Hexaamminecobalt Chloride - ≥99%(T) , CAS No.10534-89-1

CAS: 10534-89-1 Cat. No.: H157071 Molecular Weight: 267.47 EC Number: 234-103-9
AVAILABLE TO ORDER
GRADE & PURITY ≥99%(T)
Synonyms
MFCD00036304 | COBALT HEXAAMMINE TRICHLORIDE | AKOS015916226 | Luteo-cobaltic Chloride | H11971 | Hexaaminecobalt(III) chloride | H0051 | Cobalt(III) hexamine chloride | Hexaamminecobalt(III) chloride | Hexaamminecobalt(III)chloride | Cobalt hexammine tri
Storage
Room temperature
Shipped In
Normal
 ·  off list, applied to all prices below.
Size
Status
Price
Qty
1g
H157071-1g
5

$9.90

$14.90
Save $5.00 (33.56%)
5g
H157071-5g
≥10

$19.90

$29.90
Save $10.00 (33.44%)
25g
H157071-25g
6

$69.90

$104.90
Save $35.00 (33.37%)
100g
H157071-100g
≥10

$199.90

$299.90
Save $100.00 (33.34%)
500g
H157071-500g
2

$699.90

$1,049.90
Save $350.00 (33.34%)
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Why this grade

≥99%(T) for sensitive chromatographic and analytical workflows requiring minimal baseline interference.

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Storage & shipping

Room temperature Ships Normal Check lot-specific COA for exact specifications.

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Quality documents

SDS, COA, datasheet, and spec sheet available for download. Lot-specific COA accessible via lot number lookup.

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Literature proof

Cited in 18 peer-reviewed publications across chromatography, organic synthesis, and cross-coupling reactions.

Overview

Hexaamminecobalt(III) chloride can be used as a starting material to prepare various Co-based nanomaterials such as Co-Sb nanoalloys, Co nanocapsules, bimetallic nanoparticles, and Co-polymer nanocomposites. These materials are applied in the field of catalysis, dielectrics, and renewable energy conversion devices.

Application:
Rhenium (VII) compounds as inorganic precursors for the synthesis of organic reaction catalysts: Investigates the potential of Hexaamminecobalt(III) chloride as a replacement for commercial products in catalyzing organic reactions, highlighting its role in synthetic chemistry.
In situ formation of a molecular cobalt (iii)/AgCl photocatalyst for visible-light water oxidation: Discusses the synthesis and application of Hexaamminecobalt(III) chloride in forming a novel photocatalyst for water oxidation, a critical process in solar energy utilization.

Specifications

Synonyms
MFCD00036304 | COBALT HEXAAMMINE TRICHLORIDE | AKOS015916226 | Luteo-cobaltic Chloride | H11971 | Hexaaminecobalt(III) chloride | H0051 | Cobalt(III) hexamine chloride | Hexaamminecobalt(III) chloride | Hexaamminecobalt(III)chloride | Cobalt hexammine tri
Specifications & Purity
≥99%(T)
Storage
Room temperature
Shipped In
Normal
Purity
≥99%(T)
Names and Identifiers
Pubchem Sid488188286
Pubchem Sid Urlhttps://pubchem.ncbi.nlm.nih.gov/substance/488188286
Canonical SmilesN.N.N.N.N.N.[Cl-].[Cl-].[Cl-].[Co+3]
IUPAC Nameazane;cobalt(3+);trichloride
InChIKeyJXBGZYGSWFSYFI-UHFFFAOYSA-K
INCHI1S/3ClH.Co.6H3N/h3*1H;;6*1H3/q;;;+3;;;;;;/p-3
Isomeric SMILES N.N.N.N.N.N.[Cl-].[Cl-].[Cl-].[Co+3]
Molecular Weight 267.47
Reaxy-Rn 22225911
Reaxys-RN_link_address https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=22225911&ln=

Documentation

📋 Safety Data Sheet (SDS)

Comprehensive hazard, handling, storage, and regulatory compliance document.

Download SDS →

✅ Certificate of Analysis (COA)

Lot-specific quality data. Enter your lot number to retrieve the exact COA.

Look up COA →

📊 Datasheet

Quick-reference summary of product specifications and applications.

View datasheet →

🔬 Specification Sheet

Full quality attributes and acceptance criteria for this grade.

View spec sheet →

Advanced Data

Taxonomic Classification

Taxonomy Tree

KingdomInorganic compounds
SuperclassMixed metal/non-metal compounds
ClassTransition metal salts
SubclassTransition metal chlorides
Intermediate Tree Nodes Not available
Direct ParentTransition metal chlorides
Alternative Parents Inorganic cobalt salts  Inorganic chloride salts  
Molecular FrameworkNot available
Substituents Transition metal chloride - Inorganic chloride salt - Inorganic cobalt salt - Inorganic salt
DescriptionThis compound belongs to the class of inorganic compounds known as transition metal chlorides. These are inorganic compounds in which the largest halogen atom is Chlorine, and the heaviest metal atom is a transition metal.
External Descriptors cobalt coordination entity
3D Structure
Interactive Chemical Structure Model





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.

64 results found

Lot NumberCertificate TypeDateItem
E2627443Certificate of AnalysisMar 24, 2026 H157071
E2627439Certificate of AnalysisMar 24, 2026 H157071
E2627441Certificate of AnalysisMar 24, 2026 H157071
E2627447Certificate of AnalysisMar 24, 2026 H157071
E2627460Certificate of AnalysisMar 24, 2026 H157071
D2613333Certificate of AnalysisMar 16, 2026 H157071
D2613332Certificate of AnalysisMar 16, 2026 H157071
D2613331Certificate of AnalysisMar 16, 2026 H157071
D2613335Certificate of AnalysisMar 16, 2026 H157071
C2610133Certificate of AnalysisJan 15, 2025 H157071
E2513249Certificate of AnalysisJan 15, 2025 H157071
E2513250Certificate of AnalysisJan 15, 2025 H157071
J2527155Certificate of AnalysisJan 15, 2025 H157071
E2513251Certificate of AnalysisJan 15, 2025 H157071
E2513252Certificate of AnalysisJan 15, 2025 H157071
C2525509Certificate of AnalysisJan 06, 2025 H157071
C2525531Certificate of AnalysisJan 06, 2025 H157071
C2525553Certificate of AnalysisJan 06, 2025 H157071
C2525554Certificate of AnalysisJan 06, 2025 H157071
K2429676Certificate of AnalysisNov 16, 2024 H157071
K2429675Certificate of AnalysisNov 16, 2024 H157071
K2429677Certificate of AnalysisNov 16, 2024 H157071
K2429678Certificate of AnalysisNov 16, 2024 H157071
I2412368Certificate of AnalysisSep 03, 2024 H157071
I2412369Certificate of AnalysisSep 03, 2024 H157071
I2412370Certificate of AnalysisSep 03, 2024 H157071
G2403396Certificate of AnalysisApr 03, 2024 H157071
G2403395Certificate of AnalysisApr 03, 2024 H157071
D2412430Certificate of AnalysisApr 02, 2024 H157071
D2412438Certificate of AnalysisApr 02, 2024 H157071
D2412436Certificate of AnalysisApr 02, 2024 H157071
D2412434Certificate of AnalysisApr 02, 2024 H157071
D2412432Certificate of AnalysisApr 02, 2024 H157071
B2419866Certificate of AnalysisFeb 01, 2024 H157071
B2419263Certificate of AnalysisFeb 01, 2024 H157071
L2307623Certificate of AnalysisNov 27, 2023 H157071
L2307620Certificate of AnalysisNov 27, 2023 H157071
L2307621Certificate of AnalysisNov 27, 2023 H157071
L2307622Certificate of AnalysisNov 27, 2023 H157071
A2410062Certificate of AnalysisNov 27, 2023 H157071
D23191064Certificate of AnalysisApr 10, 2023 H157071
D23191144Certificate of AnalysisApr 10, 2023 H157071
D23191151Certificate of AnalysisApr 10, 2023 H157071
D23191152Certificate of AnalysisApr 10, 2023 H157071
K2316051Certificate of AnalysisApr 10, 2023 H157071
D23191153Certificate of AnalysisApr 10, 2023 H157071
D2319687Certificate of AnalysisApr 10, 2023 H157071
D2319690Certificate of AnalysisApr 10, 2023 H157071
D2319701Certificate of AnalysisApr 10, 2023 H157071
D23191050Certificate of AnalysisApr 10, 2023 H157071
B2307187Certificate of AnalysisFeb 14, 2023 H157071
K2222676Certificate of AnalysisNov 02, 2022 H157071
K2222677Certificate of AnalysisNov 02, 2022 H157071
K2222747Certificate of AnalysisNov 02, 2022 H157071
K2222754Certificate of AnalysisNov 02, 2022 H157071
K2222757Certificate of AnalysisNov 02, 2022 H157071
D23142462Certificate of AnalysisNov 02, 2022 H157071
B2307064Certificate of AnalysisJun 14, 2022 H157071
G2201319Certificate of AnalysisJun 14, 2022 H157071
G2201279Certificate of AnalysisJun 14, 2022 H157071
G2201318Certificate of AnalysisJun 14, 2022 H157071
G2201321Certificate of AnalysisJun 14, 2022 H157071
G2201320Certificate of AnalysisJun 14, 2022 H157071
K2210237Certificate of AnalysisAug 23, 2021 H157071

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Chemical and Physical Properties
SolubilitySoluble in ammonia and water, insoluble in ethanol
Melt Point(°C)217 °C
Molecular Weight267.470 g/mol
XLogP3
Hydrogen Bond Donor Count6
Hydrogen Bond Acceptor Count9
Rotatable Bond Count0
Exact Mass265.999 Da
Monoisotopic Mass265.999 Da
Topological Polar Surface Area6.000 Ų
Heavy Atom Count10
Formal Charge0
Complexity0.000
Isotope Atom Count0
Defined Atom Stereocenter Count0
Undefined Atom Stereocenter Count0
Defined Bond Stereocenter Count0
Undefined Bond Stereocenter Count0
The total count of all stereochemical bonds0
Covalently-Bonded Unit Count10
Documents & Articles
Citations of This Product
References
1. Zhihong Wang, Ruiqing Long, Mijun Peng, Te Li, Shuyun Shi.  (2019)  Molecularly Imprinted Polymers-Coated CdTe Quantum Dots for Highly Sensitive and Selective Fluorescent Determination of Ferulic Acid.  Journal of Analytical Methods in Chemistry,      [PMID:31360577] [10.1155/2019/1505878]
2. X. Jia, Y.H. Zhao, T. Liu, Y.H. He.  (2017)  Leaf defense system of Robinia pseudoacacia L. seedlings exposed to 3 years of elevated atmospheric CO2 and Cd-contaminated soils.  SCIENCE OF THE TOTAL ENVIRONMENT,      [PMID:28654808] [10.1016/j.scitotenv.2017.06.172]
3. Xia Jia, Yonghua Zhao, Tuo Liu, Shuping Huang, Yafei Chang.  (2016)  Elevated CO2 increases glomalin-related soil protein (GRSP) in the rhizosphere of Robinia pseudoacacia L. seedlings in Pb- and Cd-contaminated soils.  ENVIRONMENTAL POLLUTION,      [PMID:27423497] [10.1016/j.envpol.2016.07.010]
4. Y.H. Zhao, X. Jia, W.K. Wang, T. Liu, S.P. Huang, M.Y. Yang.  (2016)  Growth under elevated air temperature alters secondary metabolites in Robinia pseudoacacia L. seedlings in Cd- and Pb-contaminated soils.  SCIENCE OF THE TOTAL ENVIRONMENT,      [PMID:27203519] [10.1016/j.scitotenv.2016.05.058]
5. Hu Anqi, Chen Guoqing, Li Lei, Ma Chaoqun, Yang Taiqun, Gao Hui, Gu Jiao, Zhu Chun, Wu Yamin.  (2024)  Dual-mode colorimetric and fluorescent detection of cobalt ions based on N, B co-doped carbon quantum dots and p-phenylenediamine derived nanoparticles.  MICROCHIMICA ACTA,  191  (5): (1-13).  [PMID:38568427] [10.1007/s00604-024-06310-7]
6. Jinhua Yuan, E. Shengzhe, Xinnan Zhao.  (2025)  Improved determination efficiency of the cation exchange capacity and exchangeable base cations in soil using stirring and extraction modifications.  SOIL & TILLAGE RESEARCH,      [PMID:] [10.1016/j.still.2024.106429]
7. Runkun Zhang, Yanhui Zhong, Yufei Hu, Yi Chen, Ling Xia, Gongke Li.  (2024)  Liquid-Phase Cyclic Chemiluminescence for the Identification of Cobalt Speciation.  ANALYTICAL CHEMISTRY,      [PMID:38359085] [10.1021/acs.analchem.3c05864]
8. Yanhao Zhang, Wenlu Zhou, Chengying Liu, Guanghui Liu, Yi Li, Botao Ding, Peng Zhang, Xu Zhang, Zhibin Zhang.  (2024)  Remediation of Pb and Cd contaminated sediments by wheat straw biochar and microbial community analysis.  Environmental Technology & Innovation,      [PMID:] [10.1016/j.eti.2024.103849]
9. Mengqiao Wu, Yang Cheng, Chang Dong, Xu Zhao, Zhenyu Wang, Hai Xiang, Yanjiang Cai, Yongfu Li, Hailu Fu, Bing Yu.  (2025)  Slow-release urea fertilizer with polymer and biochar-based organic coatings: Design, field trials and global economic implications.  INDUSTRIAL CROPS AND PRODUCTS,      [PMID:] [10.1016/j.indcrop.2025.121738]
10. Ruize Jia, Ronghao Man, Liannan Shang.  (2025)  Chitosan-grafted polymerized Fe-pillared bentonite: efficient removal of Cd and As from wastewater.  ENVIRONMENTAL RESEARCH,      [PMID:40946894] [10.1016/j.envres.2025.122852]
11. Jun Li, Dexin Shan, Zongyu Gao, Xinyue Zhang, Yufu Xie, Meiying Huang, Taiping Xie.  (2025)  Adsorptive characteristics and mechanisms of cadmium in water onto magnesium- and ultrasound-modified rice straw biochars.  JOURNAL OF THE INDIAN CHEMICAL SOCIETY,      [PMID:] [10.1016/j.jics.2025.102114]
12. Taihang Zhou, Fen Qiao, Sen Qian, Shoaib Muhammad, Haitao Li, Yanzhen Liu.  (2024)  CdTe QDs@SiO2 composite material for efficient photocatalytic degradation of tetracycline composites.  Green Chemical Engineering,      [PMID:] [10.1016/j.gce.2024.01.004]
13. Qianying Zhou, Xi Wang, Yongkuan Li, Mingyu Ma, Juan Wu, Dengxin Li, Shihong Xu, Wenjing Sang.  (2025)  A study on the removal of pollutants from soil contaminated with high concentrations of heavy metals.  Environmental Progress & Sustainable Energy,      [PMID:] [10.1002/ep.14629]
14. Lang Xing, Guanghui Li, Jun Luo, Hao Jiang.  (2025)  From waste to wealth: Separation of alumina from coal fly ash and synergistic preparation of soil amendments.  JOURNAL OF ENVIRONMENTAL MANAGEMENT,      [PMID:40347870] [10.1016/j.jenvman.2025.125675]
15. Yang Cheng, Chang Dong, Xu Zhao, Qinglong Chen, Yan Zhang, Yongfu Li, Bing Yu.  (2025)  Sustainable wheat production via starch-encapsulated alkali-modified biochar-urea: Synergistic gains in yield, economics, and GHG mitigation.  CHEMICAL ENGINEERING JOURNAL,      [PMID:] [10.1016/j.cej.2025.169045]
16. Wenming Yang, Xiangpeng Shi, Xiaoqiang Chen, Yuanzheng Cai, Yi Ji, Yunfei Cao, Wanzhen Xu.  (2025)  Multicolor Thioglycolic Acid-Modified CdTe Quantum Dot-Based Molecularly Imprinted Polymers for Highly Sensitive and Selective Detection of Sulfadiazine.  POLYMERS FOR ADVANCED TECHNOLOGIES,  36  (11): (e70403).  [PMID:] [10.1002/pat.70403]
17. Xinyue Zhang, Dexin Shan, Yufu Xie, Jun Li, Jingyuan Ning, Guangli Yi, Huimin Chen, Tingfen Xiang.  (2025)  Preparation of Alkali–Fe-Modified Biochar from Agricultural Waste for Remediation of Cadmium-Contaminated Soil and Water.  Sustainability,  18  (1): (373).  [PMID:] [10.3390/su18010373]
18. Shumian Jiang, Aosheng Bai, Qinglong Chen, Xu Zhao, Chang Dong, Yan Zhang, Zhen Qiu, Cheng Fu, Yongfu Li, Yanjiang Cai, Bing Yu.  (2026)  A biochar-based coated urea for enhanced nitrogen utilization in wheat farming: Field performance, soil microbial response and life cycle assessment.  INDUSTRIAL CROPS AND PRODUCTS,      [PMID:] [10.1016/j.indcrop.2026.123143]
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