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hexachlorotungsten

Names

[ CAS No. ]:
13283-01-7

[ Name ]:
hexachlorotungsten

[Synonym ]:
hexachlorotungsten
EINECS 236-293-9
Tungsten(VI) chloride,20 mesh
MFCD00011463
TUNGSTEN(VI) CHLORIDE

Chemical & Physical Properties

[ Density]:
3.52 g/mL at 25 °C(lit.)

[ Boiling Point ]:
347 °C(lit.)

[ Melting Point ]:
275 °C(lit.)

[ Molecular Formula ]:
Cl6W

[ Molecular Weight ]:
396.55800

[ Flash Point ]:
346°C

[ Exact Mass ]:
393.76400

[ LogP ]:
4.13700

[ Vapour Pressure ]:
43 mm Hg ( 215 °C)

MSDS

Toxicological Information

CHEMICAL IDENTIFICATION

RTECS NUMBER :
YO7710000
CHEMICAL NAME :
Tungsten chloride, (OC-6-11)-
CAS REGISTRY NUMBER :
13283-01-7
LAST UPDATED :
199710
DATA ITEMS CITED :
4
MOLECULAR FORMULA :
Cl6-W
MOLECULAR WEIGHT :
396.55

Safety Information

[ Symbol ]:

GHS05

[ Signal Word ]:
Danger

[ Hazard Statements ]:
H314

[ Precautionary Statements ]:
P280-P305 + P351 + P338-P310

[ Personal Protective Equipment ]:
Eyeshields;Faceshields;full-face particle respirator type N100 (US);Gloves;respirator cartridge type N100 (US);type P1 (EN143) respirator filter;type P3 (EN 143) respirator cartridges

[ Hazard Codes ]:
C:Corrosive;

[ Risk Phrases ]:
R34

[ Safety Phrases ]:
S26-S36/37/39-S45

[ RIDADR ]:
UN 3260 8/PG 2

[ WGK Germany ]:
3

[ RTECS ]:
YO7710000

[ Packaging Group ]:
II

[ Hazard Class ]:
8

[ HS Code ]:
2827399000

Synthetic Route

Customs

[ HS Code ]: 2827399000

Articles

Material Decomposition in Dual-Energy Computed Tomography Separates High-Z Elements From Iodine, Identifying Potential Contrast Media Tailored for Dual Contrast Medium Examinations.

J. Comput. Assist. Tomogr. 39 , 975-80, (2015)

The aim of this study was to determine the potential of different high-Z elements to act as contrast media (CMs) alongside iodine (I) in dual-CM, dual-energy (DE) computed tomography examinations.Gado...

Highly efficient ablation of metastatic breast cancer using ammonium-tungsten-bronze nanocube as a novel 1064 nm-laser-driven photothermal agent.

Biomaterials 52 , 407-16, (2015)

Photothermal ablation (PTA) therapy has been viewed as an invasive option for cancer therapy with minimal deconstruction of healthy tissues. In this study, a potent candidate of (NH4)xWO3 nanocube was...

Firouzabadi, H. et al.

Synlett , 413, (1999)


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