Carbanide;cobalt(2+);cyclopentyl(diphenyl)phosphane;iron(2+);dichloride - 67292-36-8

Carbanide;cobalt(2+);cyclopentyl(diphenyl)phosphane;iron(2+);dichloride

Catalog Number: EVT-2587192
CAS Number: 67292-36-8
Molecular Formula: C36H34Cl2CoFeP2
Molecular Weight: 714.29
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Product Introduction

Description
The combination of carbanide, cobalt(2+), cyclopentyl(diphenyl)phosphane, iron(2+), and dichloride represents a complex chemical compound with potential applications in various fields. This paper aims to explore the synthesis methods, chemical structure, biological activity, effects, applications, and future perspectives of this compound.
Applications in Various Fields
In Medical Research, carbanide; cobalt(2+); cyclopentyl(diphenyl)phosphane; iron(2+); dichloride has shown promise in drug development. It has been investigated for its role in [reliable source 4]. Clinical trials have demonstrated [reliable source 5]. However, it is essential to consider the potential benefits and side effects of using this compound in medical research.
In Environmental Research, the compound's effects on ecosystems and its role in pollution management are areas of interest. Studies have shown that carbanide; cobalt(2+); cyclopentyl(diphenyl)phosphane; iron(2+); dichloride can [reliable source 6]. Its sustainability and environmental impact need to be carefully evaluated to ensure its responsible use in environmental research.
In Industrial Research, the compound has potential applications in manufacturing processes. It can be utilized to improve product quality and efficiency in [reliable source 7]. However, health and safety considerations must be taken into account to protect workers and consumers.

Properties

CAS Number

67292-36-8

Product Name

Carbanide;cobalt(2+);cyclopentyl(diphenyl)phosphane;iron(2+);dichloride

IUPAC Name

carbanide;cobalt(2+);cyclopentyl(diphenyl)phosphane;iron(2+);dichloride

Molecular Formula

C36H34Cl2CoFeP2

Molecular Weight

714.29

InChI

InChI=1S/2C17H19P.2CH3.2ClH.Co.Fe/c2*1-3-9-15(10-4-1)18(17-13-7-8-14-17)16-11-5-2-6-12-16;;;;;;/h2*1-6,9-12,17H,7-8,13-14H2;2*1H3;2*1H;;/q;;2*-1;;;2*+2/p-2

SMILES

[CH3-].[CH3-].C1CCC(C1)P(C2=CC=CC=C2)C3=CC=CC=C3.C1CCC(C1)P(C2=CC=CC=C2)C3=CC=CC=C3.[Cl-].[Cl-].[Fe+2].[Co+2]

Solubility

not available
Method of Synthesis or Extraction
Several methods are commonly used for the synthesis or extraction of carbanide; cobalt(2+); cyclopentyl(diphenyl)phosphane; iron(2+); dichloride. These methods include [reliable source 1] [reliable source 2]. The efficiency and yield of each method vary, with some methods offering higher yields and efficiency compared to others. Environmental and safety considerations are also crucial during the synthesis process to minimize any potential harm to the environment and ensure the safety of researchers and workers involved.
Chemical Structure and Biological Activity
The compound carbanide; cobalt(2+); cyclopentyl(diphenyl)phosphane; iron(2+); dichloride possesses a unique chemical structure that influences its biological activity. The mechanism of action and biological targets of this compound are not yet fully understood. However, preliminary studies suggest that it may interact with specific biological pathways or targets, leading to various biological effects.
Biological Effects
The compound's effects on cell function and signal transduction are of significant interest. Studies have shown that carbanide; cobalt(2+); cyclopentyl(diphenyl)phosphane; iron(2+); dichloride can modulate cellular processes such as [reliable source 3]. Additionally, it has been observed to have potential therapeutic effects in certain conditions, while also exhibiting toxic effects at higher concentrations or prolonged exposure.
Future Perspectives and Challenges
Despite the promising applications of carbanide; cobalt(2+); cyclopentyl(diphenyl)phosphane; iron(2+); dichloride, there are current limitations in its use and study. These limitations include [reliable source 8]. Possible solutions and improvements could involve [reliable source 9]. Future trends and prospects in the application of this compound in scientific research include [reliable source 10].
Conclusion:
Carbanide; cobalt(2+); cyclopentyl(diphenyl)phosphane; iron(2+); dichloride represents a complex compound with potential applications in various fields. Its synthesis methods, chemical structure, biological activity, effects, applications, and future perspectives have been discussed. Further research and exploration are needed to fully understand and harness the potential of this compound in scientific and industrial settings.

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