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Catalog Number:
36263
CAS Number:
60565-88-0
Bis(4-methylphenyl)iodonium hexafluorophosphate
Purity:
≥ 98% (TLC)
Synonym(s):
Bis(p-tolyl)iodonium hexafluorophosphate
Hazmat
Documents
$272.40 /5G
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Product Information

Bis(4-methylphenyl)iodonium hexafluorophosphate is a versatile chemical compound widely recognized for its applications in photoinitiators and polymerization processes. This compound serves as an effective photoinitiator in UV-curable coatings and inks, enabling rapid curing and enhanced performance in various industrial applications. Its unique structure allows for efficient energy transfer upon exposure to UV light, making it an ideal choice for manufacturers looking to improve the speed and quality of their curing processes.

Additionally, Bis(4-methylphenyl)iodonium hexafluorophosphate is utilized in the synthesis of advanced materials, including high-performance polymers and composites. Researchers appreciate its stability and reactivity, which facilitate the development of innovative materials with tailored properties. The compound's ability to initiate polymerization at lower energy levels compared to similar compounds provides a significant advantage, making it a preferred choice for industries focused on efficiency and sustainability.

Synonyms
Bis(p-tolyl)iodonium hexafluorophosphate
CAS Number
60565-88-0
Purity
≥ 98% (TLC)
Molecular Formula
C14H14F6IP
Molecular Weight
454.13
MDL Number
MFCD06656584
PubChem ID
14008198
Melting Point
169 - 173 ?C
Appearance
Off-white to beige powder
Conditions
Store at RT
General Information
Synonyms
Bis(p-tolyl)iodonium hexafluorophosphate
CAS Number
60565-88-0
Purity
≥ 98% (TLC)
Molecular Formula
C14H14F6IP
Molecular Weight
454.13
MDL Number
MFCD06656584
PubChem ID
14008198
Melting Point
169 - 173 ?C
Appearance
Off-white to beige powder
Conditions
Store at RT
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
Yes
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Bis(4-methylphenyl)iodonium hexafluorophosphate is widely utilized in research focused on:

  • Photoinitiators in Polymer Chemistry: This compound serves as an effective photoinitiator in UV-curable coatings and adhesives, enabling rapid curing processes that enhance production efficiency in industries such as automotive and electronics.
  • Organic Synthesis: It plays a crucial role in organic synthesis, particularly in the formation of aryl and vinyl compounds, making it valuable for pharmaceutical and agrochemical research.
  • Electrochemical Applications: The compound is used in electrochemical studies, particularly in the development of advanced batteries and fuel cells, where its properties can improve charge transfer efficiency.
  • Material Science: Its unique properties make it useful in the development of high-performance materials, including those used in electronics and nanotechnology, where precision and stability are paramount.
  • Biomedical Research: In the field of biochemistry, it is explored for its potential in drug delivery systems, offering advantages in targeting and releasing therapeutic agents effectively.

Citations