guoxu Zheng, Jinghua Yin, Ziqiang Guo, Shiyi Tian, Xu Yang
J. Electrochem. Sci. Technol. 2021;12(4):458-464.   Published online July 8, 2021

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Embedding Cobalt Into ZIF-67 to Obtain Cobalt-Nanoporous Carbon Composites as Electrode Materials for Lithium ion Battery
Journal of Electrochemical Science and Technology. 2021;12(4):458-464   Crossref logo
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Development of ZIF-Derived Nanoporous Carbon and Cobalt Sulfide-Based Electrode Material for Supercapacitor
Materials. 2019;12(18):2940   Crossref logo

Title III Lithium-Ion Battery Project – Lithium Cobalt Oxide, Lithium Nickel Cobalt Aluminum Oxide & Meso Carbon Micro Beads Domestic Manufacturing Development
ECS Meeting Abstracts. 2014;MA2014-01(2):212-212   Crossref logo
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ZIF-67-derived cobalt-based sulfate CoSO4/carbon nanotube nanocomposites as host material for high-performance lithium–sulfur battery cathode
Ionics. 2021;28(2):635-645   Crossref logo
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Encyclopedia of Electrochemical Power Sources. 2009;258-263   Crossref logo
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Carbon combustion synthesis of lithium cobalt oxide as cathode material for lithium ion battery
Particuology. 2008;6(2):81-84   Crossref logo
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Novel approach to recover cobalt and lithium from spent lithium-ion battery using oxalic acid
Journal of Hazardous Materials. 2015;295:112-118   Crossref logo
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Surface fluorination and oxidation of carbon materials for negative electrode of lithium ion secondary battery
Carbon. 1997;35(3):439   Crossref logo
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Thin-film electrode based on zeolitic imidazolate frameworks (ZIF-8 and ZIF-67) with ultra-stable performance as a lithium-ion battery anode
Journal of Materials Science. 2016;52(7):3979-3991   Crossref logo
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Selective Sulfidation and Electrowinning of Nickel and Cobalt for Lithium Ion Battery Recycling
Ni-Co 2021: The 5th International Symposium on Nickel and Cobalt. 2021;99-110   Crossref logo