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Гексафторбензолом структурированное изображение

Гексафторбензолом

  • английское имяhexafluorobenzene
  • CAS №392-56-3
  • CBNumberCB7152315
  • ФормулаC6F6
  • мольный вес186.05
  • EINECS206-876-2
  • номер MDLMFCD00000288
  • файл Mol392-56-3.mol
химическое свойство
Температура плавления 3.7-4.1 °C (lit.)
Температура кипения 80-82 °C (lit.)
плотность 1.612 g/mL at 25 °C (lit.)
показатель преломления n20/D 1.377(lit.)
Fp 50 °F
температура хранения Sealed in dry,Room Temperature
форма Liquid
цвет Clear colorless to slightly yellow
Удельный вес 1.612
Растворимость в воде Immiscible with water.
Мерк 14,4686
БРН 1683438
Диэлектрическая постоянная 2.0499999999999998
Стабильность Stable. Incompatible with strong oxidizing agents. May form complexes with transition metals which can explode when heated. Highly flammable.
Справочник по базе данных CAS 392-56-3(CAS DataBase Reference)
FDA UNII CMC18T611K
Справочник по химии NIST Benzene, hexafluoro-(392-56-3)
Система регистрации веществ EPA Benzene, hexafluoro- (392-56-3)
Заявления об опасности и безопасности
Коды опасности F,Xi
Заявления о рисках 11-36/37/38
Заявления о безопасности 16-33-7/9-29-26-37/39
РИДАДР UN 1993 3/PG 2
WGK Германия 3
RTECS DA3050000
F 10
Примечание об опасности Highly Flammable
TSCA Yes
Класс опасности 3
Группа упаковки II
кода HS 29039990
Токсичность guinea pig,LCLo,inhalation,11800ppm/4H (11800ppm),BEHAVIORAL: ATAXIASENSE ORGANS AND SPECIAL SENSES: LACRIMATION: EYELUNGS, THORAX, OR RESPIRATION: OTHER CHANGES,National Technical Information Service. Vol. OTS0571186,
NFPA 704:
1
2 0

рисовальное письмо(GHS)

  • рисовальное письмо(GHS)

    GHS hazard pictograms

  • сигнальный язык

    опасность

  • вредная бумага

    H225:Легковоспламеняющаяся жидкость. Пары образуют с воздухом взрывоопасные смеси.

  • оператор предупредительных мер

    P210:Беречь от тепла, горячих поверхностей, искр, открытого огня и других источников воспламенения. Не курить.

    P233:Держать в плотно закрытой/герметичной таре.

    P240:Заземлить и электрически соединить контейнер и приемное оборудование.

    P241:Использовать взрывобезопасное оборудование и освещение.

    P242:Использовать неискрящие приборы.

    P243:Принимать меры предосторожности против статических разрядов.

Гексафторбензолом химические свойства, назначение, производство

Описание

Hexafluorobenzene, HFB, C6F6, or perfluorobenzene is an organic, aromatic compound. In this derivative of benzene all hydrogen atoms have been replaced by fluorine atoms. The technical uses of the compound are limited, although it is recommended as a solvent in a number of photochemical reactions. In the laboratory hexafluorobenzene is used as standard in fluorine-19 NMR spectroscopy, solvent and standard in carbon-13 NMR, solvent in proton NMR, solvent when studying some parts in the infrared and solvent in ultraviolet–visible spectroscopy, as hexafluorobenzene itself hardly shows any absorbance in the UV region.

Химические свойства

colourless liquid

Использование

Hexafluorobenzene is used as a solvent in photochemical reactions. It is also used as a reference compound in fluorine-19 NMR, carbon-13 NMR. It is used as a solvent in proton NMR, IR spectrum and UV-spectra. It is used as anticorrosive, antifriction and anti-tumor agents. Further, it is used as a reference molecule to investigate tissue oxygenation in vivo studies. It forms series of 1:1 complexes with naphthalene, anthracene, phenanthrene, pyrene and triphenylene.

Определение

ChEBI: A member of the class of fluorobenzenes that is benzene in which all six hydrogen atom have been replaced by fluorine.

прикладной

Hexafluorobenzene can react with:
Ethyl magnesium bromide in the presence of transition metal halides to form the corresponding perfluoroarylmagnesium compound that can undergo Grignard reactions.
The sodium salt of the appropriate phenol in 1,3-dimethyl-2-imidazolidinone (DMEU) to form the corresponding hexakis(aryloxy)benzenes.
It can be used:
As a ligand to synthesize novel ruthenium(0) and osmium(0) hexafluorobenzene complexes.
As a solvent and promoter for the ring-closing metathesis (RCM) to form tetrasubstituted olefins in the presence of a ruthenium-based catalyst.

Реакции

For example, hexafluorobenzene adds chlorine quite readily under rather mild conditions to give hexachlorohexafluorocyclohexane. The catalytic reduction of hexafluorobenzene with hydrogen to penta. and tetra-fluorobenzene at 300 °C, using a platinum catalyst, probably proceeds by a free-radical mechanism. Although the addition of chlorine to hexafluorobenzene is an example of a free-radical addition reaction, the reduction of hexafluorobenzene with hydrogen is classified as a freeradical substitution reaction.
One of the earliest and, perhaps, most complicated reactions of hexafluorobenzene is one reported by Desirant. This interesting reaction, whic h is the only example of a high· temperature (above 300°C) reaction of hexafluorobenzene reported to date, involves the pyrolysis of the molecule in a platinum reactor at 850°C. Among the many products produced in this reaction , octafluorotoluene and decafluorobiphenyl were identified. This highly complex reaction probably could also be classified, in some respects, as a free-radical substitution reaction. There is also some less direct evidence that hightemperature reactions of hexafluorobe nzene do occur. In the synthesis of hexafluorobenzene by the pyrolysis of tribromofluoromethane, bromopentafluorobenzene is a signifi'cant by-product. Lesser amounts of higher brominated fluorocarbons are formed as well, along with copious quantities of bromine. This rather complex reaction is illustrated below.
CFBr3--630-640℃-->C6F6+Br2+C6F5Br+C6F4Br2+etc.

Общее описание

Hexafluorobenzene was repoted to be a sensitive 19F NMR indicator of tumor oxygenation. Rotational Raman spectra of hexafluorobenzenehas been studied under high resolution using a single mode argon laser as the exciting source. Hexafluorobenzene in the gas phase reacts spontaneously with lithium amalgam, to give a solid and intimate mixture of lithium fluoride and elemental polymeric carbon with a small amount of superstoichiometric lithium. Hexafluorobenzene forms series of 1:1 complexes with naphthalene, anthracene,phenanthrene, pyrene and triphenylene.

Опасность

Toxic by inhalation. Combustible.

Методы очистки

Main impurities are incompletely fluorinated benzenes. Purify it by standing in contact with oleum for 4hours at room temperature, repeating until the oleum does not become coloured. Wash it several times with water, then dry it with P2O5. Finally purify it by repeated fractional crystallisation. [Beilstein 5 III 523, 5 IV 640.]

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