3,5,6-Trichloro-2-pyridinol
Names
[ CAS No. ]:
6515-38-4
[ Name ]:
3,5,6-Trichloro-2-pyridinol
[Synonym ]:
3,5,6-Trichlorpyridin-2-ol
TCP
3,5,6-Trichloro
MFCD00130269
TCP (VAN)
EINECS 229-405-2
2-Hydroxy-3,5,6-trichloropyridine
3,5,6-Trichloro-2-pyridinol
Ethiprole,Pestanal
3,5,6-trichloropyridin-2-ol
Trichloro pyridinone
Pyridinol,3,5,6-trichloro
3,5,6-Trichloro-2-(1H)pyridinone
3,5,6-TRICHLOROPYRIDINOL
3,5,6-Trichloropyridin-2(1H)-one
3-CHLORO-PYRIDINOL SODIUM
3,5,6-Trichloro-2(1H)-pyridinone
3,5,6-Trichloro-2-hydroxypyridine
TRICHLORO PYRIDINOL
PYRIDINOL
2(1H)-Pyridinone, 3,5,6-trichloro-
chlorpyriphos metabolite
TCPy
Biological Activity
[Description]:
[Related Catalog]:
[References]
Chemical & Physical Properties
[ Density]:
1.7±0.1 g/cm3
[ Boiling Point ]:
325.0±37.0 °C at 760 mmHg
[ Melting Point ]:
328-330ºC
[ Molecular Formula ]:
C5H2Cl3NO
[ Molecular Weight ]:
198.434
[ Flash Point ]:
150.4±26.5 °C
[ Exact Mass ]:
196.920197
[ PSA ]:
32.86000
[ LogP ]:
2.16
[ Vapour Pressure ]:
0.0±0.7 mmHg at 25°C
[ Index of Refraction ]:
1.617
[ Storage condition ]:
Refrigerator
[ Stability ]:
Stable. Incompatible with strong oxidizing agents.
Safety Information
[ Symbol ]:
GHS05, GHS07, GHS09
[ Signal Word ]:
Danger
[ Hazard Statements ]:
H302-H318-H411
[ Precautionary Statements ]:
P273-P280-P305 + P351 + P338
[ Personal Protective Equipment ]:
dust mask type N95 (US);Eyeshields;Gloves
[ Hazard Codes ]:
Xn:Harmful;N:Dangerousfortheenvironment;
[ Risk Phrases ]:
R22;R41;R51/53
[ Safety Phrases ]:
S26-S39-S61
[ RIDADR ]:
UN 3077
[ RTECS ]:
UU7786700
[ HS Code ]:
2933399090
Synthetic Route
Precursor & DownStream
Precursor
DownStream
Customs
[ HS Code ]: 2933399090
[ Summary ]:
2933399090. other compounds containing an unfused pyridine ring (whether or not hydrogenated) in the structure. VAT:17.0%. Tax rebate rate:13.0%. . MFN tariff:6.5%. General tariff:20.0%
Articles
Sci. Total Environ. 505 , 1062-71, (2014)
In this study, we investigated the hypothesis whether externally adsorbed and internally deposited flame retardants (FRs) in hair could be distinguished. To this extent, hair samples collected from on...
Wettability and surface free energy of polarised ceramic biomaterials.Biomed. Mater. 10(1) , 011001, (2015)
The surface modification of ceramic biomaterials used for medical devices is expected to improve osteoconductivity through control of the interfaces between the materials and living tissues. Polarisat...
Octacalcium phosphate ceramics combined with gingiva-derived stromal cells for engineered functional bone grafts.Biomed. Mater. 9(5) , 055005, (2014)
Biocompatible ceramic fillers are capable of sustaining bone formation in the proper environment. The major drawback of these scaffolding materials is the absence of osteoinductivity. To overcome this...