Name |
|
2,2,4,4,6,6-Hexahydro-2,2,4,4,6,6-hexaphenoxytriazatriphosphorine |
Synonyms |
|
Diphenoxyphosphazene cyclic trimer; FP 100; Hexaphenoxy-1,3,5,2,4,6-triazatriphosphorine; Hexaphenoxycyclotriphosphazatriene; Hexaphenoxycyclotriphosphazene; NSC 117810; Rabitle FP 100; Trimeric bis(phenoxy)phosphonitrile |
Molecular Formula |
|
C36H30N3O6P3 |
Molecular Weight |
|
693.56 |
CAS Registry Number |
|
1184-10-7 |
|
Properties |
|
Density |
|
1.31 |
Melting point |
|
116 ºC |
|
Phenoxycycloposphazene Chemical Properties |
Melting point |
116℃ |
Boiling point |
280°C/0.1mmHg(lit.) |
density |
1.31 |
λmax |
261nm(CHCl3)(lit.) |
Product Name: |
Phenoxycycloposphazene |
Synonyms: |
HPCTP;Phenoxycycloposphazene;Polyphenoxy phosphazene;2,2,4,4,6,6-Hexahydro-2,2,4,4,6,6-hexaphenoxytriazatriphosphorine;Diphenoxyphosphazene cyclic trimer;FP 100;Hexaphenoxy-1,3,5,2,4,6-triazatriphosphorine;Hexaphenoxycyclotriphosphazatriene |
CAS: |
1184-10-7 |
MF: |
C36H30N3O6P3 |
MW: |
693.561183 |
EINECS: |
208-127-2 |
Product Categories: |
flame retardant;New type of halogen-free flame retardants, used in encapsulation Circuit board base material , resin etc.;-;fine chemicals |
Mol File: |
1184-10-7.mol |
|
Phenoxycyclotriphosphazene
A、 BASIC information
Name:Hexaphenoxycyclotriphosphazene;
HPCTP; Phenoxycyclotriphosphazene;PCPZ
CAS No.: 1184-10-7
Molecular Formula: C36H30N3O6P3
Molecular Weight: 693.57
Molecular Structure:
B、Application: This product is additive flame retardant. It is mainly used in PC and PC/ABS resins. It has good flame retardancy on epoxy resin, it can be used to make EMC for IC Packaging, it’s flame retardancy is better than Brominated flame retardant, can reach UL-94V0 grade. Oxygen index could reach 33.1%. When it is used in Benzoxazine Resin glass cloth laminate, if the HPCPZ mass fraction is 10%, the scale of burning could reach V-0 grade, the parallel breakdown voltage is 47KV. When it is used in Polythene, the LOI of final flame retardancy polythene could reach 30-33. After used in viscose spinning solution, we could get the flame retardant viscose fiber with oxygen index 25.3-26.7. If the added amount is 12% in PC/ ABS, it could pass the UL-94 V0 test. It also can be used in LED, powder coating, potting material and polymers.
C、Specification
ITEM |
Specification |
Appearance |
White Crystal |
Melting Point,℃ |
110~112 |
Volatile,% |
≤0.5 |
Ash,% |
≤0.05 |
Purity,% |
≥99.0 |
Chloridion content,mg/L |
≤20.0 |
D、Advantage of HPCTP
1、The main structure of HPCTP is P、N, this structure is very stable and it is halogen free product, after burning it will not produce smog secondary disaster.
2、The thermal stability of this product is very strong. It can endure high temperature above 250℃ in long time and it also can endure very low temperature. After using the HPCTP, the PC has great water proof, Oil proof and will not be eroded by organic solvent.
3、Flame retardance is good and the dosage of this product is very little, only 50% than BDP and RDP, the normally dosage is 8-10% but the flame retardance can reach FV-0.
4、Due to the stable structure and very little dosage, the quality of final product will not change.
5、The appearance of HPCTP is white crystal, and it no need to heat before using. It can be easily packing and delivery.
Package: 25kg PE Bag
Chemwill Asia co.,Ltd is one of the leading manufacturer in CHINA.
Our main production base is located in Xuzhou industry park. We produce a wide range of organics including Basic chemicals, Fine chemicals, Active pharmaceutical ingredients(APIs), Veterinary, Indole derivatives, Aromatics, Fluorine, Boronic acids, organocatalysts, chiral building blocks, heterocyclic compounds. We are certified both to the ISO 9001 and ISO 14001 Standards, have a safety management system in place.
Our R&D team masters core technology for process-design of target building block as well as Tailor-made fine chemicals. Our manufactory specialised in extreme temperature conditions (-100ºC to +300ºC), hydrogenations reaction under high pressure, suzuki coupling reaction, photochemical reaction, Mitsunobu reactions, enantioselective reactions and asymmetric synthesis.
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