
7440-50-8
- Product Name:Copper
- Molecular Formula:Cu
- Purity:99%
- Molecular Weight:63.55
Product Details;
CasNo: 7440-50-8
Molecular Formula: Cu
Appearance: reddish metal
Reputable manufacturer supply Copper 7440-50-8 in stock with high standard
- Molecular Formula:Cu
- Molecular Weight:63.55
- Appearance/Colour:reddish metal
- Melting Point:1083.4 °C(lit.)
- Boiling Point:2595 °C
- Flash Point:-23°C
- PSA:0.00000
- Density:8.92 g/cm3
- LogP:-0.00250
Copper(Cas 7440-50-8) Usage
Use Description |
Copper, a versatile metal, has a wide range of applications across various fields. In the realm of electrical engineering and electronics, copper is extensively used in wiring and conductors due to its excellent electrical conductivity, playing a crucial role in the transmission of electricity and signals. Additionally, in the construction and architectural industry, it is employed in roofing, plumbing, and decorative elements due to its corrosion resistance and malleability, contributing to durable and aesthetically pleasing structures. In the field of healthcare, copper surfaces and alloys are utilized for their antimicrobial properties, reducing the spread of infectious diseases in hospitals. Furthermore, in the manufacturing of coins and currency, copper is a fundamental material, providing the basis for monetary systems worldwide. Its multifaceted utility underscores its significance in electricity distribution, construction, healthcare, and currency, where it plays a crucial role in facilitating energy transfer, building infrastructure, promoting public health, and enabling commerce. |
General Description |
The provided literature abstracts primarily focus on the catalytic and coordination chemistry roles of copper (Cu) in organic synthesis, solar cell applications, and mechanistic studies rather than describing the elemental or physical properties of copper itself. Copper is highlighted as a versatile catalyst in C-N cross-coupling reactions, N-alkylation of sulfonamides, and alkene difunctionalization, where it aids in bond formation and redox processes. It also appears in dye-sensitized solar cell research as a component in organic dyes and as a redox-active center in mononuclear copper(I) complexes, which exhibit tunable electronic properties for photochemical applications. However, none of the abstracts provide a descriptive summary of copper's elemental characteristics (e.g., conductivity, malleability, or its native state). Thus, the request for a paragraph summarizing copper based on these abstracts returns **Null**. |
InChI:InChI=1/Cu/q+2
7440-50-8 Relevant articles
Hierarchical Copper with Inherent Hydrophobicity Mitigates Electrode Flooding for High-Rate CO2 Electroreduction to Multicarbon Products
Niu, Zhuang-Zhuang,Gao, Fei-Yue,Zhang, Xiao-Long,Yang, Peng-Peng,Liu, Ren,Chi, Li-Ping,Wu, Zhi-Zheng,Qin, Shuai,Yu, Xingxing,Gao, Min-Rui
, p. 8011 - 8021 (2021/05/29)
Copper is currently the material with th...
Synthesis of an Ag@AgCl catalyst with amorphous copper as the support and its catalytic performance in the reduction of 4-nitrophenol
Bao, Lei,Dong, Hanfeng,Fu, Xucheng,Gan, Wei,Hao, Hequn,Liu, Luying,Qin, Chenchen,Wang, Yujuan,Zhang, Jian
, p. 551 - 557 (2020/07/24)
The support used in a composite catalyst...
Synthesis, Structure, DFT, and Biological Activity of Metal Complexes of Norfloxacin and Metformin Mixed Ligand
Abbass, L. M.,El-Shwiniy, W. H.,El-Telbany, M.,Sadeek, S. A.,Zordok, W. A.
, p. 1774 - 1782 (2021/11/01)
Abstract: A new series of mixed ligand m...
Theoretical and Experimental Evaluation of the Reduction Potential of Straight-Chain Alcohols for the Designed Synthesis of Bimetallic Nanostructures
Ishijima, Masanao,Matsumoto, Takatoshi,Cuya Huaman, Jhon L.,Shinoda, Kozo,Uchikoshi, Masahito,Matsuo, Kohei,Suzuki, Kazumasa,Miyamura, Hiroshi,Balachandran, Jeyadevan
, p. 9432 - 9441 (2021/05/06)
Recently, the development of bimetallic ...
7440-50-8 Process route
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95246-98-3
{Cu(I)(2,9-di-p-anisyl-1,10-phenanthroline)2}BF4*H2O

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89333-97-1
2,9-bis-(4-methoxy-phenyl)-1,10-phenanthroline

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12775-96-1,15158-11-9,15721-63-8,16941-75-6,17493-86-6,19498-52-3,20499-83-6,20499-84-7,20499-85-8,20499-86-9,20573-10-8,20573-11-9,21595-51-7,21595-52-8,22206-52-6,26445-28-3,28959-95-7,37362-93-9,39417-05-5,54603-16-6,54603-23-5,54603-32-6,54603-40-6,54603-48-4,54603-81-5,54603-89-3,56316-56-4,95985-91-4,122297-32-9,7440-50-8
copper
Conditions | Yield |
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In
not given;
Electrolysis;
|
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7647-01-0,15364-23-5
hydrogenchloride

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Cu3Si(b),Zn(1.5) (A%)
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Cu3Si(b),Zn(1.5) (A%)

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10026-04-7,53609-55-5
tetrachlorosilane

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10025-78-2
trichlorosilane

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12775-96-1,15158-11-9,15721-63-8,16941-75-6,17493-86-6,19498-52-3,20499-83-6,20499-84-7,20499-85-8,20499-86-9,20573-10-8,20573-11-9,21595-51-7,21595-52-8,22206-52-6,26445-28-3,28959-95-7,37362-93-9,39417-05-5,54603-16-6,54603-23-5,54603-32-6,54603-40-6,54603-48-4,54603-81-5,54603-89-3,56316-56-4,95985-91-4,122297-32-9,7440-50-8
copper

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4109-96-0
Dichlorosilane
Conditions | Yield |
---|---|
In
solid;
gas-solid react.; temp. 200 - 600°C; not isolated; detn. by DSC, XRD;
Kinetics;
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7440-50-8 Upstream products
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sodium tetraphenyl borate
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copper(ll) bromide
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nickel dibromide
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hydrogenchloride
7440-50-8 Downstream products
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10-phenyl-10H-phenothiazine
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N-(4-bromophenyl)-N-phenyl-1-naphthylamine
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copper(l) iodide
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1-methyl-4-[(4-methylphenyl)amino]-1H-pyrazole-5-carboxylic acid
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