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3-Ethyl-3-(phenylmethoxymethyl)oxetane CAS 18933-99-8

3-Ethyl-3-(phenylmethoxymethyl)oxetane CAS 18933-99-8

Product Description

Product Identification

Chemical name: 3-Ethyl-3-(phenylmethoxymethyl)oxetane

Synonyms: 3-((Benzyloxy)methyl)-3-ethyloxetane

CAS No.: 18933-99-8

Molecular formula: C13H18O2

Molecular weight: 106.28

Boiling point: 280.4 °C @ 760 Torr

Density: 1.017 g/mL

 

Specification

Appearance: Colorless transparent liquid

Purity: 98.0%min by HPLC

Moisture: 0.50%max

 

Package

Regular Packing: N.W 20kg/200kg iron drum lined with plastic

Sample Packing: 0.1kg-1kg plastic bottle

 

Transport Information

Classification: 

Non-dangerous goods

HS Code: 2932999099

 

Status & Application

Status: Industrial scale

Application: 

Used for preparing thermal curing ink-jet ink.

Oxybutane compounds are important raw materials for high-end cationic light-curing products, and their application research began in 2008, when Japan's East Asia Synthesis Company disclosed a series of oxybutane-based monomers and zwitterions in wo2008110512 patent, which have the advantages of low viscosity, small curing shrinkage, and fast curing speed. In recent years, research on oxybutane-type monomers has gradually attracted industry attention, such as igarashi et al. in us5674992 patent discloses curable cationic coating compositions, which contain epoxy (such as ethylene oxide) compounds and oxybutane compounds, the composition does not contain solvents, and the viscosity can be adjusted by adjusting the ratio of components; takami et al. in us5721020 patent discloses a UV-curable coating composition for can packaging containing a cationically polymerizable compound, a compound with at least one oxetane group, a cationic initiator, and an additive that can be used on a variety of substrates. These oxetane compounds generally have low viscosity, low toxicity, fast polymerization speed, excellent thermal stability and mechanical properties, etc., and can be applied to cationic curing systems to accelerate the polymerization speed and improve the performance of the cured products.

 

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