3-Chloro-4-fluorotoluene (CAS 1513-25-3): A Key Building Block for Pharma & Agro
The chemical industry relies heavily on specialized intermediates that act as foundational blocks for creating complex and high-value products. Among these, 3-Chloro-4-fluorotoluene, bearing the CAS number 1513-25-3, has emerged as a compound of significant importance, particularly within the pharmaceutical and agrochemical sectors. This article aims to shed light on its chemical nature, its indispensable role in these industries, and the advantages of procuring it from established manufacturers.
Chemical Identity and Properties
3-Chloro-4-fluorotoluene is characterized by its molecular formula C7H6ClF and a molecular weight of 144.57400. Visually, it presents as a colorless to light yellow transparent liquid. Its physical attributes are key to its utility: a boiling point of 167°C and a flash point of 45.4°C indicate its classification as a flammable liquid, necessitating careful handling. The density is recorded at 1.358 g/cm³. The presence of both chlorine and fluorine atoms in its aromatic structure makes it highly reactive and amenable to a wide array of synthetic transformations. This makes it a sought-after intermediate for intricate synthesis projects.
Applications in Pharmaceutical Intermediates
In the realm of pharmaceuticals, the demand for sophisticated building blocks is ever-increasing. 3-Chloro-4-fluorotoluene plays a pivotal role as a precursor in the synthesis of Active Pharmaceutical Ingredients (APIs). Its structure allows chemists to introduce specific functionalities that can modulate the pharmacological activity, metabolic stability, and bioavailability of drug candidates. Companies focused on pharmaceutical intermediates in China often leverage this compound to develop novel therapeutics. The consistent quality and purity of this intermediate are crucial for ensuring the efficacy and safety of the final pharmaceutical products. For anyone involved in the synthesis of new drugs, understanding the role of this compound is key.
Contribution to Agrochemical Synthesis
Beyond medicine, 3-Chloro-4-fluorotoluene is equally vital in the agrochemical industry. It serves as a foundational element in the creation of various crop protection agents, such as herbicides and insecticides. The targeted activity of these agrochemicals is often a result of the specific chemical structures built using intermediates like this. By modifying its core structure, manufacturers can develop pesticides that are more effective against specific pests while potentially minimizing environmental impact. Sourcing agrochemical intermediates from reliable manufacturers ensures that these vital products meet quality standards necessary for agricultural productivity.
Why Choose 3-Chloro-4-fluorotoluene?
The growing demand for fluorinated organic compounds in various advanced applications makes 3-Chloro-4-fluorotoluene a compound of interest. Its consistent purity (≥98%) and low water content (≤0.5%) make it a dependable choice for precision chemistry. When sourced from experienced manufacturers in China, it represents a balance of quality and cost-effectiveness, facilitating both research and large-scale production. Proper storage and handling are advised due to its flammable nature, ensuring its integrity from supply to application.
In summary, 3-Chloro-4-fluorotoluene is more than just a chemical; it is a gateway to innovation in pharmaceuticals and agrochemicals, enabling the creation of products that impact health and agriculture globally. Its strategic importance as an organic intermediate highlights the capabilities of chemical manufacturers in meeting complex industrial demands.
Perspectives & Insights
Agile Reader One
“Applications in Pharmaceutical Intermediates In the realm of pharmaceuticals, the demand for sophisticated building blocks is ever-increasing.”
Logic Vision Labs
“3-Chloro-4-fluorotoluene plays a pivotal role as a precursor in the synthesis of Active Pharmaceutical Ingredients (APIs).”
Molecule Origin 88
“Its structure allows chemists to introduce specific functionalities that can modulate the pharmacological activity, metabolic stability, and bioavailability of drug candidates.”