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COPPER OLEATE

 

Copper oleate is used as an emulsifier and dispersing agent.
Copper oleate is used as an antioxidant in lubricating oils.
Copper oleate is used as a combustion-improver in fuel oils.


CAS Number: 1120-44-1
EC Number: 214-307-4
MDL Number: MFCD00064999
Molecular Formula: C36H66CuO4
Molecular Weight: 626.5 g/mol

SYNONYMS:
Copper oleate, 1120-44-1, Cupric oleate, Oleic acid, copper II salt, Caswell No. 248, Copper cis-9-octadecenoate, UNII-KT1O45G674, AI3-00905, Copper oleate Cu(O2C18H33)2, KT1O45G674, EINECS 214-307-4, cis-9-Octadecenoic acid, copper salt, EPA Pesticide Chemical Code 023304, NSC 112237, CUPRIC OLEATE [MI], COPPER OLEATE [MART.], Oleic acid, copper(2+) salt, COPPER OLEATE [WHO-DD], (9Z)-9-Octadecenoic acid copper(2+) salt (2:1), 9-Octadecenoic acid (9Z)-, copper(2+) salt (2:1), NSC-112237, 9-Octadecenoic acid (Z)-, copper(2+) salt, COPPER OLEATE (MART.), 10402-16-1, EINECS 233-866-5, 9-Octadecenoic acid (Z)-, copper salt, Oleic acid, copper(2+) salt (8CI), 9-Octadecenoic acid (Z)-, copper(2+) salt (9CI), 214-307-4, Copper(II) oleate, Copper dioleate, Copper(2+) oleate, Copper(ii)oleate, copper;(Z)-octadec-9-enoate, 9-Octadecenoic acid (9Z)-, copper salt, 9-Octadecenoic acid (9Z)-, copper(2+) salt, SCHEMBL50880, DTXSID7061516, MFCD00064999, PD057423, NS00081320, Q18211805, CUPRIC OLEATE, COPPERCIS-9-OCTADECENOATE, Oelsaeure,Kupfer(II)-oleat, oleic acid,copper (II)-oleate, COPPER(II) OLEATE, Kupferoleat, COPPER OLEATE, copper(2+) oleate, copper(2++)salt, copperdioleate, Copper oleate cu(o2C18H33)2, EINECS 214-307-4, Oleic acid,copper ii salt, (9Z)-9-octadecenoic acid copper(2+) salt (2:1), Cuprex, 9-Octadecenoicacid(Z)-,copper(2+)salt, copper(2++)salt, copperdioleate, COPPER(II) OLEATE, COPPER OLEATE, CUPRIC OLEATE, (Z)-9-Octadecenoicacidcopper(II)salt, Cupricoleate=Copper(II)oleate, Cuprex, Nsc112237, CUPRIC OLEATE, COPPER OLEATE, copperdioleate, copper(2++)salt, COPPER(II) OLEATE, Oleic acid copper, copper oleate(1120-44-1), COPPERCIS-9-OCTADECENOATE, 9-Octadecenoic acid (9Z)-,copper(2+) salt (2:1), Oleic acid,copper(2+) salt, 9-Octadecenoic acid (Z)-,copper(2+) salt, 9-Octadecenoic acid (9Z)-,copper(2+) salt, Copper cis-9-octadecenoate, Cupric oleate, Copper(II) oleate, Copper(2+) oleate, Copper dioleate, 939386-32-0, coppersalt, CUPRIC OLEATE, COPPER OLEATE, COPPER(II) OLEATE, oleicacid,coppersalt, Copper(1+) (9Z)-octadec-9-enoate, 9-Octadecenoicacid(Z)-,coppersalt, 9-Octadecenoic acid (9Z)-, copper salt, (Z)-9-Octadecenoic acid/copper,(1:x) salt, Octadecenoicacid(Z)-,copper(2+)salt, copper(2++)salt, copperdioleate, COPPER(II) OLEATE, COPPER OLEATE, CUPRIC OLEATE, (Z)-9-Octadecenoicacidcopper(II)salt, Cupricoleate=Copper(II)oleate,

Copper Oleate is a chemical compound that consists of copper (Cu) and oleic acid, which is a type of fatty acid.
Copper oleate is an organometallic compound and is sometimes referred to as copper (II) oleate or cupric oleate.
Copper oleate is usually a dark green or brownish solid at room temperature.


Copper oleate is sparingly soluble in water but more soluble in organic solvents such as ethanol and chloroform.
Copper oleate is a copper-based compound formed through the reaction of copper ions with oleic acid.
Copper oleate is characterized by its blue-green solid appearance.


Copper oleate's chemical formula is C₁₈H₃₄CuO₂.
Copper oleate has a molecular weight of approximately 346.01 g/mol.
Copper oleate is notable for its stability and ability to form complexes with various molecules.


Copper oleate is valuable in numerous applications, including catalysis, antimicrobial agents, and material science.
Copper oleate, chemically denoted as Cu(C₁₈H₃₃O₂)₂, is a metal soap comprising a Cu²⁺ ion coordinated with two oleate anions derived from oleic acid, a monounsaturated omega-9 fatty acid.


Copper oleate appears as a yellow-to-brown powder, soluble in organic solvents but insoluble in water, and exhibits strong chelating properties.
Copper oleate is a blue to green solid that is formed by reacting the acid with CuO or basic carbonate of Cu.
Copper oleate possesses unique chemical properties, such as coalescing mercury drops and improving oil combustion by reducing smoke and fumes.

USES and APPLICATIONS of COPPER OLEATE:
Copper oleate is used as an emulsifying and dispersing agent for managing mildew and as an enhancer of combustion in fuel oils.
Copper oleate is used in Synthesis, Pharmaceuticals and antifouling marine paints.
Copper oleate is used in antifouling compositions; as emulsifier and dispersing agent; as antioxidant in lubricating oils; as combustion-improver in fuel oils; as stabilizer for amide polymers; as catalyst.


Copper oleate is used in antifouling compositions.
Copper oleate is used as an emulsifier and dispersing agent.
Copper oleate is used as an antioxidant in lubricating oils.


Copper oleate is used as a combustion-improver in fuel oils.
Copper oleate is used as a stabilizer for amide polymers.
Copper oleate is used as a catalyst.


Copper oleate has a wide range of applications in scientific research.
Chemistry: Copper oleate is used as a precursor for the synthesis of copper nanoparticles, which have applications in catalysis, electronic devices, and sensors.


Biology: Copper nanoparticles synthesized from this compound have shown antimicrobial properties, making them useful in biomedical applications such as wound dressings and coatings for medical devices.
Medicine: Copper oleate is used in the development of drug delivery systems, where it is incorporated into liposomes for targeted delivery of therapeutic agents.


Industry: Copper oleate is used as an emulsifier and dispersant in the control of mildew and as a combustion improver in fuel oils.
Lubricants: Copper oleate enhances anti-wear and anti-corrosion performance under extreme conditions.
Pharmaceuticals: Copper oleate serves as an emulsifier, topical drug ingredient (e.g., for acne and fungal infections), and copper source in supplements.


Nanomaterial Synthesis: Copper oleate acts as a precursor for copper sulfide and CuInS₂ quantum dots (QDs).
Catalysis: Copper oleate improves heavy oil upgrading by reducing activation energy in oxidation reactions.
Copper oleate is utilized in various industrial applications.


Antifouling Paints: Copper oleate is used in marine coatings to prevent biofouling on ships and underwater structures.
Textile Industry: Copper oleate acts as a fungicide and preservative for fabrics and cordage.
Lubricant Additive: Copper oleate functions as an antioxidant in lubricating oils.


Fuel Additive: Copper oleate serves as a combustion improver in fuel oils.
Catalysis: Copper oleate is employed as a catalyst in certain chemical reactions.
Emulsifier and Dispersant: Copper oleate is used in formulations requiring stable emulsions.


-Other Potential Applications
Copper oleate is also being explored for a variety of other potential applications, including:

*Lubricant:
Due to its lubricating properties, copper oleate may be useful as a lubricant in various industrial applications.

*Fungicide:
Copper oleate has been shown to exhibit antifungal activity, suggesting its potential use as a fungicide in agriculture.

*Imaging:
Research suggests that copper oleate nanoparticles can be used for photoacoustic imaging, a technique used to visualize biological tissues.

SCIENTIFIC RESEARCH APPLICATIONS OF COPPER OLEATE:
Antibacterial and Antifungal Properties
Copper oleate has been explored for its potential as an antibacterial and antifungal agent.

Studies have shown Copper oleate to be effective against a range of bacterial and fungal strains, including some that are resistant to common antibiotics and fungicides.
This research suggests that copper oleate could be a valuable addition to the fight against antimicrobial resistance.

Drug Delivery Systems
Due to its ability to form self-assembling structures, copper oleate is being investigated as a potential component of drug delivery systems.
These systems could be used to deliver drugs to specific cells or tissues, improving their efficacy and reducing side effects.

✅ BENEFITS AND CHARACTERISTICS OF COPPER OLEATE:
*Effective Preservative:
Copper oleate provides protection against microbial degradation.

*Versatility:
Applicable in various industries due to its multifunctional properties.

*Stability:
Copper oleate demonstrates good thermal and chemical stability under standard conditions.

CHEMICAL PROPERTIES OF COPPER OLEATE:
Copper oleate is a blue to green solid; can be prepared by reacting the acid with CuO or basic carbonate of Cu; coalesces mercury drops.
Copper oleate improves oil combustion by reducing smoke and fumes of burning oil.
Copper oleate is used as textile fungicide, used in antifouling marine paints.

PREPARATION OF COPPER OLEATE:
Copper oleate is produced by the precipitation reaction of copper(II) sulfate solutions with sodium oleate. It is insoluble in water. 
Copper oleate of commerce contains between 6% and 9% copper. Copper oleate is used as an emulsifier and dispersant for the control of mildew and as a combustion improver in fuel oils.

SYNTHESIS OF COPPER OLEATE:
The electrolysis system consisted of a Cu foil (3x1 cm, 0.1 cm thickness) as the anode and graphite rod (6.5 mm diameter, Johnson Matthey Chemicals Ltd.) as the cathode in the presence of ammonium acetate (CH₃COONH₄) as the supporting electrolyte solution.
Prior to synthesis, both anode and cathode were rinsed with distilled water and small amount of acetone to remove any trace organic materials on their surface.

A DC power supply (TTi PSU Bench CPX400A) was used throughout the electrochemical synthesis.
The acid solution (in ethanol) was mixed with CH₃COONH₄ solution with the ratio of 1:1 into the electrochemical cell.
The electrochemical cell used was a simple and undivided cell with the capacity of 100 mL.

The reaction was performed at room temperature (~27°C) for 4 hours.
Strong stirring (900 rpm) was kept throughout the synthesis process.
The resulting complex in blue precipitate was then filtered and washed with distilled water and ethanol to remove the impurities.

The precipitate was then dried in a desiccator for 24 hours.
Copper oleate can be obtained.

PREPARATION METHODS OF COPPER OLEATE:
*Synthetic Routes and Reaction Conditions:
Copper oleate can be synthesized through several methods, including:


*Chemical Reduction Method:
Copper chloride is dissolved in water, and oleic acid is dissolved in acetone.
The two solutions are mixed and stirred, followed by the addition of a reducing agent such as sodium formaldehyde sulfoxylate.


*Precipitation Reaction:
Copper sulfate solutions are reacted with sodium oleate, resulting in the precipitation of this compound.


*Industrial Production Methods:
In industrial settings, this compound is produced by reacting copper sulfate with sodium oleate in large-scale reactors.

The reaction mixture is stirred continuously to ensure complete precipitation of this compound.
Copper oleate is then filtered, washed, and dried to obtain pure this compound.
This method is cost-effective and scalable, making Copper oleate suitable for large-scale production.

CHEMICAL REACTIONS ANALYSIS OF COPPER OLEATE:
Copper oleate undergoes various chemical reactions, including:

*Oxidation:
Copper oleate can be oxidized to form copper oxide species.

*Reduction:
Copper oleate can be reduced to form metallic copper nanoparticles.

*Substitution:
Copper oleate can undergo substitution reactions where the oleate ligand is replaced by other ligands.

COMMON REAGENTS AND CONDITIONS OF COPPER OLEATE:
*Oxidizing Agents:
Hydrogen peroxide, oxygen.

*Reducing Agents:
Sodium borohydride, hydrazine.

*Reaction Conditions:
Reactions are typically carried out at room temperature or slightly elevated temperatures, with continuous stirring to ensure complete reaction.

MAJOR PRODUCTS FORMED OF COPPER OLEATE:
*Oxidation:
Copper oxide species.

*Reduction:
Metallic copper nanoparticles.

*Substitution:
Modified copper complexes with different ligands.

MECHANISM OF ACTION OF COPPER OLEATE:
The mechanism of action of copper oleate involves its ability to interact with biological membranes and disrupt cellular processes.
Copper ions released from this compound can generate reactive oxygen species (ROS).
These ROS cause oxidative damage to cellular components such as proteins, lipids, and DNA.

This leads to cell death and provides the antimicrobial properties of this compound.
Additionally, Copper oleate can interact with enzymes and other proteins.
Copper oleate inhibits their activity and further contributes to its biological effects.

COMPARISON WITH SIMILAR COMPOUNDS;
Comparison with Structurally Similar Metal Oleates

**Sodium Oleate (NaOl)
Chemical Structure: 
Na⁺ replaces Cu²⁺ in the oleate complex.

Properties: 
Water-soluble due to the ionic nature of Na⁺, unlike hydrophobic copper oleate.

Applications:
Flotation agent for hematite and malachite ores.
Reference compound in surfactant studies due to its carboxylate-sophorose interactions.

Research Findings: 
Sodium oleate forms micelles at lower concentrations than this compound.
This reflects differences in metal ion polarity and solubility.


**Potassium Oleate
Chemical Structure: K⁺ as the counterion.
Properties: 
Similar water solubility to sodium oleate but with higher biochemical reactivity.

Applications:
Emulsifier in aerosols and personal care products.
Biochemical reagent for detecting calcium, copper, and magnesium ions.

Key Difference: 
Potassium oleate lacks the catalytic activity of this compound in nanomaterial synthesis or redox reactions.


**Copper Stearate (Cu(C₁₈H₃₅O₂)₂)
Structural Difference: Stearate (C₁₈:0 saturated fatty acid) vs. oleate (C₁₈:1 unsaturated).

Thermal Behavior:
This compound accelerates oxidation reactions at lower temperatures (e.g., in heavy oil upgrading) due to its unsaturated backbone.
The unsaturated backbone facilitates oxygen addition.

Copper stearate requires higher temperatures for equivalent catalytic efficiency.
This is because its saturated structure impedes radical initiation.

Magnetic Properties:
Both exhibit binuclear structures in non-aqueous solutions.
Copper stearate has slightly higher magnetic susceptibility due to tighter packing of saturated chains.


**Nickel Oleate
Catalytic Behavior:
In reactions with thiourea, nickel oleate forms oleamide at 150°C over 60 minutes.
This compound achieves the same transformation at 150°C in 10 minutes.
The Lewis acidity of Cu²⁺ enhances reaction kinetics.

Nanoparticle Synthesis:
Nickel oleate produces magnetic NiS nanoparticles.
These interfere with NMR characterization.
This interference is absent in CuInS₂ QDs derived from this compound.


**Lead Oleate
Pharmaceutical Use:
Lead oleate is historically used for cutaneous diseases.
It is largely obsolete due to toxicity.
This compound remains preferred for its safer antimicrobial profile.

KEY RESEARCH FINDINGS OF COPPER OLEATE:
*Nanomaterial Synthesis:
Copper oleate enables epitaxial growth of CuInS₂ QDs via intermediate Cu₂S–CuInS₂ hybrids.
This mechanism is absent in indium or zinc oleates.

*Heavy Oil Upgrading:
Copper oleate reduces activation energy by 10–15% compared to stearate.
This is attributed to its unsaturated chain promoting oxygen radical formation.

*Biomedical Efficacy:
Copper oleate’s antimicrobial activity surpasses sodium/potassium oleates.
This is due to Cu²⁺ release, which disrupts microbial membranes.

PREPARATION OF COPPER OLEATE:
Copper oleate is produced by the precipitation reaction of copper(II) sulfate solutions with sodium oleate.
Copper oleate is insoluble in water.
Copper oleate of commerce contains between 6% and 9% copper.

Copper oleate is used as an emulsifier and dispersant for the control of mildew.
Copper oleate is also used as a combustion improver in fuel oils.

PURIFICATION METHODS OF COPPER OLEATE:
Crystallize Copper oleate from diethyl ether.

CHEMICAL PROPERTIES OF COPPER OLEATE:
Copper oleate is a blue to green solid.
Copper oleate can be prepared by reacting oleic acid with CuO or basic copper carbonate.

Copper oleate coalesces mercury drops.
Copper oleate improves oil combustion by reducing smoke and fumes of burning oil.

Copper oleate is used as a textile fungicide.
Copper oleate is used in antifouling marine paints.

CHEMICAL REACTIONS OF COPPER OLEATE:
*Oxidation: 
Copper oleate can be oxidized to form copper oxide species.
Common oxidizing agents include hydrogen peroxide and oxygen.

*Reduction: 
Copper oleate can be reduced to produce metallic copper nanoparticles.
Reducing agents typically include sodium borohydride or hydrazine.

*Substitution: 
Copper oleate ligand can be substituted by other ligands under certain conditions.

MAJOR PRODUCTS FORMED:
*From oxidation: 
Copper oxide species.

*From reduction: 
Metallic copper nanoparticles.

*From substitution:
Modified copper complexes with different ligands.

BIOLOGICAL ACTIVITY OF COPPER OLEATE:
Copper oleate exhibits notable biological activity.
Copper oleate targets microbial and tumor cells.

Copper oleate acts through the generation of free radicals.
These radicals increase oxidative stress within the cells.

This mechanism disrupts cellular functions and promotes cell death.
Copper oleate is a potential candidate for antimicrobial and anticancer therapies.

Studies have indicated Copper oleate's effectiveness against certain pathogens.
Copper oleate demonstrates utility as an antimicrobial agent.

SYNTHESIS METHODS OF COPPER OLEATE:
Copper oleate can be synthesized through several methods.

Precipitation Reaction:
Mix copper sulfate solution with sodium oleate in water.

The reaction typically occurs at elevated temperatures with continuous stirring.
This results in the precipitation of copper oleate.


Chemical Reduction Method:
Dissolve copper chloride in water and oleic acid in acetone.

Combine the two solutions.
Add a reducing agent such as sodium formaldehyde sulfoxylate to facilitate formation.


Example Procedure
Dissolve 2.5 g of copper sulfate in 100 ml of water.
Heat the solution to 70–80°C while stirring.

Add 2.5 g of sodium oleate and stir for 30 minutes until a dark green precipitate forms.
Filter the precipitate, wash it with water, and dry it in a vacuum oven at 60°C.

MECHANISM OF ACTION OF COPPER OLEATE:
The specific mechanism of action of copper oleate depends on the context of its use.
In its fungicidal and insecticidal roles, copper oleate disrupts the cell membrane of target organisms.

This disruption leads to leakage of cellular contents and ultimately cell death.
Copper ions can interact with essential enzymes within the organism.
This interaction further inhibits the organism’s growth and survival.

PHYSICAL and CHEMICAL PROPERTIES of COPPER OLEATE:
Compound Canonicalized: Yes
Storage: Store in dry, dark
Product Name: Cupric oleate
CAS No.: 1120-44-1
Molecular Formula: C18H34O2.1/2Cu
InChIKeys: InChIKey=XVBODFCHDIQCGK-KVVVOXFISA-N
Molecular Weight: 626.45
Exact Mass: 625.42600
EC Number: 214-307-4

PSA: 80.26000
XLogP3: 9.54510
Density: 0.899g/cm3
Boiling Point: 360ºC at 760mmHg
Flash Point: 270.1ºC
Water Solubility: insoluble H2O; slightly soluble alcohol; soluble ether
Vapor Pressure: 3.7E-06mmHg at 25°C
CAS Number: 1120-44-1
Product Name: Copper oleate
IUPAC Name: copper;(Z)-octadec-9-enoic acid

Molecular Formula: C18H34CuO2
Molecular Weight: 346.0 g/mol
InChI: InChI=1S/C18H34O2.Cu/c1-2-3-4-5-6-7-8-9-10-11-12-13-14-15-16-17-18(19)20;/h9-10H,2-8,11-17H2,1H3,(H,19,20);/b10-9-;
InChI Key: XVBODFCHDIQCGK-KVVVOXFISA-N
SMILES: CCCCCCCCC=CCCCCCCCC(=O)[O-].CCCCCCCCC=CCCCCCCCC(=O)[O-].[Cu+2]
Canonical SMILES: CCCCCCCCC=CCCCCCCCC(=O)O.[Cu]
Isomeric SMILES: CCCCCCCC/C=CCCCCCCCC(=O)O.[Cu]
Density: 0.899g/cm3
Boiling Point: 360ºC at 760mmHg
Molecular Formula: C36H66CuO4

Molecular Weight: 626.45300
Flash Point: 270.1ºC
Exact Mass: 625.42600
PSA: 80.26000
LogP: 9.54510
Appearance of Characters: blue-green solid
Vapour Pressure: 3.7E-06mmHg at 25°C
Storage condition: 2-8℃
Water Solubility: insoluble H2O; slightly soluble alcohol; soluble ether [MER06]
CAS: 1120-44-1

MF: C18H34CuO2
MW: 346.01
EINECS: 214-307-4
Product Categories: Organic-metal salt
Mol File: 1120-44-1.mol
Boiling point: 211.9℃[at 101 325 Pa]
density: 971[at 20℃]
vapor pressure: 0.616Pa at 20℃
form: blue-green solid

Water Solubility: insoluble H2O; slightly soluble alcohol; 
soluble ether [MER06]
LogP: 14.74 at 25℃
EPA Substance Registry System: Cupric oleate (1120-44-1)
CAS No.: 1120-44-1
Molecular Formula: C18H34CuO2
Molecular Weight: 346.0 g/mol
IUPAC Name: copper;(Z)-octadec-9-enoic acid
InChI: InChI=1S/C18H34O2.Cu/c1-2-3-4-5-6-7-8-9-10-11-12-13-14-15-16-17-18(19)20;/h9-10H,2-8,11-17H2,1H3,(H,19,20);/b10-9-;

InChI Key: XVBODFCHDIQCGK-KVVVOXFISA-N
SMILES: CCCCCCCCC=CCCCCCCCC(=O)[O-].CCCCCCCCC=CCCCCCCCC(=O)[O-].[Cu+2]
Isomeric SMILES: CCCCCCCC/C=CCCCCCCCC(=O)O.[Cu]
Canonical SMILES: CCCCCCCCC=CCCCCCCCC(=O)O.[Cu]
Other CAS No.: 1120-44-1
CAS NO: 1120-44-1
Molecular Formula: 2C18H33O2*Cu
Molecular Weight: 626.45
EINECS: 214-307-4

Product Categories: Organic-metal salt
Mol File: 1120-44-1.mol
Melting Point: N/A
Boiling Point: 360°C at 760mmHg
Flash Point: 270.1°C
Appearance: /blue-green solid
Density: 0.899g/cm3
Vapor Pressure: 3.7E-06mmHg at 25°C
Refractive Index: N/A
Storage Temp.: N/A

Solubility: N/A
Water Solubility: insoluble H2O; slightly soluble alcohol; soluble ether [MER06]
CAS DataBase Reference: COPPER(II) OLEATE(CAS DataBase Reference)
NIST Chemistry Reference: COPPER(II) OLEATE(1120-44-1)
EPA Substance Registry System: COPPER(II) OLEATE(1120-44-1)
Molecular Weight: 626.5 g/mol
Hydrogen Bond Donor Count: 0
Hydrogen Bond Acceptor Count: 4
Rotatable Bond Count: 28

Exact Mass: 625.425708 Da
Monoisotopic Mass: 625.425708 Da
Topological Polar Surface Area: 80.3 Ų
Heavy Atom Count: 41
Formal Charge: 0
Complexity: 228
Isotope Atom Count: 0
Defined Atom Stereocenter Count: 0
Undefined Atom Stereocenter Count: 0

Defined Bond Stereocenter Count: 2
Undefined Bond Stereocenter Count: 0
Covalently-Bonded Unit Count: 3
Compound Is Canonicalized: Yes
CBNumber: CB6174813
Molecular Formula: C18H34CuO2
Molecular Weight: 346.01
MDL Number: MFCD00064999

MOL File: 1120-44-1.mol
Boiling point: 211.9℃ [at 101 325 Pa]
Density: 971 [at 20℃]
Vapor pressure: 0.616 Pa at 20℃
Solubility: insoluble in H2O; slightly soluble in ethanol; 
soluble in ethyl ether
Form: blue-green solid
Color: blue-green
Water Solubility: insoluble H2O; slightly soluble alcohol; 
soluble ether [MER06]

Dielectric constant: 2.8 (20℃)
LogP: 14.74 at 25℃
FDA 21 CFR: 310.545
FDA UNII: KT1O45G674
EPA Substance Registry System: Cupric oleate (1120-44-1)
Cas No: 1120-44-1
Molecular weight: 626.45
Molecular Formula: C18H34O2.1/2Cu
Production Capacity: 1-100 Metric Ton/Month
Purity: 63% dark green liquid

FIRST AID MEASURES of COPPER OLEATE:
-Description of first-aid measures
*General advice:
Show this material safety data sheet to the doctor in attendance.
*If inhaled:
After inhalation: 
Fresh air.
*In case of skin contact: 
Take off immediately all contaminated clothing. 
Rinse skin with
water/ shower.
*In case of eye contact:
After eye contact: 
Rinse out with plenty of water. 
Call in ophthalmologist. 
Remove contact lenses.
*If swallowed:
After swallowing: 
Immediately make victim drink water (two glasses at most). 
Consult a physician.
-Indication of any immediate medical attention and special treatment needed.
No data available

ACCIDENTAL RELEASE MEASURES of COPPER OLEATE:
-Environmental precautions:
Do not let product enter drains.
-Methods and materials for containment and cleaning up:
Cover drains. 
Collect, bind, and pump off spills. 
Observe possible material restrictions. 
Take up dry. 
Dispose of properly. 
Clean up affected area.

FIRE FIGHTING MEASURES of COPPER OLEATE:
-Extinguishing media:
*Suitable extinguishing media:
Carbon dioxide (CO2) 
Foam 
Dry powder
*Unsuitable extinguishing media:
For this substance/mixture no limitations of extinguishing agents are given.
-Further information:
Prevent fire extinguishing water from contaminating surface water or the ground water system.

EXPOSURE CONTROLS/PERSONAL PROTECTION of COPPER OLEATE:
-Control parameters:
--Ingredients with workplace control parameters:
-Exposure controls:
--Personal protective equipment:
*Eye/face protection:
Use equipment for eye protection. 
Safety glasses
*Body Protection:
protective clothing
*Respiratory protection:
Recommended Filter type: Filter A 
-Control of environmental exposure:
Do not let product enter drains.

HANDLING and STORAGE of COPPER OLEATE:
-Conditions for safe storage, including any incompatibilities:
*Storage conditions:
Tightly closed. 
Dry.

STABILITY and REACTIVITY of COPPER OLEATE:
-Chemical stability:
The product is chemically stable under standard ambient conditions (room temperature).
-Possibility of hazardous reactions:
No data available


 

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