Interesting facts
Interesting Facts about Tris[2-chloro-1-(chloromethyl)ethyl] Phosphate
Tris[2-chloro-1-(chloromethyl)ethyl] phosphate is a fascinating organophosphate compound that is often discussed in the context of its applications and environmental significance. Here are some noteworthy points:
- Fire Retardant: This compound is commonly used as a fire retardant in various materials, including plastics, textiles, and rubber. Its ability to directly inhibit flame spread makes it a vital component in enhancing safety in consumer products.
- Chemical Structure: The unique structure of tris[2-chloro-1-(chloromethyl)ethyl] phosphate enables it to interact effectively with other chemical substances. The presence of chlorine atoms contributes to its reactivity and effectiveness as a flame retardant.
- Environmental Considerations: As with many organophosphate compounds, there are ongoing discussions regarding the environmental impact and biodegradability of tris[2-chloro-1-(chloromethyl)ethyl] phosphate. The compound's potential as a pollutant necessitates careful management and research.
- Health Concerns: Researchers continue to investigate the potential health risks associated with exposure to organophosphates, including tris[2-chloro-1-(chloromethyl)ethyl] phosphate, particularly regarding its toxicity and long-term effects on human health.
- Applications Beyond Industry: Beyond its primary use as a fire retardant, this compound's properties make it a candidate for research into various chemical processes, both in academic circles and industrial applications.
In summary, tris[2-chloro-1-(chloromethyl)ethyl] phosphate is more than just a chemical compound; it represents the intersection of safety, environmental science, and health research. As we explore its properties and effects further, we can gain a more comprehensive understanding of its role in both industry and scientific inquiry.
Synonyms
13674-87-8
TDCPP
Tris(1,3-dichloro-2-propyl)phosphate
TRIS(1,3-DICHLORO-2-PROPYL) PHOSPHATE
Tris(1,3-dichloroisopropyl)phosphate
Emulsion 212
Fyrol FR-2
CRP (fireproofing agent)
1,3-Dichloro-2-propanol phosphate (3:1)
PF 38
Tris(2-chloro-1-(chloromethyl)ethyl) phosphate
Tris(1-chloromethyl-2-chloroethyl)phosphate
DTXSID9026261
PF 38/3
Tri(beta,beta'-dichloroisopropyl)phosphate
B1PRV4G0T0
Tris(2-chloro-1-(chloromethyl)ethyl)phosphate
Tris[2-chloro-1-(chloromethyl)ethyl] phosphate
Fosforan troj-(1,3-dwuchloroizopropylowy)
Phosphoric acid tris(1,3-dichloro-2-propyl)ester
DTXCID206261
TDCPP compound
237-159-2
Fyrol FR 2
tris(1,3-dichloropropan-2-yl) phosphate
Phosphoric Acid Tris(1,3-dichloro-2-propyl) Ester
TDCIPP
2-Propanol, 1,3-dichloro-, 2,2',2''-phosphate
2-Propanol, 1,3-dichloro-, phosphate (3:1)
MFCD00083121
Tris-(1,3-dichloro-2-propyl)phosphate
C9H15Cl6O4P
CAS-13674-87-8
CCRIS 6284
HSDB 4364
Tris(1,3-dichloro-2-propyl) phosphate, 95%
EINECS 237-159-2
UNII-B1PRV4G0T0
BRN 1715458
Fosforan troj-(1,3-dwuchloroizopropylowy) [Polish]
TDCPP (Standard)
TDCPP [MI]
EC 237-159-2
TDCPP, analytical standard
3-01-00-01473 (Beilstein Handbook Reference)
SCHEMBL333198
orb1301415
CHEMBL3182032
CHEBI:143729
Tox21_202166
Tox21_300194
AKOS015856734
Tris-(1,3-dichloroisopropyl) phosphate Standard 50 microg/mL in Acetonitrile
CS-8011
FT62532
HY-108712R
s12389
NCGC00247923-01
NCGC00247923-02
NCGC00254047-01
NCGC00259715-01
DA-68014
HY-108712
NS00010388
P0269
Tri(.beta.,.beta.'-dichloroisopropyl)phosphate
Tris[2-chloro-1-(chloromethyl)ethyl] phosphate #
Q2454085
TRIS(1,3-DICHLORO-2-PROPYL)PHOSPHATE [HSDB]
phosphoric acid tris-(2-chloro-1-chloromethyl-ethyl) ester
InChI=1/C9H15Cl6O4P/c10-1-7(2-11)17-20(16,18-8(3-12)4-13)19-9(5-14)6-15/h7-9H,1-6H
Solubility of Tris[2-chloro-1-(chloromethyl)ethyl] Phosphate
Tris[2-chloro-1-(chloromethyl)ethyl] phosphate, often abbreviated as TCEP, is a compound of particular interest due to its unique properties. When examining its solubility, several factors come into play:
As a result, while TCEP is a versatile tool in various applications, its solubility profile suggests careful consideration of the solvent system used in experiments or applications. In conclusion, "to fully utilize its potential, one must acknowledge the complexities surrounding its solubility."