Product
Supplier
Encyclopedia
Inquiry
Home > Encyclopedia > Asaprol

Asaprol

Asaprol structure

Asaprol 

structure
  • CAS No:

    516-18-7

  • Formula:

    C20H14CaO8S2

  • Chemical Name:

    Asaprol

  • Synonyms:

    Asaprol;UNII-OF366R8DYS;OF366R8DYS;Calcinaphthol;Abrastol;Asaprol [MI];beta-Naphthol-1-sulfonic acid Ca salt;Calcium beta-naphtho-alpha-monosulfonate;Calcium 2-hydroxynaphthalene-1-sulfonate;SCHEMBL3692997

Description

Asaprol is an organic sulfur compound with a molecular structure containing a thiol group and a benzene ring. It usually exists as a light yellow crystal or powder with a special odor.

Asaprol Basic Attributes

486.52836

485.976

OF366R8DYS

Characteristics

172

Asaprol Use and Manufacturing

Asaprol, a compound that plays an integral role in the pharmaceutical and chemical industries, is known as a generalist in chemistry because of its unique chemical properties and wide applicability. This compound plays a vital role in multiple fields, not only driving the advancement of industries such as medicine, coatings and agriculture, but also its potential applications are constantly being explored and deepened as technology continues to evolve. First of all, Asaprol is particularly significant in the field of medicine. Asa key intermediate in many pharmaceutical products, Asaprol plays a bridging role in the manufacture of medicines such as analgesics, anti-inflammatory drugs and antimicrobials. Through precise chemical synthesis, Asaprol can be converted into a variety of biologically active drug molecules that can effectively fight disease and improve the quality of human life. For example, studies have shown that Asaprol can improve synthetic efficiency and reduce production costs in the process of synthesizing new antibiotics, making important contributions to global public health. Secondly, the application of Asaprol in the coating and finishing industry cannot be ignored. It is widely used as an additive and plasticizer to significantly improve the properties of coatings, inks and plastics, such as increasing their flexibility, durability and stability. In addition, Asaprol is often used as an intermediate in dyes, pigments and optical brighteners, adding rich color and shine to our lives. In the field of industrial chemicals, Asaprol also plays an important role. It is used to make a wide range of surfactants, emulsifiers and cleaners that are used everywhere in everyday life, from washing supplies to industrial cleaning, from textile dyes to metal processing, and the presence of Asaprol makes these products better performing and safer to use. Finally, Asaprol has a wide range of applications in agricultural chemicals. Asa raw material or intermediate of insecticides and herbicides, Asaprol plays a role in agricultural production to protect crops and increase yields, which is of great significance for ensuring global food security and achieving sustainable agricultural development. Asaprol as a multi-purpose chemical product, its application in various fields has gone deep into all aspects of our lives. With the continuous progress of science and technology and the improvement of environmental protection and sustainability requirements, the potential of Asaprol will be further released, and its application prospects will be broader in the future, and it is expected to become an important bridge connecting chemical science and practical application.


Asaprol, a compound that plays an integral role in the pharmaceutical and chemical industries, is known as a generalist in chemistry because of its unique chemical properties and wide applicability. This compound plays a vital role in multiple fields, not only driving the advancement of industries such as medicine, coatings and agriculture, but also its potential applications are constantly being explored and deepened as technology continues to evolve. First of all, Asaprol is particularly significant in the field of medicine. Asa key intermediate in many pharmaceutical products, Asaprol plays a bridging role in the manufacture of medicines such as analgesics, anti-inflammatory drugs and antimicrobials. Through precise chemical synthesis, Asaprol can be converted into a variety of biologically active drug molecules that can effectively fight disease and improve the quality of human life. For example, studies have shown that Asaprol can improve synthetic efficiency and reduce production costs in the process of synthesizing new antibiotics, making important contributions to global public health. Secondly, the application of Asaprol in the coating and finishing industry cannot be ignored. It is widely used as an additive and plasticizer to significantly improve the properties of coatings, inks and plastics, such as increasing their flexibility, durability and stability. In addition, Asaprol is often used as an intermediate in dyes, pigments and optical brighteners, adding rich color and shine to our lives. In the field of industrial chemicals, Asaprol also plays an important role. It is used to make a wide range of surfactants, emulsifiers and cleaners that are used everywhere in everyday life, from washing supplies to industrial cleaning, from textile dyes to metal processing, and the presence of Asaprol makes these products better performing and safer to use. Finally, Asaprol has a wide range of applications in agricultural chemicals. Asa raw material or intermediate of insecticides and herbicides, Asaprol plays a role in agricultural production to protect crops and increase yields, which is of great significance for ensuring global food security and achieving sustainable agricultural development. Asaprol as a multi-purpose chemical product, its application in various fields has gone deep into all aspects of our lives. With the continuous progress of science and technology and the improvement of environmental protection and sustainability requirements, the potential of Asaprol will be further released, and its application prospects will be broader in the future, and it is expected to become an important bridge connecting chemical science and practical application.

Computed Properties

Molecular Weight:486.5
Hydrogen Bond Donor Count:2
Hydrogen Bond Acceptor Count:8
Exact Mass:485.9756006
Monoisotopic Mass:485.9756006
Topological Polar Surface Area:172
Heavy Atom Count:31
Complexity:306
Covalently-Bonded Unit Count:3
Compound Is Canonicalized:Yes

Scan the QR Code to Share

Feedback & Suggestions
Send Message

Thank you for your feedback. If you require further assistance, please contact us by email at info@echemi.com or call us at +86-532-55729510.