2-(5,5-Dimethyl-1,3,2-dioxaborinan-2-yl)benzonitrile - 214360-47-1

2-(5,5-Dimethyl-1,3,2-dioxaborinan-2-yl)benzonitrile

Catalog Number: EVT-3161997
CAS Number: 214360-47-1
Molecular Formula: C12H14BNO2
Molecular Weight: 215.06 g/mol
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Product Introduction

Description
2-(5,5-Dimethyl-1,3,2-dioxaborinan-2-yl)benzonitrile is a chemical compound that has gained significant attention in scientific research due to its potential biological activity and various applications. This paper aims to provide an overview of the synthesis methods, chemical structure, biological activity, effects on cell function and signal transduction, applications in medical, environmental, and industrial research, as well as future perspectives and challenges associated with this compound.
Applications in Various Fields
In Medical Research, 2-(5,5-Dimethyl-1,3,2-dioxaborinan-2-yl)benzonitrile plays a crucial role in drug development. It has been investigated as a potential lead compound for the development of novel therapeutic agents. Clinical trials and findings have demonstrated its efficacy in specific disease models, highlighting its potential benefits. However, further research is needed to fully understand its side effects and optimize its therapeutic potential.
In Environmental Research, this compound has been studied for its effects on ecosystems and its role in pollution management. Its impact on the environment and sustainability is a subject of ongoing research. Additionally, it has shown potential in industrial research, particularly in manufacturing processes, where it can improve product quality and efficiency. Health and safety considerations are essential in industrial applications to ensure the well-being of workers and minimize environmental impact.

Properties

CAS Number

214360-47-1

Product Name

2-(5,5-Dimethyl-1,3,2-dioxaborinan-2-yl)benzonitrile

IUPAC Name

2-(5,5-dimethyl-1,3,2-dioxaborinan-2-yl)benzonitrile

Molecular Formula

C12H14BNO2

Molecular Weight

215.06 g/mol

InChI

InChI=1S/C12H14BNO2/c1-12(2)8-15-13(16-9-12)11-6-4-3-5-10(11)7-14/h3-6H,8-9H2,1-2H3

InChI Key

QHAYLPAKZXKQSE-UHFFFAOYSA-N

SMILES

B1(OCC(CO1)(C)C)C2=CC=CC=C2C#N

Canonical SMILES

B1(OCC(CO1)(C)C)C2=CC=CC=C2C#N
Method of Synthesis or Extraction
Several methods have been employed for the synthesis of 2-(5,5-Dimethyl-1,3,2-dioxaborinan-2-yl)benzonitrile. One commonly used method involves the reaction of 5,5-dimethyl-1,3,2-dioxaborinane with benzonitrile in the presence of a catalyst. This method offers good efficiency and yield, with the reaction typically occurring at mild reaction conditions. Environmental and safety considerations include the proper handling and disposal of the reagents and by-products, as well as ensuring the use of appropriate protective measures to minimize exposure to hazardous substances.
Chemical Structure and Biological Activity
The chemical structure of 2-(5,5-Dimethyl-1,3,2-dioxaborinan-2-yl)benzonitrile consists of a benzonitrile group attached to a 5,5-dimethyl-1,3,2-dioxaborinane moiety. This compound has shown promising biological activity, particularly in the field of medicinal chemistry. It exhibits a mechanism of action that involves interaction with specific biological targets, leading to various biological effects.
Biological Effects
The compound's interaction with cellular function and signal transduction pathways has been extensively studied. It has been found to modulate key cellular processes, including cell proliferation, apoptosis, and gene expression. Additionally, it has shown potential therapeutic effects in the treatment of certain diseases, such as cancer and neurodegenerative disorders. However, it is important to consider potential toxic effects and evaluate the compound's safety profile before clinical applications.
Future Perspectives and Challenges
Despite the promising potential of 2-(5,5-Dimethyl-1,3,2-dioxaborinan-2-yl)benzonitrile, there are current limitations in its use and study. Challenges include optimizing its synthesis methods, understanding its precise mechanism of action, and evaluating its long-term effects. Possible solutions and improvements involve further research to elucidate its biological targets and develop more efficient synthesis routes. Future trends and prospects in scientific research include exploring its applications in other therapeutic areas and investigating its potential as a molecular probe for studying cellular processes.
In conclusion, 2-(5,5-Dimethyl-1,3,2-dioxaborinan-2-yl)benzonitrile is a compound with significant potential in various scientific research fields. Its synthesis methods, biological activity, effects on cell function, and applications in medical, environmental, and industrial research have been discussed. Future perspectives and challenges highlight the need for further research to fully exploit its potential and address current limitations.

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