(ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt
- CAS: 83898-69-5
- Purity: 99%
- Buy Good Quality (ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt 83898-69-5 with a minimum purity of 99%
Buy Good Quality (ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt 83898-69-5 with a minimum purity of 99% We supply high quality (ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt (CAS 83898-69-5), in stock, factory directly supply to clients, lower prices, more competitiveness.
What is the (ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt ?
(ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt is , while it's Molecular Formula is C42H30 Co N13. Used in Catalysis:
(ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt is used as a catalyst for various chemical reactions due to its unique coordination structure and the presence of a central cobalt atom. The complex can facilitate reactions by stabilizing intermediates and lowering activation energies, making it a promising candidate for industrial applications.
Used in Materials Science:
In the field of materials science, (ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt can be used as a component in the development of new materials with specific properties. Its unique structure and coordination chemistry may contribute to the creation of materials with enhanced electrical, optical, or magnetic properties.
Used in Coordination Chemistry Research:
As a model compound, (ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt is used in coordination chemistry research to study metal-ligand interactions and the effects of different ligands on the properties and reactivity of metal complexes. This research can provide valuable insights into the design and synthesis of new coordination compounds with tailored properties for various applications.
Used in Pharmaceutical Industry:
(ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt may also find applications in the pharmaceutical industry, where it could be used as a starting material for the development of new drugs or as a component in drug delivery systems. Its unique coordination chemistry and potential catalytic properties may enable the design of novel therapeutic agents with improved efficacy and selectivity.
What is the CAS number for (ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt ?
The CAS number of (ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt is 83898-69-5.
More information of (ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt 83898-69-5 are:
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Synonyms |
1H-Isoindol-3-amine,1-imino-, cobalt complex; 29H,31H-Phthalocyanine, cobalt complex |
|
CAS?Number |
83898-69-5 |
|
Molecular Formula |
C42H30 Co N13 |
|
Molecular Weight |
774.69996 |
|
PSA |
149.18000 |
|
LogP |
2.91430 |
What is (ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt (83898-69-5) used for?
(ethylenediamine-N)(1-imino-1H-isoindol-3-aminato-N2)[29H,31H-phthalocyaninato-N29,N30,N31,N32]cobalt is a coordination complex of cobalt with a central cobalt atom coordinated to ethylenediamine, 1-imino-1H-isoindol-3-aminato, and phthalocyaninato ligands. The ethylenediamine ligand provides two nitrogen atoms for coordination, while the 1-imino-1H-isoindol-3-aminato ligand provides one nitrogen atom for coordination. The phthalocyaninato ligands coordinate to the cobalt atom through four nitrogen atoms, forming a macrocyclic structure. This complex is likely to have potential applications in catalysis, materials science, and as a model compound for studying coordination chemistry and metal-ligand interactions.
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