This article provides a comprehensive guide to Thanox 1790, a chemical substance with the CAS number 40601-76-1. It delves into the properties, uses, safety considerations, and other important aspects of this compound. The guide aims to answer all the questions one might have about Thanox 1790, making it an essential resource for researchers, scientists, and anyone interested in the chemical's characteristics and applications.
Thanox 1790, also known as CAS 40601-76-1, is a chemical compound that has garnered attention in various scientific fields due to its unique properties. This guide will explore the origins, physical and chemical characteristics, and potential applications of Thanox 1790. By the end of this article, readers will have a thorough understanding of this intriguing substance.
Thanox 1790 is a synthetic organic compound that belongs to the class of heterocyclic compounds. It is characterized by its molecular formula and structural features, which contribute to its distinct properties. The compound is typically a solid at room temperature and has a melting point of approximately 150°C. Its solubility in various solvents, such as water and organic solvents, is also a crucial aspect of its chemical behavior.
The molecular structure of Thanox 1790 is complex, featuring a benzene ring with a nitrogen atom attached to one of the carbon atoms. This nitrogen atom is further substituted with a methyl group, which affects the compound's reactivity and stability. The presence of the nitrogen atom also makes Thanox 1790 a potential precursor for the synthesis of various pharmaceuticals and agrochemicals.
Thanox 1790 has found applications in several industries, primarily due to its unique chemical properties. One of the most significant uses of this compound is in the pharmaceutical industry, where it serves as a starting material for the synthesis of novel drugs. Its ability to undergo various chemical transformations makes it a versatile building block for drug development.
In the agrochemical sector, Thanox 1790 is used as an intermediate in the production of herbicides and pesticides. Its effectiveness in controlling plant growth and pests makes it a valuable component in agricultural formulations. Additionally, the compound has potential applications in the field of material science, where it can be used to develop new polymers and coatings.
As with any chemical compound, safety is a paramount concern when dealing with Thanox 1790. The compound is classified as hazardous due to its potential to cause irritation to the skin, eyes, and respiratory system. Proper handling and storage procedures are essential to minimize the risk of exposure.
Workers handling Thanox 1790 should wear appropriate personal protective equipment, such as gloves, goggles, and lab coats. The compound should be stored in a cool, dry place, away from direct sunlight and incompatible materials. In case of accidental exposure, immediate medical attention should be sought.
The regulatory status of Thanox 1790 varies by country and is subject to change. In many regions, the compound is subject to strict regulations regarding its production, distribution, and use. These regulations are designed to protect human health and the environment.
It is crucial for manufacturers and users of Thanox 1790 to stay informed about the latest regulatory updates and ensure compliance with all applicable laws and guidelines. Failure to do so can result in legal consequences and reputational damage.
The Ultimate Guide to Thanox 1790 CAS 40601-76-1: Everything You've Always Wanted to Know serves as an invaluable resource for anyone interested in this chemical compound. By covering its chemical properties, applications, safety considerations, and regulatory status, this guide provides a comprehensive overview of Thanox 1790. As research and development continue to advance, the importance of understanding this compound will only grow, making this guide a must-read for scientists, researchers, and industry professionals alike.
Keywords: Thanox 1790, CAS 40601-76-1, chemical properties, applications, safety considerations, regulatory status