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Home > Encyclopedia > Butanedioic acid, polymer with 2,2-dimethyl-1,3-propanediol

Butanedioic acid, polymer with 2,2-dimethyl-1,3-propanediol

Butanedioic acid, polymer with 2,2-dimethyl-1,3-propanediol structure

Butanedioic acid, polymer with 2,2-dimethyl-1,3-propanediol 

structure
  • CAS No:

    28257-92-3

  • Formula:

    (C5H12O2.C4H6O4)x

  • Chemical Name:

    Butanedioic acid, polymer with 2,2-dimethyl-1,3-propanediol

  • Synonyms:

    Butanedioic acid,polymer with 2,2-dimethyl-1,3-propanediol;1,3-Propanediol,2,2-dimethyl-,polymer with butanedioic acid;2,2-Dimethyl-1,3-propanediol-succinic acid polyester;2,2-Dimethyl-1,3-propanediol-succinic acid copolymer;Neopentyl glycol-succinic acid copolymer;2,2-Dimethyl-1,3-propylene glycol-succinic acid copolymer;Poly(2,2-dimethyl-1,3-propylene succinate);1,4-Butanedioic acid-neopentyl glycol copolymer;212555-40-3

Description

Butanedioic acid, polymer with 2,2-dimethyl-1, 3-Propanediol, two seemingly ordinary chemical substances, catalyzed by chemical reactions, can be combined into an extraordinary polymer compound. This polymer is not only unique in the chemical field because of its excellent thermal stability and mechanical properties, but also become a hot spot in many fields because of its wide application prospects. First, let's delve into the physical properties of this polymer. This polymer usually appears in a transparent or translucent solid form, like a crystal clear gem, exuding the beauty of science and technology and industry. Its excellent chemical resistance makes it able to maintain a stable structure in the face of various corrosive media and is not easy to be eroded or decomposed. At the same time, its wear resistance is also excellent, even under a long period of high intensity friction, it can keep the surface smooth as before, showing extraordinary durability. The reason why this polymer can achieve such excellent results in physical properties is inseparable from its unique molecular structure. At the microscopic level, the molecular units of Butanedioic acid, polymer with 2,2-dimethyl-1,3-propanediol are closely linked by chemical bonds, forming a dense and ordered network structure. This structure not only gives the polymer strong mechanical support, but also makes it excellent in terms of thermal stability. Even at high temperatures, the polymer is able to maintain stable chemical properties and physical forms, and is not prone to decomposition or melting. It is based on these excellent physical properties that this polymer has been widely used in many fields. In the packaging industry, due to its chemical resistance and wear resistance, this polymer is used to make a variety of durable packaging materials, such as food packaging bags, pharmaceutical packaging bottles, etc. In the construction industry, this polymer is also used as a high-performance building material, such as waterproof coatings, heat insulation panels, etc. In addition, in the electronics, automotive, aerospace and other fields, this polymer is also favored for its unique physical properties and functionality. It is worth mentioning that with the continuous progress of science and technology and the continuous improvement of people's requirements for material properties, the research and application of this polymer are also continuing to deepen. By changing the molecular structure of polymers and introducing new functional groups, scientists are constantly improving their performance and application range. For example, by introducing hydrophilic groups, the polymer can be made to have better hygroscopicity and biocompatibility; By introducing conductive groups, the polymer can be more widely used in the field of electronics.

Butanedioic acid, polymer with 2,2-dimethyl-1,3-propanediol Basic Attributes

222.23600

222.11033829

DTXSID6094437

Characteristics

115.06000

-0.06700

321.3ºC at 760 mmHg

122.1ºC

2.42E-05mmHg at 25°C

Butanedioic acid, polymer with 2,2-dimethyl-1,3-propanediol Use and Manufacturing

Uses

Butanedioic acid, polymer with 2,2-dimethyl-1, 3-Propanediol, the two compounds play an important role in the chemical industry, and the polymer formed after their combination is widely used in plastics, coatings, adhesives, fibers and other industrial fields. It provides a strong support for all walks of life in modern society. The reason why this polymer can be used in such a wide range of applications is mainly due to a series of excellent physical and chemical properties. First, let's delve into its application in the plastics industry. Butanedioic acid, polymer with 2,2-dimethyl-1, 3-Propanediol Polymerizes to form a material with extremely high heat resistance and mechanical strength. This property makes it ideal for the production of high-performance engineering plastics and composites. In high temperature environments, many traditional plastics tend to lose their original strength and stability, but this polymer can maintain its excellent performance, ensuring that the product can still be stable in high strength, high temperature working environment. For example, in the field of automotive manufacturing, this polymer is often used in the manufacture of engine parts, transmission systems and other key components, providing a strong guarantee for the safety and reliability of vehicles. In the coatings industry, this polymer also shows its unique charm. As a coating material, it provides excellent adhesion and wear resistance, making the coating more robust and durable. Whether it is automotive, industrial or architectural paint, this polymer can significantly improve the performance and service life of the coating. At the same time, its environmental protection and easy processing also make its application in the coating industry more extensive and convenient. In addition, in the field of medicine and cosmetics, this polymer also plays an important role. As a thickener and stabilizer in the formulation, it can improve the performance and application effect of the product. In the field of medicine, this polymer is often used to make topical drugs such as creams and gels, and its excellent thickening and stability can ensure that the drug is evenly distributed on the skin and has a lasting effect. In the field of cosmetics, it is widely used in skin care products such as creams and lotions to help the product form a stable texture and touch, and improve the user's experience. To illustrate the superiority of this polymer more specifically, we can cite some empirical research data. According to relevant studies, when tested under the same conditions, automotive paint using this polymer as a coating material has higher wear resistance and anti-aging properties than traditional coatings. At the same time, in the field of pharmaceutical applications, this polymer has also shown good biocompatibility and stability, to ensure the safety and effectiveness of drugs during storage and use.

Butanedioic acid, polymer with 2,2-dimethyl-1,3-propanediol: INACTIVE|XU - indicates a substance exempt from reporting under the Chemical Data Reporting Rule, (40 CFR 711).

Computed Properties

Molecular Weight:222.24
Hydrogen Bond Donor Count:4
Hydrogen Bond Acceptor Count:6
Rotatable Bond Count:5
Exact Mass:222.11033829
Monoisotopic Mass:222.11033829
Topological Polar Surface Area:115
Heavy Atom Count:15
Complexity:137
Covalently-Bonded Unit Count:2
Compound Is Canonicalized:Yes

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