Dayang Chem (Hangzhou) Co., Ltd. is one of the leading manufacturers and suppliers of 4-isobutylphenyl-4'-methylphenyliodonium hexafluorophosphate cas 344562-80-7 in China, specialized in providing high quality customized chemicals. Welcome to wholesale bulk 4-isobutylphenyl-4'-methylphenyliodonium hexafluorophosphate cas 344562-80-7 made in China here and get pricelist from our factory. Good service and reasonable price are available.
Product Introduction:
Chemical specifications
|
Appearance |
Yellow to brownish yellow liquid |
|
Assay |
75.0%2% |
|
Purity |
98.0% min |
|
Chromatic value |
10 max |
|
Viscosity(30) |
450-650 mm2 /s |
|
PH Value |
5-6 |
|
Water content |
1000ppm max |
We are happy to supply the most current specifications and analysis report if needed.
Applications
It is mainly used for UV coatings, UV adhesives, UV inks, Photoresist. The product has the characteristics of high photoinitiating activity, fast curing speed, good surface drying, no yellowing, no migration, and no odor. As a photoinitiator, Irgacure 250 could be used to synthesize the neat photosensitive resin based on FRPCP (named PRFRPCP). This photoinitiator absorbs in the wavelength range of 275?325 nm. The commercial cationic photoinitiators Irgacure 250 can be considered suitable for use with 365 nm UV LEDs, while their performance with medium-pressure mercury lamps can be expected to be poor.
Packaging & Shipping
Package: 25kg/drum
Transport information: Non Dangerous Good
Documentation: Full compliance package (SDS, COA)
We ship globally via DHL, FedEx, UPS, air freight sea freight, with full customs support and documentation, and specialized packaging for hazardous materials that comply with IATA/IMDG standards. Additionally, we offer real-time tracking and insurance services to ensure safe delivery.

Payment method
Paypal ; Wire Transfer/Telegraphic Transfer; L/C at sight
Spectrum

Related Articles
[1] Jinhuan Li. "Synthesis and characterization of reinforced acrylate photosensitive resin by 2-hydroxyethyl methacrylate-functionalized graphene nanosheets for 3D printing." Journal of Materials Science 53 3 (2017): 1874C1886.
[2] Damian Nowak. "Photopolymerization of hybrid monomers: Part I: Comparison of the performance of selected photoinitiators in cationic and free-radical polymerization of hybrid monomers." Polymer Testing 64 1 (2017): 313C320.
[3] Cian Cummins. "Self-Assembled Nanofeatures in Complex Three-Dimensional Topographies via Nanoimprint and Block Copolymer Lithography Methods." ACS Omega 2 8 (2017): 4417C4423.


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