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Dioxybis(1-methylpropylidene) hydroperoxide, also known as dicumyl peroxide, is a highly reactive chemical compound characterized by an oxygen-oxygen bond and a hydroperoxide group. It is primarily used as a polymerization initiator and a cross-linking agent in the production of various plastics and rubber products. Due to its high reactivity and instability, it requires careful handling, storage, and strict regulation to ensure the safety of workers and the environment.

126-76-1

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126-76-1 Usage

Uses

Used in Plastics and Rubber Industry:
Dioxybis(1-methylpropylidene) hydroperoxide is used as a polymerization initiator for [initiating the polymerization process of various plastics and rubber products] because of its high reactivity and ability to initiate polymerization processes.
Used in Cross-linking Applications:
Dioxybis(1-methylpropylidene) hydroperoxide is used as a cross-linking agent for [enhancing the strength and durability of plastics and rubber products] by forming covalent bonds between polymer chains.
Due to its potential hazards, the use of dioxybis(1-methylpropylidene) hydroperoxide is strictly regulated, and precautions must be taken to ensure the safety of workers and the environment in its production and use.

Check Digit Verification of cas no

The CAS Registry Mumber 126-76-1 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 1,2 and 6 respectively; the second part has 2 digits, 7 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 126-76:
(5*1)+(4*2)+(3*6)+(2*7)+(1*6)=51
51 % 10 = 1
So 126-76-1 is a valid CAS Registry Number.
InChI:InChI=1/C8H18O6/c1-5-7(3)9-11-13-14-12-10-8(4)6-2/h7-8H,5-6H2,1-4H3

126-76-1SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 17, 2017

Revision Date: Aug 17, 2017

1.Identification

1.1 GHS Product identifier

Product name 3,6-dimethyl-3,6-dihydroperoxy-4,5-dioxaoctane

1.2 Other means of identification

Product number -
Other names BPO

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:126-76-1 SDS

126-76-1Downstream Products

126-76-1Relevant academic research and scientific papers

ONLINE CONTINUOUS FLOW PROCESS FOR THE SYNTHESIS OF ORGANIC PEROXIDES USING HYDROGEN PEROXIDE AS RAW MATERIAL

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Paragraph 0293, (2020/06/29)

An online continuous flow production process for directly preparing organic peroxides by using hydrogen peroxide as a raw material. This production process uses hydrogen peroxide, catalyst, and an oxidation substrate as a raw material. Substrate will be turned to designated peroxides sequentially through oxidation and workup. This process is performed in a plug-and-produce integrated continuous flow reactor, and the raw materials are continuously fed to the reactor. So, specified peroxide can be continuously obtained at the outlet of the plug-and-produce integrated continuous flow reactor.

Over oxydone synthetic method (by machine translation)

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Paragraph 0063-0064; 0065-0066; 0067-0068;, (2019/03/08)

The invention belongs to the technical field of chemical synthesis, in particular relates to an over-oxydone synthetic method. Added to the organic solvent in the organic compounds, hydrogen peroxide and polyvinyl alcohol compound amino acid catalyst to stir dehydration reaction synthesis over oxydone; the polyvinyl alcohol composite amino acid catalyst by spherical polyvinyl alcohol precursor with the composite amino acid polymerization. The invention of peroxides in the production process, avoiding the use with the corrosive effect of chemical raw materials, optimization of the peroxide synthesis process, reduces the industrial production process of sodium chloride, sodium sulfate waste discharge. (by machine translation)

Method for preparing ketone peroxide by ferrite compound as catalyst

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Paragraph 0030, (2019/01/21)

The invention discloses a method for preparing ketone peroxide by a ferrite compound as a catalyst. The method comprises that ketone and hydrogen peroxide undergo a reaction in the presence of a ferric oxide as a catalyst and the hydrogen peroxide is finally added when the temperature is raised to the reaction temperature. The ferric oxide replaces a titanium-silicon molecular sieve catalyst so that the cost of the catalyst is significantly reduced and the catalyst is easy to recover. The reaction conditions are low, the reaction conversion rate and selectivity are high under mild reaction conditions, the application range is wide, and the method can be used for production of a variety of ketones and its ketone peroxides and has very good application prospects.

The metal organic framework material as the methyl ethyl ketone peroxide catalyst preparation method (by machine translation)

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Paragraph 0020-0022, (2019/06/13)

The invention provides a defect using complex the zirconium is organic frame material catalytic preparation of methyl ethyl ketone peroxide method, is to butanone and hydrogen peroxide as the raw material, the metal-organic framework material Uio - 66 as catalyst, phthalic acid n-butyl as the thinner, stirring at constant temperature after the reaction, the separating, the oil phase is methyl ethyl ketone peroxide. Because of the heterogeneous catalyst, catalyst and reaction material is relatively easy separation, reaction continuous and stable, high active oxygen content of the product, at the same time avoids the use of strong acid catalyst such as sulfuric acid corrosion of the apparatus, and has high economic and environmental benefits. (by machine translation)

Method used for preparing methylethyl ketone peroxide by taking acidic ion exchange resin as catalyst

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Paragraph 0016, (2016/12/16)

The invention provides a method used for preparing methylethyl ketone peroxide by taking an acidic ion exchange resin as a catalyst. According to the method, butanone and hydrogen peroxide are taken as raw materials, the acidic ion exchange resin is taken as the catalyst, dibutyl phthalate is taken as a diluent, after constant temperature stirring reaction, an obtained mixture is allowed to stand for separation, and an obtained oil phase is methylethyl ketone peroxide. According to the method, the heterogeneous catalyst is adopted, so that the catalyst and the reaction materials can be separated easily, and the catalyst can be recycled for a plurality of times; reaction is stable, the temperature is increased slowly, and reaction is continuous and stable; product active oxygen content is 13%, and economic value is high; application of strong such as sulfuric acid is avoided, so that corrosion on equipment is less, environment pollution is not caused, and environmental benefit is relatively high.

Multi-sulfonic-acid-group acidic functionalized ionic liquid and preparation method thereof

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Paragraph 0067, (2017/01/02)

The invention provides multi-sulfonic-acid-group acidic functionalized ionic liquid, a preparation method thereof and a method of utilizing the ionic liquid to prepare organic peroxide.Each cation of the ionic liquid has two or three alkyl sulfonic acid side chains with 3 or 3 carbon atoms, a matched anion is hydrogen sulfate radical, and the ionic liquid is of an open straight chain structure.The preparation method of the organic peroxide includes: sequentially adding the ionic liquid and hydrogen peroxide into a reaction kettle, fully stirring at room temperature to homogeneous phase, adding cyclohexanone or methyl ethyl ketone, and finishing after reaction at room temperature for 3-8 h; separating a product out of a reaction system obtained through suction filtering or phase separation, sequentially performing water washing or saline washing to obtain water-phase liquid and a crude product, and drying the crude product under vacuum condition to obtain the organic peroxide.The preparation method has the advantages of mild reaction condition, high yield, high product purity and easiness in product separation.

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