1.02765

Copper oxide

wire fine about 0.65 x 3 mm for elementary analysis (surface: CuO, core: Cu₂O) ACS

Manufacturer: Supelco

CAS Number: 1317-38-0

Synonym(S): Copper oxide

Select a Size

Pack Size SKU Availability Price
250 G 1.02765-250-G In Stock ₹ 25,230.00
1 KG 1.02765-1-KG In Stock ₹ 63,010.00

1.02765 - 250 G

₹ 25,230.00

In Stock

Quantity

1

Base Price: ₹ 25,230.00

GST (18%): ₹ 4,541.40

Total Price: ₹ 29,771.40

grade

ACS reagent

Quality Level

100

Assay

(oxygen demand as CuO): -≥ 55.0 %

form

solid

weight

=79.54 g/mol

mp

1300 °C

density

6.2 g/cm3 at 20 °C

bulk density

2200 kg/m3

cation traces

C: ≤0.002%N: ≤0.002%

storage temp.

2-30°C

Other Options

Image Product Name Manufacturer Price Range
1.02767
Copper oxide
Supelco ₹ 14,310.01 - ₹ 34,650.00
1.02766
Copper(II) oxide
Supelco ₹ 23,873.42 - ₹ 25,07,230.01
1.02761
Copper(II) oxide
Supelco ₹ 66,859.99 - ₹ 22,46,480.01
1.02764
Copper(II) oxide
Supelco ₹ 38,080.00 - ₹ 1,48,810.00
208841
Copper(II) oxide
Sigma Aldrich ₹ 5,109.40 - ₹ 19,073.65
450812
Copper(II) oxide
Sigma Aldrich ₹ 22,223.73 - ₹ 53,269.83
203130
Copper(II) oxide
Sigma Aldrich ₹ 6,260.00 - ₹ 21,590.00
450804
Copper(II) oxide
Sigma Aldrich ₹ 11,571.93 - ₹ 19,116.95

Description

  • Application: A study on a broadband photodetector based on hybrid 2D copper oxide/reduced graphene oxide.: This research developed a photodetector utilizing a novel hybrid of copper oxide and reduced graphene oxide, demonstrating enhanced broadband detection capabilities, which is significant for advancements in optical sensing technologies (Ngo et al., 2024). Electro-sensing layer constructed of a WO(3)/CuO nanocomposite, for the electrochemical determination of 2-phenylphenol fungicide.: The paper discusses the fabrication and application of a tungsten oxide/copper oxide nanocomposite layer for sensitive and selective electrochemical detection of the fungicide 2-phenylphenol, highlighting its potential in environmental monitoring (Prabhu et al., 2023). Copper Oxide Solution Sensor Formed on a Thin Film Having Nanowires for Detecting Ethanol in Water.: This study presents the development of a copper oxide-based sensor with nanowire-enhanced thin films for detecting ethanol in water, offering a promising approach for environmental and health-related applications (Kimura and Tohmyoh, 2022). Tuning the Redox Chemistry of Copper Oxide Nanoarchitectures Integrated with rGOP via Facet Engineering: Sensing H(2)S toward SRB Detection.: This article explores the facet-engineered modification of copper oxide nanostructures combined with reduced graphene oxide, improving their redox properties for hydrogen sulfide sensing, which is crucial in detecting sulfate-reducing bacteria in industrial applications (Asif et al., 2022).
  • Analysis Note: Assay (oxygen demand as CuO): ≥ 55.0 %Chloride (Cl): ≤ 0.005 %Total carbon (C): ≤ 0.002 %Total nitrogen (N): ≤ 0.002 %Total sulfur (as SO₄): ≤ 0.005 %

SAFETY INFORMATION

Pictograms

GHS09

Signal Word

Warning

Hazard Statements

H410

Precautionary Statements

P273 - P391 - P501

Hazard Classifications

Aquatic Acute 1 - Aquatic Chronic 1

Storage Class Code

11 - Combustible Solids

WGK

WGK 3

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

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1.02765

wire fine about 0.65 x 3 mm for ele...


grade:
ACS reagent

Quality Level:
100

Assay:
(oxygen demand as CuO): -≥ 55.0 %

form:
solid

weight:
=79.54 g/mol

mp:
1300 °C

density:
6.2 g/cm3 at 20 °C

bulk density:
2200 kg/m3

cation traces:
C: ≤0.002%N: ≤0.002%

storage temp.:
2-30°C

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Supelco

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grade:
ACS reagent

Quality Level:
100

Assay:
(oxygen demand as CuO)- ≥ 55.0 %

form:
solid

weight:
=79.54 g/mol

mp:
1300 °C

density:
6.2 g/cm3 at 20 °C

bulk density:
2200 kg/m3

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C: ≤0.002%N: ≤0.002%

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2-30°C

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Fe: ≤0.5%

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