T-Butylmonoperoxymaleate CAS 1931-62-0
T-Butylmonoperoxymaleate CAS 1931-62-0 With Big Discount
- Appearance:Liquid
- Purity:99.8%
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Name: T-Butylmonoperoxymaleate
CAS: 1931-62-0
MOQ: 1KG
Directory Guidance on T-Butylmonoperoxymaleate
Product Introduction:
T-Butylmonoperoxymaleate is an important organic peroxide, with the chemical name 2-Propeneperoxoic acid, 3-carboy-1- (1,1-diethylethyl) ester. Its CAS number is 1931-62-0, molecular formula is C8H12O5, and molecular weight is 188.18. This compound has a wide range of applications in industry, especially in polymerization reactions and curing processes.
As an ester organic peroxide, T-Butylmonoperoxymaleate appears as a colorless or pale yellow liquid with high thermal stability and explosive affinity. It is insoluble in water, but can dissolve in most organic solvents. This characteristic makes it an effective catalyst or initiator in chemical reactions. Special attention should be paid to safety during storage and use, as it is a flammable compound and should be kept away from open flames and high temperatures.
One of the main characteristics of T-Butylmonoperoxymaleate is its ability to decompose and generate free radicals under high temperature or external triggering conditions. These free radicals play an important role in many organic synthesis reactions, especially in polymerization reactions, which can effectively trigger the growth of polymer chains. The free radical generation process of T-Butylmonoperoxymaleate makes it a highly effective initiator, widely used in the synthesis of polymers and other organic chemicals.
However, due to the presence of peroxide groups in T-Butylmonoperoxymaleate, extra caution is required when using it. Peroxides have strong oxidizing and unstable properties, and are prone to decomposition at high temperatures, vibrations, or in contact with certain substances, releasing heat and gas. Therefore, safety regulations should be strictly followed during storage and transportation, avoiding contact with reducing agents or flammable substances to prevent danger.
In terms of safety and storage, T-Butylmonoperoxymaleate needs to be processed and stored under specific conditions. It should be stored in a cool and ventilated place below 25 ° C to prevent delamination. Before using the product, it should be gently shaken and to prevent solidification, the minimum storage temperature should be maintained at -10 ° C or above. In addition, due to its flammable and organic peroxide properties, strict safety operating procedures and laws and regulations need to be followed.
Basic Info:
Chemical Structure
Melting point | 130-131 °C |
Boiling point | 260.8±42.0 °C(Predicted) |
density | 1.185±0.06 g/cm3(Predicted) |
vapor pressure | 0.147Pa at 25℃ |
Nature and Specifications:
Item | Specification |
Product Name | T-Butylmonoperoxymaleate |
CAS No. | 1931-62-0 |
Appearance | Liquid |
Shelf Life | 2 years |
Packing | As your requirements |
storage temp. | Flammables area |
pka | 2.38±0.25(Predicted) |
Water Solubility | 642mg/L at 20℃ |
LogP | 0.9 at 30℃ |
What Are The Uses of T-Butylmonoperoxymaleate
Product service:
T-Butylmonoperoxymaleate (2-propene peracid-3-carbonyl-1- (1,1-diethyl ethyl) ester) is a highly active organic peroxide, and its unique structure and chemical properties make it widely used in multiple fields.
1. Initiators in polymerization reactions
One of the main uses of T-Butylmonoperoxymaleate is as a free radical initiator, widely used in organic polymerization reactions. In polymerization reactions, it can initiate chain reactions by releasing free radicals, which is crucial for producing various types of polymers. It is particularly suitable for synthesizing polymers such as polyolefins, polystyrene, acrylic acid, and their derivatives. Due to the presence of peroxide groups in the compound, its thermal instability allows it to decompose into free radicals at lower temperatures (typically 70-100 ° C), providing favorable starting conditions for polymerization reactions.
2. Initiator of crosslinking reaction
In addition to its application in polymerization reactions, T-Butylmonoperoxymaleate can also be used as a crosslinking agent. In the manufacturing process of certain resins and plastic materials, it can trigger intermolecular cross-linking reactions, enhancing the mechanical properties, thermal stability, and solvent resistance of the materials. For example, in the preparation of thermosetting resins such as epoxy resins and phenolic resins, it can promote cross-linking between molecular chains, giving the final product higher structural stability and durability.
3. Oxidants in organic synthesis
T-Butylmonoperoxymaleate can also be used as an oxidant in various organic synthesis reactions. Peroxyacetic acid groups enable them to provide oxygen atoms in chemical reactions and participate in various oxidation reactions. In some catalytic reactions, it is used to promote the oxidation or peroxidation of certain organic compounds, especially in the preparation of high-value chemicals and fine chemical products. For example, in the synthesis of certain esters, aldehydes, and ketones, T-Butylmoperoxygenate can efficiently promote the reaction as an oxidant.
4. Free radical polymerization modification and synthesis of functional materials
In the field of materials science, this compound can be used to synthesize polymer materials with specific functions. For example, it can be used to synthesize polymers with special properties such as UV resistance and oxidation resistance. By controlling the reaction conditions, T-Butylmonoperoxymaleate can introduce functional groups into polymer molecular chains to manufacture high-performance composite materials or coatings, which are widely used in the automotive industry, electronic products, and the preparation of high-performance coatings.
5. Synthesis of environmentally friendly chemicals
Due to the strong oxidizing properties of peroxyacid compounds, their applications in environmental protection and green chemistry are gradually increasing. T-Butylmonoperoxymaleate can be used as an environmentally friendly reactant to replace some traditional highly polluting chemicals, especially showing great potential in green chemistry synthesis. By reducing the production of toxic by-products, it helps to lower the impact on the environment during the production process.
In general, T-Butylmonoperoxymaleate is a widely used and functionally diverse chemical, especially playing an important role in polymerization, cross-linking, oxidation, and organic synthesis. It can not only effectively initiate polymerization reactions and promote polymer synthesis, but also be used for material modification, synthesis of functionalized polymers, and production of environmentally friendly chemicals. Although the compound has strong chemical activity during use, its potential for application still makes it occupy an important position in the chemical industry.
- Certificate Of Analysis (COA)
- Material Safety Data Sheet (MSDS)
- Route of synthesis (ROS)
- Method of Aanlysis (MOA)
- Nuclear Magnetic Resonance (NMR)
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