The Versatile Role of 1-(3-chlorophenyl)propan-1-one in Organic Chemistry
In the intricate world of organic chemistry, certain molecules stand out for their versatility and importance as synthetic building blocks. 1-(3-chlorophenyl)propan-1-one, also known by its CAS number 34841-35-5, is one such compound. As a seasoned chemical manufacturer and supplier, we witness firsthand the indispensable role this molecule plays in driving innovation across various scientific disciplines, particularly in advanced organic synthesis and the development of new materials.
Understanding the Chemical Backbone: 1-(3-chlorophenyl)propan-1-one
Chemists and product formulators often look for intermediates that offer predictable reactivity and can be easily incorporated into complex molecular structures. 1-(3-chlorophenyl)propan-1-one fits this description perfectly. Its structure, featuring a chlorophenyl group attached to a propanone chain, provides reactive sites that are highly valuable in synthetic transformations. Typically appearing as a crystalline solid with a purity of 95% or higher, it boasts a melting point of 45-47°C, making it relatively easy to handle and store under standard laboratory conditions.
Applications Driving Chemical Innovation
The utility of 1-(3-chlorophenyl)propan-1-one extends across several critical areas:
- Ketone Functionalization: This compound is a valuable reagent for chemists performing vinylation, alkylation, and dienylation reactions on ketones. These transformations are fundamental in building carbon frameworks for a wide range of target molecules.
- Pharmaceutical Intermediates: As previously mentioned, its role in synthesizing crucial drugs like bupropion and dapoxetine is well-established. For researchers and manufacturers in the pharmaceutical industry, securing a reliable source for this intermediate is vital. You can buy 1-(3-chlorophenyl)propan-1-one from us to ensure the quality of your drug synthesis.
- Development of Bioactive Compounds: Its application in preparing thizaine derivatives with reported antibacterial activity highlights its potential in the discovery of new therapeutic agents. This opens doors for collaborative research and custom synthesis projects.
- Specialty Chemical Synthesis: Beyond pharmaceuticals, this intermediate can be used in the creation of various specialty chemicals where its specific chemical properties are advantageous.
Why Choose Us as Your Supplier?
As a leading chemical supplier in China, we are dedicated to providing researchers and industrial clients with access to high-quality 1-(3-chlorophenyl)propan-1-one. We understand that consistent purity, timely delivery, and competitive pricing are critical factors for our B2B customers. Our manufacturing processes are designed to meet international standards, ensuring that you receive a product that performs reliably in your demanding applications. When you are looking to purchase this compound, consider our expertise and commitment to excellence.
Get a Quote for Your Organic Synthesis Needs
For procurement professionals and R&D scientists needing 1-(3-chlorophenyl)propan-1-one (CAS: 34841-35-5), engaging with a trusted manufacturer is the first step towards a successful project. We invite you to reach out to us for a personalized quote, detailed product specifications, and information on sample availability. Partner with us to ensure your organic synthesis endeavors are supported by the finest chemical intermediates.
Perspectives & Insights
Future Origin 2025
“1-(3-chlorophenyl)propan-1-one, also known by its CAS number 34841-35-5, is one such compound.”
Core Analyst 01
“As a seasoned chemical manufacturer and supplier, we witness firsthand the indispensable role this molecule plays in driving innovation across various scientific disciplines, particularly in advanced organic synthesis and the development of new materials.”
Silicon Seeker One
“Understanding the Chemical Backbone: 1-(3-chlorophenyl)propan-1-one Chemists and product formulators often look for intermediates that offer predictable reactivity and can be easily incorporated into complex molecular structures.”