Online Database of Chemicals from Around the World

Cupric acetate monohydrate
[CAS# 6046-93-1]

List of Suppliers
Simagchem Corporation China Inquire  
+86 13806087780
sale@simagchem.com
Chemical manufacturer since 2002
chemBlink standard supplier since 2008
Discovery Fine Chemicals Ltd. UK Inquire  
+44 (1202) 874-517
pjc@discofinechem.com
Chemical manufacturer
chemBlink standard supplier since 2009
Nile Chemicals India Inquire  
+91 (22) 6631-3162
sales@nilechemicals.com
Chemical manufacturer
chemBlink standard supplier since 2009
Shanghai Luyuan Fine Chemical Factory China Inquire  
+86 (21) 6998-8805
6998-8373
5952-2390
huatingchem@gmail.com
Chemical manufacturer
chemBlink standard supplier since 2009
Tianjin Zhongxin Chem-tech Co., Ltd. China Inquire  
+86 (22) 6688-0623
sales@tjzxchem.com
Chemical manufacturer since 2007
chemBlink standard supplier since 2009
Hefei TNJ Chemical Industry Co., Ltd. China Inquire  
+86 (551) 6541-8684
sales@tnjchem.com
Chemical manufacturer since 2001
chemBlink standard supplier since 2010
BOC Sciences USA Inquire  
+1 (631) 485-4226
info@bocsci.com
Chemical manufacturer
chemBlink standard supplier since 2010
Hangzhou Leap Chem Co., Ltd. China Inquire  
+86 (571) 8771-1850
market19@leapchem.com
QQ chat
Chemical manufacturer since 2006
chemBlink standard supplier since 2015
Complete supplier list of Cupric acetate monohydrate
Identification
Classification Organic raw materials >> Organometallic salt
Name Cupric acetate monohydrate
Synonyms Acetic acid copper salt monohydrate; Copper(II) acetate monohydrate
Molecular Structure CAS # 6046-93-1, Cupric acetate monohydrate, Acetic acid copper salt monohydrate, Copper(II) acetate monohydrate
Molecular Formula Cu(C2H3O2)2.H2O
Molecular Weight 199.65
CAS Registry Number 6046-93-1
EC Number 611-978-9
SMILES CC(=O)[O-].CC(=O)[O-].O.[Cu+2]
Properties
Density 1.882
Melting point 115 ºC (dec.)
Boiling point 240 ºC
Water solubility 72 g/L (20 ºC)
Safety Data
Hazard Symbols symbol symbol symbol   GHS05;GHS07;GHS09 Danger    Details
Hazard Statements H302-H314-H315-H318-H319-H335-H400-H410-H411    Details
Precautionary Statements P260-P261-P264-P264+P265-P270-P271-P273-P280-P301+P317-P301+P330+P331-P302+P352-P302+P361+P354-P304+P340-P305+P351+P338-P305+P354+P338-P316-P317-P319-P321-P330-P332+P317-P337+P317-P362+P364-P363-P391-P403+P233-P405-P501    Details
Hazard Classification
up    Details
HazardClassCategory CodeHazard Statement
Acute toxicityAcute Tox.4H302
Acute hazardous to the aquatic environmentAquatic Acute1H400
Skin corrosionSkin Corr.1BH314
Serious eye damageEye Dam.1H318
Chronic hazardous to the aquatic environmentAquatic Chronic2H411
Chronic hazardous to the aquatic environmentAquatic Chronic1H410
Skin irritationSkin Irrit.2H315
Eye irritationEye Irrit.2H319
Specific target organ toxicity - single exposureSTOT SE3H335
Acute toxicityAcute Tox.4H312
Skin corrosionSkin Corr.1AH314
Transport Information UN 9106;UN 3077
SDS Available
up Discovory and Applicatios
Cupric acetate monohydrate, with the chemical formula Cu(C2H3O2)2·H2O, is a blue crystalline compound that plays a vital role in various chemical processes and applications. This compound is a hydrate of cupric acetate, consisting of copper ions combined with acetate anions and water molecules. Its discovery dates back to the early exploration of copper compounds, with documented uses in both the arts and sciences as far back as the 18th century. The compound's unique properties and versatility have led to its widespread application across several industries.

One of the primary applications of cupric acetate monohydrate is in organic synthesis. It serves as a key reagent in various chemical reactions, particularly in the preparation of cupric salts and as a catalyst in coupling reactions. For instance, it is commonly utilized in the synthesis of aryl acetates through reactions with phenolic compounds. The ability of cupric acetate to facilitate the formation of carbon-carbon bonds has made it an essential tool in synthetic organic chemistry.

In addition to its role in organic synthesis, cupric acetate monohydrate is significant in the field of electrochemistry. It has been employed as an electrolyte in electroplating processes, where it aids in the deposition of copper onto various substrates. The use of cupric acetate in this capacity is particularly advantageous due to its ability to maintain a stable solution, which is crucial for achieving uniform plating results. This property has made it a valuable component in the manufacturing of electronic components and decorative finishes.

Cupric acetate monohydrate also finds applications in the textile industry, where it is used as a mordant in dyeing processes. Its ability to form stable complexes with dye molecules enhances the colorfastness and vibrancy of textiles. This characteristic has made it an essential agent in producing high-quality dyed fabrics. Moreover, the compound has been explored for its potential use in catalyzing oxidative processes in the dyeing industry.

In recent years, cupric acetate monohydrate has gained attention in the field of materials science. Researchers have investigated its potential use in the synthesis of nanomaterials and nanoparticles, exploiting its properties to create novel materials with unique functionalities. The incorporation of cupric acetate in these processes has opened new avenues for developing advanced materials with applications in electronics, catalysis, and environmental remediation.

Despite its beneficial applications, safety considerations are essential when handling cupric acetate monohydrate. The compound can pose health risks if ingested or inhaled, necessitating the implementation of appropriate safety measures during its use in industrial and laboratory settings. Ensuring proper ventilation, protective equipment, and adherence to safety guidelines is crucial for mitigating potential hazards.

In summary, cupric acetate monohydrate is a versatile compound with significant implications in organic synthesis, electrochemistry, textiles, and materials science. Its discovery and subsequent applications have underscored the importance of copper compounds in various industrial processes, highlighting their role in advancing both scientific research and practical applications.

References

2018. The Chemical and Products Database, a resource for exposure-relevant data on chemicals in consumer products. Scientific Data, 5.
DOI: 10.1038/sdata.2018.125

1985. Acute oral toxicity and repellency of 933 chemicals to house and deer mice. Archives of Environmental Contamination and Toxicology, 14(1).
URL: https://www.aphis.usda.gov/ws/nwrc/chem-effects-db/S_schafer851.pdf

1982. Journal of Animal Science. Journal of Animal Science, 55(337).
URL: https://pubmed.ncbi.nlm.nih.gov/7142050
Market Analysis Reports
List of Reports Available for Cupric acetate monohydrate
Related Products
Cumyl peroxypivalate  4-Cumylphenhyl chloroformate  4-Cumylphenol  2-alpha-Cumyl-4-tert-octylphenol  Cumyluron  Cuniloside B  (+)-Cuparene  Cupferron  Cupressuflavone  Cupric acetate  Cupric acetylacetonate  Cupric bromide  Cupric carbonate basic  Cupric chloride  Cupric chloride dihydrate  Cupric citrate  Cupric cyanide  Cupric fluoride  Cupric glycinate hydrate  Cupric hydroxide