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Lithium cobalt oxide - 99.0% metals basis, high purity , CAS No.12190-79-3

    Grade & Purity:
  • ≥99% metals basis
In stock
Item Number
L298927
Grouped product items
SKU Size
Availability
Price Qty
L298927-25g
25g
3
$31.90
L298927-100g
100g
2
$85.90
L298927-500g
500g
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
$299.90
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Battery materials (51) Lithium (33)

Basic Description

Synonyms Lithium cobalt(III) oxide | 12190-79-3 | Cobalt lithium dioxide | Lithium cobalt oxide | lithium;oxido(oxo)cobalt | Lithiumcobalt(III)oxide | MFCD00049786 | Lithium colbaltite | Lithium cobalt III oxide | EINECS 235-362-0 | Cobalt lithium oxide | lithium cobalt dioxide | EC 235-
Specifications & Purity ≥99% metals basis
Shipped In Normal
Product Description

Critical substance in the quest for high performance, advanced batteries.

Taxonomic Classification

Taxonomy Tree

Kingdom Inorganic compounds
Superclass Mixed metal/non-metal compounds
Class Transition metal organides
Subclass Transition metal oxides
Intermediate Tree Nodes Not available
Direct Parent Transition metal oxides
Alternative Parents Inorganic oxides  Inorganic lithium salts  
Molecular Framework Not available
Substituents Transition metal oxide - Inorganic lithium salt - Inorganic oxide - Inorganic salt
Description This compound belongs to the class of inorganic compounds known as transition metal oxides. These are inorganic compounds containing an oxygen atom of an oxidation state of -2, in which the heaviest atom bonded to the oxygen is a transition metal.
External Descriptors Not available

Names and Identifiers

Pubchem Sid 504769572
Pubchem Sid Url https://pubchem.ncbi.nlm.nih.gov/substance/504769572
IUPAC Name lithium;oxido(oxo)cobalt
INCHI InChI=1S/Co.Li.2O/q;+1;;-1
InChIKey BFZPBUKRYWOWDV-UHFFFAOYSA-N
Smiles [Li+].[O-][Co]=O
Isomeric SMILES [Li+].[O-][Co]=O
Molecular Weight 97.87
Reaxy-Rn 11734399
Reaxys-RN_link_address https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=11734399&ln=

Certificates(CoA,COO,BSE/TSE and Analysis Chart)

C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:

Find and download the COA for your product by matching the lot number on the packaging.

14 results found

Lot Number Certificate Type Date Item
D2525299 Certificate of Analysis May 07, 2025 L298927
D2525300 Certificate of Analysis May 07, 2025 L298927
D2525301 Certificate of Analysis May 07, 2025 L298927
D2525398 Certificate of Analysis May 07, 2025 L298927
J2411546 Certificate of Analysis Oct 16, 2024 L298927
J2411950 Certificate of Analysis Oct 15, 2024 L298927
H2323062 Certificate of Analysis Aug 25, 2023 L298927
C2324875 Certificate of Analysis Mar 29, 2023 L298927
C2324891 Certificate of Analysis Mar 29, 2023 L298927
C2324908 Certificate of Analysis Mar 29, 2023 L298927
C2324966 Certificate of Analysis Mar 29, 2023 L298927
C2307238 Certificate of Analysis Mar 21, 2023 L298927
H2229648 Certificate of Analysis Sep 01, 2022 L298927
H2229649 Certificate of Analysis Sep 01, 2022 L298927

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Chemical and Physical Properties

Sensitivity Hygroscopic.
Melt Point(°C) >600℃
Molecular Weight 97.900 g/mol
XLogP3
Hydrogen Bond Donor Count 0
Hydrogen Bond Acceptor Count 2
Rotatable Bond Count 0
Exact Mass 97.939 Da
Monoisotopic Mass 97.939 Da
Topological Polar Surface Area 40.100 Ų
Heavy Atom Count 4
Formal Charge 0
Complexity 13.500
Isotope Atom Count 0
Defined Atom Stereocenter Count 0
Undefined Atom Stereocenter Count 0
Defined Bond Stereocenter Count 0
Undefined Bond Stereocenter Count 0
The total count of all stereochemical bonds 0
Covalently-Bonded Unit Count 2

Citations of This Product

1. Xiaoyi Lou, Yifan Sui, Qichao Zhang, Changling Fang, Yunyu Tang, Xuan Zhang, Guangxin Yang, Yongfu Shi, Dongmei Huang, Jie Guan, Yaoguang Guo.  (2023)  Enhanced Degradation of Decabromodiphenyl Ether via Synergetic Assisted Mechanochemical Process with Lithium Cobalt Oxide and Iron.  Applied Sciences-Basel,  13  (23): (12924). 
2. N. Ji, J. Xu, Y. Wang, M. Guo, X. Xu.  (2023)  Selective protein hydrolysis catalyzed by LaCoO3 nanoparticles.  Materials Today Chemistry,  34  (101823). 
3. Suichang Ong, Huili Yang, Tu Lan, Kai Huang, Tianzheng Xie, Jinxia Zhou, Yuan Cheng, Hang Guo, Ying Zhang.  (2024)  Improved electrochemical performance of high voltage LiCoO2 with Al doping and ZrO2 coating.  International Journal of Electrochemical Science,  19  (100437). 
4. Honghu Li, Nuoya Chen, Weifeng Liu, Huazhang Feng, Jingyun Su, Dongju Fu, Xuguang Liu, Mingxia Qiu, Luyang Wang.  (2023)  A reusable deep eutectic solvent for the regeneration of Li and Co metals from spent lithium-ion batteries.  JOURNAL OF ALLOYS AND COMPOUNDS,  966  (171517). 
5. Ziyue Yang, Shujie Tang, Xiangtao Huo, Mei Zhang, Min Guo.  (2023)  A novel green deep eutectic solvent for one-step selective separation of valuable metals from spent lithium batteries: Bifunctional effect and mechanism.  ENVIRONMENTAL RESEARCH,  233  (116337). 
6. Yunchao Liao, Zhengfeng Wang, Xinyi Dai, Haijun Chen, Fuzhong Wu, Jingze Li, Yi Mai, Shuie Li.  (2022)  Enhanced 4.7 V Electrochemical Performance of the LiCoO2 Cathode via a Fluoride and LiCo1–xAlxO2 Composite Coating.  Journal of Physical Chemistry C,  126  (39): (16627–16635). 
7. Shujie Tang, Jiali Feng, Runchang Su, Mei Zhang, Min Guo.  (2022)  New Bifunctional Deep-Eutectic Solvent for In Situ Selective Extraction of Valuable Metals from Spent Lithium Batteries.  ACS Sustainable Chemistry & Engineering,  10  (26): (8423–8432). 
8. Zhengfeng Wang, Xinyi Dai, Haijun Chen, Fuzhong Wu, Yi Mai, Shuie Li, Yijing Gu, Jingze Li, Aijun Zhou.  (2022)  Simultaneously Constructing a TiO2–LiF Composite Coating Enhancing the Cycling Stability of LiCoO2 at 4.6 V High Voltage.  ACS Sustainable Chemistry & Engineering,  10  (25): (8151–8161). 
9. Rabeeh Golmohammadzadeh, Fariborz Faraji, Brian Jong, Cristina Pozo-Gonzalo, Parama Chakraborty Banerjee.  (2022)  Current challenges and future opportunities toward recycling of spent lithium-ion batteries.  RENEWABLE & SUSTAINABLE ENERGY REVIEWS,  159  (112202). 
10. Yuan Zhong, Yaqing Su, Peng Huang, Qiu Jiang, Yue Lin, Haiyang Wu, Emiel J. M. Hensen, Amr. M. Abdelkader, Kai Xi, Chao Lai, Shulei Chou.  (2022)  Polyoxometalate Ionic Sponge Enabled Dendrite‑Free and Highly Stable Lithium Metal Anode.  Small Methods,  (3): (2101613). 
11. Shujie Tang, Mei Zhang, Min Guo.  (2022)  A Novel Deep-Eutectic Solvent with Strong Coordination Ability and Low Viscosity for Efficient Extraction of Valuable Metals from Spent Lithium-Ion Batteries.  ACS Sustainable Chemistry & Engineering,  10  (2): (975–985). 
12. Qingqiang Lu, Linlin Chen, Xiaowei Li, Yanhong Chao, Jing Sun, Haiyan Ji, Wenshuai Zhu.  (2021)  Sustainable and Convenient Recovery of Valuable Metals from Spent Li-Ion Batteries by a One-Pot Extraction Process.  ACS Sustainable Chemistry & Engineering,  (41): (13851–13861). 
13. Linlin Chen, Yanhong Chao, Xiaowei Li, Guolang Zhou, Qingqiang Lu, Mingqing Hua, Hongping Li, Xiaoguang Ni, Peiwen Wu, Wenshuai Zhu.  (2021)  Engineering a tandem leaching system for the highly selective recycling of valuable metals from spent Li-ion batteries.  GREEN CHEMISTRY,  23  (5): (2177-2184). 
14. Jiefeng Xiao, Bo Niu, Zhenming Xu.  (2020)  Novel approach for metal separation from spent lithium ion batteries based on dry-phase conversion.  Journal of Cleaner Production,  277  (122718). 
15. Senhao Wang, Shuai Li, Bin Wei, Xia Lu.  (2020)  Interfacial Engineering at Cathode/LATP Interface for High-Performance Solid-State Batteries.  JOURNAL OF THE ELECTROCHEMICAL SOCIETY,  167  (10): (100528). 
16. Shubin Wang, Zuotai Zhang, Zhouguang Lu, Zhenghe Xu.  (2020)  A novel method for screening deep eutectic solvent to recycle the cathode of Li-ion batteries.  GREEN CHEMISTRY,  22  (14): (4473-4482). 
17. Yang Liu, Wei Gao, Hao Zhou, Xianliang Yi, Yongming Bao.  (2020)  Highly reactive bulk lattice oxygen exposed by simple water treatment of LiCoO2 for catalytic oxidation of airborne benzene.  Molecular Catalysis,  492  (111003). 
18. Si-Rui Zhu, Ji-Ning Yang, Yang Liu, Wei Gao, Xianliang Yi, Hao Zhou, Minghuo Wu.  (2020)  Synergetic interaction of lithium cobalt oxide with sulfite to accelerate the degradation of organic aqueous pollutants.  MATERIALS CHEMISTRY AND PHYSICS,  249  (123123). 
19. Zhijie Bi, Ning Zhao, Lina Ma, Zhengqian Fu, Fangfang Xu, Chunsheng Wang, Xiangxin Guo.  (2020)  Interface engineering on cathode side for solid garnet batteries.  CHEMICAL ENGINEERING JOURNAL,  387  (124089). 
20. Fu Lixin, Shi Liyi, Wang Zhuyi, Zhu Jiefang, Zhao Yin, Yuan Shuai.  (2019)  Nanocoating inside porous PE separator enables enhanced ionic transport of GPE and stable cycling of Li-metal anode.  RESEARCH ON CHEMICAL INTERMEDIATES,  45  (10): (4959-4973). 
21. Xiangjun Lin, Yameng Wang, Wei Chai, Ting Liu, Jirong Mou, Jiang Liu, Jianlin Huang, Meilin Liu.  (2019)  Solvothermal alcoholysis synthesis of hierarchically porous TiO2-carbon tubular composites as high-performance anodes for lithium-ion batteries.  ELECTROCHIMICA ACTA,  308  (253). 
22. Tianchi Dai, Hao Zhou, Yang Liu, Ranran Cao, Jingjing Zhan, Lifen Liu, Ben W.-L. Jang.  (2019)  Synergy of Lithium, Cobalt, and Oxygen Vacancies in Lithium Cobalt Oxide for Airborne Benzene Oxidation: A Concept of Reusing Electronic Wastes for Air Pollutant Removal.  ACS Sustainable Chemistry & Engineering,  (5): (5072–5081). 
23. JiaKai Mao, Jia Li, Zhengming Xu.  (2018)  Coupling reactions and collapsing model in the roasting process of recycling metals from LiCoO2 batteries.  Journal of Cleaner Production,  205  (923). 
24. Pengfei Lv, Yongsheng Li, Yuhan Wu, Guobiao Liu, Hao Liu, Shaomin Li, Changyu Tang, Jun Mei, Yuntao Li.  (2018)  Robust Succinonitrile-Based Gel Polymer Electrolyte for Lithium-Ion Batteries Withstanding Mechanical Folding and High Temperature.  ACS Applied Materials & Interfaces,  10  (30): (25384–25392). 
25. Guo Yaoguang, Li Yaguang, Lou Xiaoyi, Guan Jie, Li Yingshun, Mai Xianmin, Liu Hu, Zhao Cindy Xinxin, Wang Ning, Yan Chao, Gao Guilan, Yuan Hao, Dai Jue, Su Ruijng, Guo Zhanhu.  (2018)  Improved extraction of cobalt and lithium by reductive acid from spent lithium-ion batteries via mechanical activation process.  JOURNAL OF MATERIALS SCIENCE,  53  (19): (13790-13800). 
26. Jie Guan, Yaguang Li, Yaoguang Guo, Ruijing Su, Guilan Gao, Haixiang Song, Hao Yuan, Bo Liang, Zhanhu Guo.  (2017)  Mechanochemical Process Enhanced Cobalt and Lithium Recycling from Wasted Lithium-Ion Batteries.  ACS Sustainable Chemistry & Engineering,  (1): (1026–1032). 
27. Wei Ni, Dan Yang, Jianli Cheng, Xiaodong Li, Qun Guan, Bin Wang.  (2016)  Gel-type polymer separator with higher thermal stability and effective overcharge protection of 4.2 V for secondary lithium-ion batteries.  RSC Advances,  (58): (52966-52973). 
28. Huihui Xu, Jidi Cui, Chunyue Pan, Guipeng Yu, Shiyu Hong, Xipeng Wang, Zhijiang Yao.  (2014)  Conductance investigation of p-MIECs fabricated by poly(3,4-ethylenedioxy thiophene), polyacrylic acid, polyethylene oxide, and lithium-ion salt.  POLYMER COMPOSITES,  36  (11): (2076-2083). 
29. Yurun Tian, Fengyi Zhou, Zeyu Wang, Wenjun Chen, Rui Qin, Yu Chen, Tiancheng Mu.  (2024)  Deep eutectic solvent with acidity, reducibility, and coordination capability for recycling of valuable metals from spent lithium-ion battery cathodes.  SEPARATION AND PURIFICATION TECHNOLOGY,  348  (127810). 
30. Wang Xi, Hou Fali, Zhai Jinli, Yan Jiali, Gong Chao, Li Yinghao, Zhu Wenjie, Luo Yongming, Yang Daoli, Gao Xiaoya.  (2024)  Effective peroxymonosulfate activation by lithium cobaltite recovered from spent lithium-ion batteries for enhanced carbamazepine degradation in a wide pH range.  ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH,  31  (39): (51673-51686). 
31. Zihao Meng, Hao Wang, Yujie Wang, Huanhuan Zhang, Qing Xiang, Yilong Zheng, Huibo Yuan, Jintao Huang, Tianju Fan, Yonggang Min.  (2024)  Enhanced interfacial and cycle stability of 4.6 V LiCoO2 cathode achieved by surface modification of KAlF4.  JOURNAL OF ALLOYS AND COMPOUNDS,  1005  (176087). 
32. Runchang Su, Shujie Tang, Yadi Wang, Mei Zhang, Min Guo.  (2025)  Ethanol-driven bifunctional deep eutectic solvents for efficient in situ selective recovery of valuable metals from spent lithium batteries.  SEPARATION AND PURIFICATION TECHNOLOGY,  364  (132577). 
33. Zhen Zhang, Xiao-Feng Xu, Yu-Ze Sun, Zhao-Jian Li, Hong Gao, Yun-Ze Long, Hong-Di Zhang.  (2024)  Lithium-Ion Battery Separator with Dual Safety of Regulated Lithium Dendrite Growth and Thermal Closure by Assisted Assembly Technology.  ACS Applied Nano Materials,  (24): (28428-28435). 
34. Hang Lu, Siyi Kang, Yuxin Liu, Jingwei Chen, Jiaqiang E.  (2024)  Performance evaluation on recycling metals from lithium cobaltate by supercritical water combining with leaching-precipitation methods.  Journal of Environmental Chemical Engineering,  12  (114379). 
35. Pushun Lu, Yujing Wu, Dengxu Wu, Fengmei Song, Tenghuan Ma, Wenlin Yan, Xiang Zhu, Fuliang Guo, Jiaze Lu, Jian Peng, Liquan Chen, Hong Li, Fan Wu.  (2024)  Rate-limiting mechanism of all-solid-state battery unravelled by low-temperature test-analysis flow.  Energy Storage Materials,  67  (103316). 
36. Yichuan Kong, Yongzhi Duan, Yuezhi Zhang, Yulin Min, Hongxiu Lu, Penghui Shi.  (2024)  Recycling of Li and Co from spent LiCoO2 cathode materials through a low-temperature urea-assisted sulfation roasting approach.  NEW JOURNAL OF CHEMISTRY,     
37. Jinyang Li, Jiajun Wang, He Huang, Meng Gao, Xingkai Wang, Qiujiang Dong, Wanxing Zhang, Shiyu Zhang, Hao Guo, Xiaopeng Han, Wenbin Hu.  (2024)  Stabilization of LiCoO2 Cathodes in High Voltage Lithium Metal Batteries Through 2-(Trifluoromethyl)Benzamide (2-TFMBA) Electrolyte Additives.  Small,    (2400087). 

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