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Chlorine trifluoride

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Name

Chlorine trifluoride

EINECS 232-230-4
CAS No. 7790-91-2 Density 3.18 (Relative vapour density (air = 1))
PSA 0.00000 LogP 1.95010
Solubility reaction in water Melting Point -76ºC
Formula ClF3 Boiling Point 12ºC
Molecular Weight 92.4482 Flash Point N/A
Transport Information N/A Appearance NEARLY COLOURLESS COMPRESSED LIQUEFIED GAS , WITH CHARACTERISTIC ODOUR.
Safety Human poison by inhalation. An eye irritant. See also FLUORIDES, CHLORINE, and FLUORINE. Spontaneously flammable. A powerful oxidant which may react violently with oxidizable materials. A rocket propellant.

Explosive reaction with water, bis(trifluoro methyl)sulfide or -disulfide, polychlorotrifluoroethylene, trifluoromethanesulfenyl chloride, and other hydrogen- containing materials (e.g., ammonia, coal gas, hydrogen, hydrogen sulfide, methane, acetic acid, benzene, ether, cotton, paper, wood). Forms shock-sensitive explosive mixtures with highly chlorinated compounds (e.g., carbon tetrachloride), nitroaryl compounds (e.g., trinitrotoluene, hexanitrobiphenyl, hexanitrodiphenyl amine, hexanitro diphenyl sulfide, hexanitrodiphenyl ether). Reaction with ammonium fluoride or ammonium hydrogen fluoride forms explosive gaseous products.

Ignition on contact with boron-containing materials, iodine, finely divided refractory materials (e.g., asbestos, glass wool, sand, tungsten carbide), fluorinated polymers (with flowing trifluoride).

Violent reaction with acids (e.g., nitric or sulfuric), chromium trioxide, ruthenium, selenium tetrafluoride (above 106°C), metals, metal oxides, metal salts, nonmetals, nonmetal salts, organic matter, glass wool, acetic acid, Al, Sb, As, Cu, Ir, Fe, Pb, Mg, Mo, Os, P, K, Rh, Se, Si, Ag, Na, S, Te, Sn, W, Zn, oxides, CO, graphite, HgI2, HNO3, K2CO3, KI, rubber, AgN3, AgNO3, NaOH, V2P5, WO3. Incompatible with fuels, nitro compounds. When heated to decomposition or in reaction with water or steam it emits toxic fumes of F and Cl.

Risk Codes 8-35
Molecular Structure Molecular Structure of 7790-91-2 (CHLORINE TRIFLUORIDE) Hazard Symbols Explodes in contact with organic materials or with water. Dangerous fire risk. A poison, very toxic, corrosive to skin. TLV: ceiling 0.1 ppm.
Synonyms

Chlorinefluoride (Cl2F6); Chlorine trifluoride; Chlorine trifluoride (ClF3);Chlorotrifluoride; Trifluorochlorine

 

Chlorine trifluoride Synthetic route

chlorine trifluoride

chlorine trifluoride

7782-41-4

fluorine

A

27948-18-1

18F-fluoride

B

7790-91-2

chlorine trifluoride

Conditions
ConditionsYield
In gas at 119 - 232°C in Al-tubes about 30 - 45 min;;A 95%
B n/a
In gas at 170°C in Ni-tubes about 40 min;;A 12%
B n/a
nickel(II) fluoride In gas Kinetics; at 467, 497 and 530°K in Ni-tubes;;
7790-89-8

chlorine monofluoride

7782-41-4

fluorine

7790-91-2

chlorine trifluoride

Conditions
ConditionsYield
In neat (no solvent) equilibrium react.;;
In neat (no solvent) Kinetics; equilibrium at 500 - 800°K;;
In neat (no solvent) Kinetics; equilibrium at 100 - 380°C;;
15321-10-5

rubidium tetrafluorochlorate(III)

A

rubidium fluoride

B

7790-91-2

chlorine trifluoride

Conditions
ConditionsYield
In neat (no solvent) heated (nickel labyrinth crucible, dry N2 atm., heating rate 4-6 K/min.);
19195-69-8

potassium tetrafluoridochlorate(III)

A

potassium fluoride

B

7790-91-2

chlorine trifluoride

Conditions
ConditionsYield
In neat (no solvent) heated (nickel labyrinth crucible, dry N2 atm., heating rate 4-6 K/min.);
10025-67-9

disulfur dichloride

sodium fluoride

7790-91-2

chlorine trifluoride

Conditions
ConditionsYield
In neat (no solvent) heating S2Cl2 and NaF under refluxat 136°C; hydrolysis at -120°C;;20-45
Conditions
ConditionsYield
In neat (no solvent) equilibrium;;
In neat (no solvent) equilibrium between 211 - 271°K;;
In neat (no solvent) equilibrium between 211 - 271°K;;
In neat (no solvent) equilibrium;;
38785-48-7

ClF2 bismuth hexafluoride

A

7787-62-4

bismuth pentafluoride

B

7790-91-2

chlorine trifluoride

Conditions
ConditionsYield
In neat (no solvent) dry air atmosphere; heating (90-150°C, 4-6 K/min); TGA;

potassium hydrogen bifluoride

sodium fluoride

lithium fluoride

A

7790-91-2

chlorine trifluoride

B

7790-89-8

chlorine monofluoride

Conditions
ConditionsYield
With sodium fluoride In melt placing the fluorides in a Monel cylinder with a Ni-dip tube and outlet for gaseous phase (3 cooper traps, temp. from dry ice to room temp.); protecting from atmosphere; heating with electric furnace to 725°C; streaming Cl2 through melt for 5h; detecting ClF along with ClF3 by IR spectroscopy;
13773-81-4

krypton difluoride

silver(I) chloride

A

7790-91-2

chlorine trifluoride

Conditions
ConditionsYield
With polyethylene observed by IR and raman spectroscopy of KrF2;;
13693-06-6

plutonium hexafluoride

7727-37-9

nitrogen

7790-91-2

chlorine trifluoride

Conditions
ConditionsYield
other Radiation; α-radiation;
other Radiation; α-radiation;

Chlorine trifluoride Chemical Properties

Molecular Structure of Chlorine trifluoride (CAS NO. 7790-91-2):

EINECS: 232-230-4
Chemical Name: Chlorine trifluoride
Molecular Formula: ClF3
XLogP3-AA: 2.5
H-Bond Donor: 0
H-Bond Acceptor: 3
InChI: InChI=1S/ClF3/c2-1(3)4
InChIKey: JOHWNGGYGAVMGU-UHFFFAOYSA-N
Density: 1.8 g/cm3
Molecular Weight: 92.448210 g/mol
Enthalpy of Vaporization: 27.53 kJ/mol
Boiling Point: 11.3 °C at 760 mmHg
Vapour Pressure: 1310 mmHg at 25 °C
Melting Point: -83 °C
Water Solubility: 7840 mg/L at 25 °C

Chlorine trifluoride Uses

  Chlorine trifluoride is mainly used to produce uranium hexafluoride :
                U + 3ClF3 → UF6 + 3ClF
  Before the start of World War II, Chlorine trifluoride under the code name of N-stoff was investigated for military applications by the Kaiser Wilhelm Institute in Nazi German. It was found to be an effective combined incendiary weapon and poison gas. Now, it is never used in war. Chlorine trifluoride has also been investigated as a high-performance storable oxidizer in rocket propellant systems due to its hypergolic properties with every known fuel even things like cloth, wood, and test engineers. Chlorine trifluoride is used in the semiconductor industry to clean chemical vapour deposition chambers without having to dismantle the chamber. It does not need to be activated by plasma as the heat of the chamber is enough to make it decompose and react with the semiconductor material.

Chlorine trifluoride Production

  Chlorine trifluoride was prepared by fluorination of chlorine first reported by Ruff and Krug. The reaction also produces ClF, then the mixture was separated by distillation.
             3F2 + Cl2 → 2ClF3

Chlorine trifluoride Toxicity Data With Reference

1.    

eye-rat 21 ppm/12H-I

    AMIHAB    AMA Archives of Industrial Health. 12 (1955),515.
2.    

eye-dog 21 ppm/12H-I

    AMIHAB    AMA Archives of Industrial Health. 12 (1955),515.
3.    

ihl-hmn LCLo:50 ppm

    34ZIAG    Toxicology of Drugs and Chemicals, Deichmann, W.B.,New York, NY.: Academic Press, Inc.,1966,651.
4.    

ihl-rat LCLo:400 ppm/30M

    TXAPA9    Toxicology and Applied Pharmacology. 27 (1974),527.
5.    

ihl-mus LC50:178 ppm/1H

    AMRL**    Aerospace Medical Research Laboratory Report. (Aerospace Technical Div., Air Force Systems Command, Wright-Patterson Air Force Base, OH 45433) TR-70-55 ,1970.
6.    

ibl-mky LC50:230 ppm/1H

    AMRL**    Aerospace Medical Research Laboratory Report. (Aerospace Technical Div., Air Force Systems Command, Wright-Patterson Air Force Base, OH 45433) TR-70-77 ,1970.

Chlorine trifluoride Consensus Reports

Reported in EPA TSCA Inventory.

Chlorine trifluoride Safety Profile

Safety Information of Chlorine trifluoride (CAS NO. 7790-91-2):
Hazard Codes: O Oxidizing
Hazard Note: Oxidising agent
Risk Statements: 8-35
R8 :Contact with combustible material may cause fire
R35:Causes severe burns
Safety Statements: 17-38
S17:Keep away from combustible material
S38:In case of insufficient ventilation, wear suitable respiratory equipment
RIDADR: 1749
HazardClass: 2.3
Human poison by inhalation. An eye irritant. See also FLUORIDES, CHLORINE, and FLUORINE. Spontaneously flammable. A powerful oxidant which may react violently with oxidizable materials. A rocket propellant.

Explosive reaction with water, bis(trifluoro methyl)sulfide or -disulfide, polychlorotrifluoroethylene, trifluoromethanesulfenyl chloride, and other hydrogen- containing materials (e.g., ammonia, coal gas, hydrogen, hydrogen sulfide, methane, acetic acid, benzene, ether, cotton, paper, wood). Forms shock-sensitive explosive mixtures with highly chlorinated compounds (e.g., carbon tetrachloride), nitroaryl compounds (e.g., trinitrotoluene, hexanitrobiphenyl, hexanitrodiphenyl amine, hexanitro diphenyl sulfide, hexanitrodiphenyl ether). Reaction with ammonium fluoride or ammonium hydrogen fluoride forms explosive gaseous products.

Ignition on contact with boron-containing materials, iodine, finely divided refractory materials (e.g., asbestos, glass wool, sand, tungsten carbide), fluorinated polymers (with flowing trifluoride).

Violent reaction with acids (e.g., nitric or sulfuric), chromium trioxide, ruthenium, selenium tetrafluoride (above 106°C), metals, metal oxides, metal salts, nonmetals, nonmetal salts, organic matter, glass wool, acetic acid, Al, Sb, As, Cu, Ir, Fe, Pb, Mg, Mo, Os, P, K, Rh, Se, Si, Ag, Na, S, Te, Sn, W, Zn, oxides, CO, graphite, HgI2, HNO3, K2CO3, KI, rubber, AgN3, AgNO3, NaOH, V2P5, WO3. Incompatible with fuels, nitro compounds. When heated to decomposition or in reaction with water or steam it emits toxic fumes of F and Cl.

Chlorine trifluoride Standards and Recommendations

OSHA PEL: CL 0.1 ppm
ACGIH TLV: CL 0.1 ppm
DFG MAK: 0.1 ppm (0.38 mg/m3)
DOT Classification:  2.3; Label: Poison Gas, Oxidizer, Corrosive

Chlorine trifluoride Specification

  Chlorine trifluoride with cas registry number of 7790-91-2 is also called for Chlorine fluoride ; Chlorine fluoride (ClF3) ; Chlorine trifluoride (ClF3) ; Chlorotrifluoride ; HSDB 970 ; Trifluorure de chlore ; Trifluorure de chlore [French] ; Chlorine trifluoride [UN1749] [Poison gas] ; UN1749 . It is A colorless gas or green liquid with a pungent odor. Pure Chlorine trifluoride is stable to 180° in glass vessels; above this temperature it decomposes by a free radical mechanism to the elements.

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