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DE1294949B - Process for the preparation of perfluoroalkyl-alkyl-ethers - Google Patents

Process for the preparation of perfluoroalkyl-alkyl-ethers

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Publication number
DE1294949B
DE1294949B DEF49222A DEF0049222A DE1294949B DE 1294949 B DE1294949 B DE 1294949B DE F49222 A DEF49222 A DE F49222A DE F0049222 A DEF0049222 A DE F0049222A DE 1294949 B DE1294949 B DE 1294949B
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Germany
Prior art keywords
mol
mixture
fluoride
ether
theory
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
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DEF49222A
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German (de)
Inventor
Dr Hans
Millauer
Dr Otto
Scherer
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Hoechst AG
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Hoechst AG
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Filing date
Publication date
Priority to DEF47817A priority Critical patent/DE1298514B/en
Application filed by Hoechst AG filed Critical Hoechst AG
Priority to DEF49222A priority patent/DE1294949B/en
Priority to DEF50759A priority patent/DE1301807B/en
Priority to DEF50760A priority patent/DE1302054B/en
Priority to ES0333931A priority patent/ES333931A1/en
Priority to CH1711366A priority patent/CH479514A/en
Priority to NL6616938A priority patent/NL6616938A/xx
Priority to FR85937A priority patent/FR1506638A/en
Priority to BE690605D priority patent/BE690605A/xx
Publication of DE1294949B publication Critical patent/DE1294949B/en
Pending legal-status Critical Current

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    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08FMACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
    • C08F16/00Homopolymers and copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and at least one being terminated by an alcohol, ether, aldehydo, ketonic, acetal or ketal radical
    • C08F16/12Homopolymers and copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and at least one being terminated by an alcohol, ether, aldehydo, ketonic, acetal or ketal radical by an ether radical
    • C08F16/14Monomers containing only one unsaturated aliphatic radical
    • C08F16/24Monomers containing halogen
    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07CACYCLIC OR CARBOCYCLIC COMPOUNDS
    • C07C41/00Preparation of ethers; Preparation of compounds having groups, groups or groups
    • C07C41/01Preparation of ethers
    • C07C41/18Preparation of ethers by reactions not forming ether-oxygen bonds
    • C07C41/28Preparation of ethers by reactions not forming ether-oxygen bonds from acetals, e.g. by dealcoholysis
    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07CACYCLIC OR CARBOCYCLIC COMPOUNDS
    • C07C43/00Ethers; Compounds having groups, groups or groups
    • C07C43/02Ethers
    • C07C43/03Ethers having all ether-oxygen atoms bound to acyclic carbon atoms
    • C07C43/04Saturated ethers
    • C07C43/12Saturated ethers containing halogen

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  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Health & Medical Sciences (AREA)
  • Medicinal Chemistry (AREA)
  • Polymers & Plastics (AREA)
  • Organic Low-Molecular-Weight Compounds And Preparation Thereof (AREA)

Description

1 21 2

Es wurde gefunden, daß man einseitig perfluorierte entsprechenden Endprodukte der Formel (1) durchIt has been found that corresponding end products of the formula (1) which are perfluorinated on one side can be carried out

aliphatische Äther der allgemeinen Formel (1) Abspaltung von Halogenwasserstoff in bekannteraliphatic ethers of the general formula (1) splitting off of hydrogen halide in known

j Weise in die entsprechenden perfluorierten Vinylätherj way in the corresponding perfluorinated vinyl ethers

If der allgemeinen FormelI f of the general formula

CF3- (CF2V-C- O — R2 (1) 5 R\ CF 3 - (CF 2 VC- O - R 2 (1) 5 R \

F CF3- (CF2)„ — C-O-CH =F CF 3 - (CF 2 ) "- CO-CH =

in welcher R) eine Trifluormethylgruppe oder ein ioin which R) a trifluoromethyl group or an io

Fluoratom, η eine ganze Zahl von O bis 6 und R2 einenFluorine atom, η is an integer from 0 to 6 and R 2 is a

geradkettigen oder verzweigten Alkylrest von 1 bis übergeführt werden.straight-chain or branched alkyl radical from 1 to are converted.

18 Kohlenstoffatomen, der in «-Stellung oder einer Geeignete, gegenüber den Reaktionsteilnehmern18 carbon atoms, the one in the «position or a suitable one, towards the reactants

entfernteren Stellung zur Sauerstoffbrücke substitu- inerte Lösungsmittel sind beispielsweise Aceton, iert sein kann, bedeutet, erhält, wenn man Perfluor- 15 Tetrahydrofuran, Acetonitril, vorzugsweise Diglycol-more distant position to the oxygen bridge, substituted inert solvents are, for example, acetone, can be ated, means obtained when perfluoro 15 tetrahydrofuran, acetonitrile, preferably diglycol

carbonylverbindungen der allgemeinen Formel (2) dimethyläther, Dimethylformamid und Dimethyl-carbonyl compounds of the general formula (2) dimethyl ether, dimethylformamide and dimethyl

sulfoxid.sulfoxide.

Rf Während man in der Regel, wie vorstehend beschrie-Rf While one usually, as described above,

I (2) ben, so verfährt, daß man zunächst das KaliumfluoridI (2) ben, proceed in such a way that one first uses the potassium fluoride

CF3 — (CF2)» — C = O ao an die Perfluorcarbonylverbindung addiert, wobei esCF 3 - (CF2) »- C = O ao added to the perfluorocarbonyl compound, with it

zweckmäßig ist, das Kaliumfluorid im inerten ιοί η welcher RJ und n die vorstehend genannten Bedeu- sungsmittel suspendiert zur Anwendung zu bringen, tungen haben, nach Anlagerung von Kaliumfluorid kann man aber auch so verfahren, die Verbindung der in einem in bezug auf die Reaktionsteilnehmer inerten genannten allgemeinen Formel (3) schon zu Beginn Lösungsmittel mit Verbindungen der allgemeinen 35 der Kaliumfluoridsuspension zuzusetzen und die Formel (3) Reaktion durch Zusatz der Perfluorcarbonylverbin-It is expedient to use the potassium fluoride in the inert ιοί η which RJ and n the abovementioned meanings in suspension, but after addition of potassium fluoride one can also proceed in such a way that the compound is inert with respect to the reactants mentioned general formula (3) to add solvents with compounds of the general 35 of the potassium fluoride suspension and the formula (3) reaction by adding the Perfluorcarbonylverbin-

X — R2 (3) dung in Gang zu bringen.X - R 2 (3) to get going.

Die verfahrensgemäß hergestellten VerbindungenThe compounds produced according to the method

in welcher R2 die vorstehend genannte Bedeutung hat, stellen Narcotica und wertvolle Zwischenprodukte zur und X ein Chlor- oder Bromatom oder einen Alkyl- 30 Herstellung von Narcotica und Polymeren dar.in which R 2 has the meaning given above, narcotics and valuable intermediates for and X is a chlorine or bromine atom or an alkyl 30 production of narcotics and polymers.

schwefelsäurerest der allgemeinen Formel (4) _, . . , „sulfuric acid radical of the general formula (4) _,. . , "

& w Beispiel 1 & w example 1

In einem mit Rührer, Kältekühler und Gaseinlei" bedeutet, worin R3 für eine Alkylgruppe, vorzugsweise tungsrohr versehenen Reaktionsgefäß werden 170 g eine Methyl-oder Äthylgruppe steht, umsetzt. '35'(1,35MoI) Dimethylsulfat, 80 g (1,38 Mol) Kalium-170 g of a methyl or ethyl group are reacted in a reaction vessel equipped with a stirrer, cold cooler and gas inlet where R 3 is an alkyl group, preferably a pipe. '35' (1.35 mol) dimethyl sulfate, 80 g (1.38%) Mole) potassium

Der Rest R2 enthält vorzugsweise 1 bis 6 Kohlen- fluorid und 250 g Diglycoldimethyläther vorgelegt, stoffatome. Er kann beispielsweise durch eine Bei Raumtemperatur werden unter kräftigem RührenThe radical R 2 preferably contains 1 to 6 carbon fluoride and 250 g of diglycol dimethyl ether initially charged, substance atoms. It can, for example, be at room temperature with vigorous stirring

^Jj, j QQQ cjj _ cjj _ cpj Q qq_ 166 g (1 Mol) Hexafluoraceton eingeleitet. Man er-^ Jj, j QQQ cjj _ cjj _ cpj Q qq_ 166 g (1 mole) of hexafluoroacetone initiated. Man

252 ' wärmt- anschließend das Reaktionsgemisch 6 Stunden 252 'then warms the reaction mixture for 6 hours

Cyan- oder Carbalkoxygruppe, durch ein Halogen- 40 auf Rückflußtemperatur (etwa 45 0C). Das Reaktionsatom, vorzugsweise ein Chlor- oder Bromatom, oder produkt wird zusammen mit einem Teil des Lösungsdurch eine Alkoxygruppe, vorzugsweise eine Methoxy- mittels im Vakuum in auf —80° C gekühlte Fallen oder Äthoxygruppe, substituiert sein. '-'■'-■■ destilliert und anschließend einer fraktionierten Destü-Cyano or carbalkoxy group, by a halogen 40 to reflux temperature (about 45 0 C). The reaction atom, preferably a chlorine or bromine atom, or product, together with part of the solution, will be substituted by an alkoxy group, preferably a methoxy agent in vacuo in traps cooled to -80 ° C or an ethoxy group. '-' ■ '- ■■ distilled and then a fractional distillation

Bezüglich der Mengenverhältnisse der Verfahrens-.llation unterworfen. Man erhält 190 g Heptafluorisogemäß zur Umsetzung gelangenden Reaktionskompo- 45 propyl-methyläther vom Siedepunkt 29 0C, was einer nenten ist es zweckmäßig, 1 Mol Perfluorcarbonyl- Ausbeute von 95 °/0 der Theorie, bezogen auf das einverbindung der genannten allgemeinen Formel (2) mit gesetzte Hexafluoraceton, entspricht. 1 Mol Kaliumfluorid und das hierbei gebildete Zwi- . . 1 Subject to the process .llation with regard to the quantitative proportions. To give 190 g Heptafluorisogemäß to implement entering Reaktionskompo- 45 propyl methyl ether of boiling point 29 0 C, which it is one of components appropriate to 1 mole Perfluorcarbonyl- yield of 95 ° / 0 of theory, based on the einverbindung the general formula (2-mentioned ) with set hexafluoroacetone corresponds. 1 mole of potassium fluoride and the intermediate formed in this way. . 1

schenprodukt mit 1 Mol der Verbindung der all- JJ ei spie Wproduct with 1 mole of the compound of the all- JJ ei spie W

gemeinen Formel (3) umzusetzen. Das Kaliumfluorid so In eine Suspension aus 405 g (7 Mol) Kaliumfluorid kann auch in einem 1,1- bis l,5fachen molaren Über- in 1000 g (6 Mol) Bromessigsäureäthylester und 1400 g schuß angewandt werden. Auch die Verbindung der Diglycoldimethyläther, die sich in einem mit Rührer, allgemeinen Formel (3) kann im Überschuß ange- Kältekühler und Gaseinleitungsrohr versehenen Rewandt werden. aktionsgefäß befinden, werden unter kräftigem Rüh-implement common formula (3). The potassium fluoride so in a suspension of 405 g (7 mol) of potassium fluoride can also be used in a 1.1 to 1.5 times molar excess in 1000 g (6 mol) of ethyl bromoacetate and 1400 g shot can be applied. The compound of diglycol dimethyl ether, which is in a stirrer, general formula (3) can be used in excess will. action vessel are located, are stirred vigorously

Die Addition des .Kaliumfluorids erfolgt zweck- 55 ren bei Raumtemperatur 800 g (4,80 Mol) Hexafluormäßig bei Temperaturen zwischen etwa —60 und etwa aceton eingeleitet. Das Gemisch· wird innerhalb von +30° C, vorzugsweise zwischen etwa —40 und etwa 4 Stunden auf 80°C erwärmt und 9 Stunden auf dieser +20° C, die Umsetzung der hierbei gebildeten Zwi- Temperatur gehalten. Der entstandene Niederschlag schenprodukte mit den Verbindungen der genannten wird abfiltriert und das Filtrat fraktioniert destilliert, allgemeinen Formel (3) bei Temperaturen zwischen 60 Man erhält 1081 g Heptafluorisopropoxy-essigsäureetwa 30 und etwa 130°C, vorzugsweise zwischen etwa äthylester vom Siedepunkt 138 bis 139°C, was einer etwa 40 und etwa 80° C. Ausbeute von 83% der Theorie, bezogen auf das ein-The addition of the potassium fluoride is expediently carried out at room temperature 800 g (4.80 mol) of hexafluoride initiated at temperatures between about -60 and about acetone. The mixture becomes within + 30 ° C, preferably between about -40 and about 4 hours heated to 80 ° C and 9 hours on this + 20 ° C, the implementation of the intermediate temperature is maintained. The resulting precipitate products containing the compounds mentioned are filtered off and the filtrate is fractionally distilled, general formula (3) at temperatures between 60. 1081 g of heptafluoroisopropoxyacetic acid are obtained, for example 30 and about 130 ° C, preferably between about ethyl ester boiling point 138 to 139 ° C, what a about 40 and about 80 ° C. Yield of 83% of theory, based on the

Die Reaktion kann in einem Autoklav durch- gesetzte Hexafluoraceton, entspricht, geführt werden. . .The reaction can be carried out in an autoclave, hexafluoroacetone, corresponds to be guided. . .

Sofern verfahrensgemäß mit Verbindungen der 65 Beispiel 3If, in accordance with the procedure, with compounds of Example 3

genannten allgemeinen Formel (3) umgesetzt wird, In einem mit Rührer, Kältekühler und Gaseinlei-mentioned general formula (3) is implemented, In a with stirrer, cold cooler and gas inlet

wobei R2 einen /?-halogenierten Alkylrest, beispiels- tungsrohr versehenen Reaktionsgefäß wird eine Suspenweise die /J-Bromäthylgruppe darstellt, können die sion aus 135 g (1,10 Mol) Chloressigsäureäthylesterwhere R 2 is a /? - halogenated alkyl radical, for example a reaction vessel provided with a tube

Claims (3)

70 g (1,20 Mol) Kaliumfluorid und 250 g Lösungs- erhält 32 g Heptafluorisopropyl-vinyläther vom Siedemittel hergestellt. Als Lösungsmittel werden a) Aceto- punkt 29 bis 30° C. nitril, b) Diglykoldimethyläther, c) Dimethylsulfoxid R . . . . oder d) Dimethylformamid eingesetzt. Bei Raum- ßei spiel ο temperatur werden in das Gemisch unter kräftigem 5 In einem Stahlautoklav mit Magnetrührung werden Rühren 166 g (1 Mol) Hexafluoraceton eingeleitet. An- 29 g (0,50 Mol) Kaliumfluorid, 77 g (0,50 Mol) Dischließend wird das Reaktionsgemisch erwärmt. Bei äthylsulfat und 200 ml Diglycoldimethyläther vora) bzw. b) stellt sich bei 60 bzw. 70° C ein Rücklauf ein, gelegt. Nach Verschließen und Evakuieren des Autowährend bei c) und d) ohne Rücklauf auf 90° C er- klavs werden unter Rühren bei Raumtemperatur 48 g wärmt werden kann. Die angegebenen Temperaturen io (0,42 Mol) Tnfluoracetylfluorid eingeleitet und 12 Stunwurden 9 Stunden gehalten. Nach Abtrennen des den bei 60°C nachgerührt. Das Rohprodukt wird bei Niederschlags durch Filtrieren wird das Filtrat einer 200 Torr in eine auf —80°C gekühlte Vorlage einfraktionierten Destillation unterworfen. An Hepta- destilliert und durch fraktionierte Destillation gereifluorisopropoxy-essigsäureäthylester werden gewonnen nigt. Gewonnen werden 59 g Pentafluoräthyl-äthylim Fall »5 äther vom Siedepunkt 26 bis 28° C, was einer Ausbeute70 g (1.20 mol) of potassium fluoride and 250 g of solution contains 32 g of heptafluoroisopropyl vinyl ether produced by the boiling agent. The solvents used are a) aceto point 29 to 30 ° C. nitrile, b) diglycol dimethyl ether, c) dimethyl sulfoxide R. . . . or d) dimethylformamide is used. At room temperature, 166 g (1 mol) of hexafluoroacetone are introduced into the mixture under vigorous stirring. 29 g (0.50 mol) of potassium fluoride, 77 g (0.50 mol). The reaction mixture is then heated. In the case of ethyl sulfate and 200 ml of diglycol dimethyl ether above a) or b), a reflux occurs at 60 and 70 ° C., respectively. After the car has been closed and evacuated during c) and d) without reflux to 90 ° C., 48 g can be warmed at room temperature with stirring. The stated temperatures were initiated 10 (0.42 mole) fluoracetyl fluoride and held for 9 hours for 12 hours. After the separation, the mixture was stirred at 60.degree. The crude product is filtered with precipitation, the filtrate is subjected to a 200 torr distillation fractionated into a receiver cooled to -80 ° C. Distilled on hepta and matured by fractional distillation, ethyl fluoroisopropoxy-acetic acid ester is obtained. 59 g of pentafluoroethyl-ethyl in the case of 5 ether with a boiling point of 26 to 28 ° C. are obtained, which is a yield von 85% der Theorie, bezogen auf eingesetztes Tri-of 85% of theory, based on the tri- a) 20 g (Ausbeute 7 % der Theorie, bezogen auf ein- fluoracetylfluorid, entspricht.a) 20 g (yield 7% of theory, based on a fluoroacetyl fluoride, corresponds. gesetztes Hexafluoraceton);set hexafluoroacetone); Beispiel 7Example 7 b) 55 g (Ausbeute 20 % der Theorie, bezogen aufb) 55 g (yield 20% of theory, based on eingesetztes Hexafluoraceton); ao ^n emem mit Gaseinleitungsrohr, Thermometer undhexafluoroacetone used); ao ^ n emem w ith gas inlet pipe, thermometer and , Kältekühler versehenen Rührkolben werden 32 g, Cold cooler equipped stirred flask will be 32 g c) 215 g (Ausbeute 79% der Theorie, bezogen auf (Oj55 Mol) Kaliumfluorid, 93 g (0,60 Mol) Diäthyl-c) 215 g (yield 79% of theory, based on ( Oj 55 mol) potassium fluoride, 93 g (0.60 mol) diethyl eingesetztes Hexafluoraceton); sulfat und 250ml Dimethylformamid vorgelegt,hexafluoroacetone used); sulfate and 250ml dimethylformamide submitted, d) 239 g (Ausbeute 88% der Theorie, bezogen auf worauf in das Gemisch unter Rühren 83 g (0,50 Mol)d) 239 g (yield 88% of theory, based on what 83 g (0.50 mol) in the mixture with stirring eingesetztes Hexafluoraceton). as Perfluorpropionylfluorid eingeleitet werden. Nachhexafluoroacetone used). as perfluoropropionyl fluoride. To 6stündigem Erwärmen auf 50° C wird das Reaktions-6 hours of heating at 50 ° C, the reaction Beispiel 4 gemisch durch Wasserdampfdestillation zerlegt, dasExample 4 mixture decomposed by steam distillation, the Rohprodukt aus dem Destillat abgeschieden, mit ver-Crude product separated from the distillate, with various In einem mit Rührer, Kältekühler und Gaseinlei- dünnter warmer Natronlauge gewaschen, abgetrennt tungsrohr versehenen Reaktionsgefäß werden 70 g 30 und mit Calciumchlorid getrocknet. Durch fraktio-(1,20 Mol) Kaliumfluorid, 149 g (1,20 Mol) 1-Brom- nierte Destillation werden 57 g n-Heptafluorpropylpropan und 250 g Dimethylformamid vorgelegt. In äthyläther vom Siedepunkt 51 bis 52° C erhalten, was diese Mischung werden unter Rühren 166 g (1 Mol) einer Ausbeute von 53 % der Theorie, auf eingesetztes Hexafluoraceton bei Raumtemperatur eingeleitet. Das Perfluorpropionylfluorid bezogen, entspricht. Reaktionsgemisch wird anschließend 50 Stunden auf 35In a reaction vessel provided with a stirrer, cold condenser and gas inlet, warm sodium hydroxide solution, washed and separated, 70 g of 30 and calcium chloride are dried. By fractional (1.20 mol) potassium fluoride, 149 g (1.20 mol) 1-brominated distillation, 57 g of n-heptafluoropropylpropane and 250 g of dimethylformamide are presented. Obtained in ethyl ether with a boiling point of 51 ° to 52 ° C., what this mixture is passed with stirring, 166 g (1 mol), a yield of 53% of theory, to hexafluoroacetone used at room temperature. The perfluoropropionyl fluoride related corresponds to. The reaction mixture is then set to 35 for 50 hours 75 bis 80°C erhitzt und anschließend unter vermin- Beispiel 875 to 80 ° C and then under vermin- Example 8 dertem Druck in auf — 8O0C gekühlte Fallen ab- In einem mit Thermometer und Rückflußkühler verdestilliert. Aus dem Destillat werden durch fraktio- sehenen Rührkolben werden 15 g (0,26 Mol) Kaliumnierte Destillation 173 g Heptafluorisopropyl-n-propyl- fluorid, 33 g (0,26 Mol) Dimethylsulfat, 64 g (0,15 Mol) äther vom Siedepunkt 67 bis 680C erhalten, was einer 40 Perfluoroctanoylfluorid und 100 ml Dimethylform-Ausbeute von 76% der Theorie, bezogen auf ein- amid vorgelegt. Das Gemisch wird unter intensivem gesetztes Hexafluoraceton, entspricht. Rühren 24 Stunden auf 45 bis 50° C erwärmt. An-dertem pressure in at - 8O 0 C cooled falling off in a verde distilled with thermometer and reflux condenser. 15 g (0.26 mol) of potassium-nated distillation, 173 g of heptafluoroisopropyl-n-propyl fluoride, 33 g (0.26 mol) of dimethyl sulfate, 64 g (0.15 mol) of ether are made from the distillate through fractional stirred flasks Boiling point 67 to 68 0 C obtained, which presented a 40 perfluorooctanoyl fluoride and 100 ml dimethylform yield of 76% of theory, based on one amide. The mixture is placed under intense hexafluoroacetone, corresponds. Stirring heated to 45 to 50 ° C for 24 hours. At- . -ic schließend wird das Reaktionsgemisch auf pH 7 bis 8. -ic then the reaction mixture is adjusted to pH 7 to 8 Beispiel 5 gestellt, wasserdampfdestilliert und das RohproduktExample 5 provided, steam distilled and the crude product In einem mit Rührer, Kältekühler und Gaseinlei- 45 aus dem Destillat abgeschieden. Nach Trocknen mit tungsrohr versehenen Reaktionsgefäß werden 122 g etwas Calciumchlorid wird an einer kleinen Kolonne (2,1 Mol) Kaliumfluorid, 507 g (2,6 Mol) 1,2-Dibrom- destilliert. Nach 5 g Vorlauf vom Siedepunkt 140 bis äthan und 500 g Dimethylformamid vorgelegt. In 146 0C werden 54 g Heptadecafluoroctyl-methyläther diese Mischung werden unter Rühren 332 g (2,0 Mol) vom Siedepunkt 147 bis 149° C erhalten. Die Ausbeute Hexafluoraceton bei Raumtemperatur eingeleitet. Das 50 beträgt 50,5% der Theorie, bezogen auf eingesetztes Reaktionsgemisch wird anschließend 12 Stunden auf Perfluoroctanoylfluorid. 80 bis 850C erwärmt. Das abgekühlte Reaktionsgemisch wird mit 21 Eiswasser geschüttelt. Die sich Patentansprüchebildende untere Phase wird abgetrennt und mitSeparated from the distillate in one with a stirrer, cold cooler and gas inlet. After drying, a reaction vessel provided with a conduit tube, 122 g of some calcium chloride is distilled on a small column (2.1 mol) of potassium fluoride, 507 g (2.6 mol) of 1,2-dibromo. After 5 g of first run from boiling point 140 to ethane and 500 g of dimethylformamide submitted. In 146 0 C 54 g heptadecafluorooctyl-methyl ether, this mixture can be obtained, with stirring, 332 g (2.0 mol) of boiling point 147 to 149 ° C. The yield hexafluoroacetone initiated at room temperature. The 50 is 50.5% of theory, based on the reaction mixture used, then perfluorooctanoyl fluoride is used for 12 hours. 80 to 85 0 C heated. The cooled reaction mixture is shaken with 21 ice water. The lower phase forming the patent claims is separated and with Calciumchlorid getrocknet. Durch nachfolgende Destil- 55 1. Verfahren zur Herstellung einseitig per-Calcium chloride dried. Through the following distillation process, one-sidedly per- lation werden 396 g einer Fraktion vom Siedepunkt fluorierter aliphatischer Äther der allgemeinenlation will be 396 g of a fraction of the boiling point of fluorinated aliphatic ethers of the general 103 bis 1070C erhalten, die zu etwa 60% aus Hepta- Formel (1)103 to 107 0 C obtained, which is about 60% from hepta formula (1) fluorisopropyl-/?-bromäthyläther besteht. Der Rest RJfluoroisopropyl - /? - bromoethyl ether. The rest of RJ der Fraktion besteht aus Glykol-bis-(heptafluoriso- |the fraction consists of glycol-bis- (heptafluoriso- | propyläther) und Dibromäthan. 60 CF3 — (CFg)n — C — O — R2 (1)propyl ether) and dibromoethane. 60 CF 3 - (CFg) n - C - O - R 2 (1) Zu einem Gemisch von 168 g (3 Mol) pulverisiertem 1To a mixture of 168 g (3 mol) of powdered 1 Kaliumhydroxid und 250 g Diäthylglycol läßt man bei PPotassium hydroxide and 250 g of diethyl glycol are left at P 80° C unter Rühren 293 g des in der vorstehend beschriebenen Weise erhaltenen Gemisches zutropfen. in welcher RJ eine Trifluormethylgruppe oder ein Die durch einen auf 30° C gehaltenen Rückflußkühler 65 Fluoratom, η eine ganze Zahl von 0 bis 6 und Ra entweichenden Dämpfe werden in einer Kühlfalle kon- einen geradkettigen oder verzweigten Alkylrest von densiert, bis nichts mehr übergeht. Das Rohprodukt 1 bis 18 Kohlenstoffatomen, der in α-Stellung oder wird durch fraktionierte Destillation gereinigt. Man einer entfernteren Stellung zur Sauerstoffbrücke80 ° C with stirring 293 g of the mixture obtained in the manner described above are added dropwise. in which RJ is a trifluoromethyl group or a straight-chain or branched alkyl radical condenses in a cold trap con-a straight-chain or branched alkyl radical from 65 fluorine atoms, η an integer from 0 to 6 and R a through a reflux condenser kept at 30 ° C, η an integer from 0 to 6 and until nothing passes over . The crude product 1 to 18 carbon atoms, which is in the α-position or is purified by fractional distillation. Man a more distant position to the oxygen bridge substituiert sein kann, bedeutet, dadurch gekennzeichnet, daß man Perfluorcarbonylverbindungen der allgemeinen Formel (2)can be substituted, means, characterized in that that one perfluorocarbonyl compounds of the general formula (2) CF3-(CF2)^-C =CF 3 - (CF 2 ) ^ - C = (2)(2) in welcher Rf und η die vorstehend genannten Bedeutungen haben, nach Anlagerung von Kaliumfluorid in einem in bezug auf die Reaktionsteilnehmer inerten Lösungsmittel mit Verbindungen der allgemeinen Formel (3)in which Rf and η have the meanings given above, after addition of potassium fluoride in a solvent which is inert with respect to the reactants with compounds of the general formula (3) X —Ra (3)X —R a (3) in welcher Ra die vorstehend genannte Bedeutung hat und X ein Chlor- oder Bromatom oder einen Alkylschwefelsäurerest der allgemeinen Formel (4)in which R a has the meaning given above and X is a chlorine or bromine atom or an alkylsulfuric acid radical of the general formula (4) R3R 3 - SO2-OSO 2 -O bedeutet, worin R3 für eine Alkylgruppe, vorzugsweise eine Methyl- oder Äthylgruppe steht, umsetzt.means in which R 3 represents an alkyl group, preferably a methyl or ethyl group, is converted. 2. Verfahren nach Anspruch 1, dadurch gekennzeichnet, daß man die Umsetzung in Aceton, Tetrahydrofuran, Acetonitril, Diglycoldimethyläther, Dimethylformamid oder Dimethylsulfoxid durchführt.2. The method according to claim 1, characterized in that the reaction in acetone, Tetrahydrofuran, acetonitrile, diglycol dimethyl ether, Performs dimethylformamide or dimethyl sulfoxide. 3. Verfahren nach Anspruch 1 und 2, dadurch gekennzeichnet, daß man die bei der Umsetzung mit Verbindungen der Formel (3), worin Ra einen /J-halogenierten Alkylrest darstellt, erhaltenen Verbindungen durch Abspaltung von Halogenwasserstoff in die entsprechenden perfluorierten Vinyläther überführt.3. Process according to Claim 1 and 2, characterized in that the compounds obtained in the reaction with compounds of the formula (3) in which R a represents a / J-halogenated alkyl radical are converted into the corresponding perfluorinated vinyl ethers by splitting off hydrogen halide.
DEF49222A 1965-12-02 1966-05-17 Process for the preparation of perfluoroalkyl-alkyl-ethers Pending DE1294949B (en)

Priority Applications (9)

Application Number Priority Date Filing Date Title
DEF47817A DE1298514B (en) 1965-12-02 1965-12-02 Process for the preparation of perfluoroalkyl-alkyl-ethers
DEF49222A DE1294949B (en) 1965-12-02 1966-05-17 Process for the preparation of perfluoroalkyl-alkyl-ethers
DEF50759A DE1301807B (en) 1965-12-02 1966-11-25 Process for the preparation of perfluoroalkyl-alkyl-ethers
DEF50760A DE1302054B (en) 1965-12-02 1966-11-25 Process for the preparation of perfluoroalkyl-alkyl-ethers
ES0333931A ES333931A1 (en) 1965-12-02 1966-11-29 Procedure for obtaining perfluoalquil-alquil-eteres. (Machine-translation by Google Translate, not legally binding)
CH1711366A CH479514A (en) 1965-12-02 1966-11-30 Process for the production of unilaterally perfluorinated aliphatic ethers
NL6616938A NL6616938A (en) 1965-12-02 1966-12-01
FR85937A FR1506638A (en) 1965-12-02 1966-12-02 perfluoroalkyl-alkyl ethers and their preparation
BE690605D BE690605A (en) 1965-12-02 1966-12-02

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
DEF47817A DE1298514B (en) 1965-12-02 1965-12-02 Process for the preparation of perfluoroalkyl-alkyl-ethers
DEF49222A DE1294949B (en) 1965-12-02 1966-05-17 Process for the preparation of perfluoroalkyl-alkyl-ethers
DEF50759A DE1301807B (en) 1965-12-02 1966-11-25 Process for the preparation of perfluoroalkyl-alkyl-ethers
DEF50760A DE1302054B (en) 1965-12-02 1966-11-25 Process for the preparation of perfluoroalkyl-alkyl-ethers

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DEF47817A Pending DE1298514B (en) 1965-12-02 1965-12-02 Process for the preparation of perfluoroalkyl-alkyl-ethers
DEF49222A Pending DE1294949B (en) 1965-12-02 1966-05-17 Process for the preparation of perfluoroalkyl-alkyl-ethers
DEF50759A Pending DE1301807B (en) 1965-12-02 1966-11-25 Process for the preparation of perfluoroalkyl-alkyl-ethers
DEF50760A Pending DE1302054B (en) 1965-12-02 1966-11-25 Process for the preparation of perfluoroalkyl-alkyl-ethers

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DEF50759A Pending DE1301807B (en) 1965-12-02 1966-11-25 Process for the preparation of perfluoroalkyl-alkyl-ethers
DEF50760A Pending DE1302054B (en) 1965-12-02 1966-11-25 Process for the preparation of perfluoroalkyl-alkyl-ethers

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BE (1) BE690605A (en)
CH (1) CH479514A (en)
DE (4) DE1298514B (en)
FR (1) FR1506638A (en)
NL (1) NL6616938A (en)

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Families Citing this family (3)

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US4522995A (en) * 1983-05-02 1985-06-11 E. I. Du Pont De Nemours And Company Fluorinated alkyl ether-containing ethylenes, precursors thereto, and copolymers thereof with tetrafluoroethylene
BE1001430A6 (en) * 1988-02-05 1989-10-31 Charlier Andre Ax-beet.
JP2870577B2 (en) 1995-03-28 1999-03-17 工業技術院長 Solvent composition

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Title
None *

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Also Published As

Publication number Publication date
FR1506638A (en) 1967-12-22
DE1302054B (en) 1970-02-05
CH479514A (en) 1969-10-15
BE690605A (en) 1967-06-02
DE1301807B (en) 1969-08-28
DE1298514B (en) 1969-07-03
NL6616938A (en) 1967-06-05

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