EP0339986A1

Novel catalyst for hydrogenation of polymer and process for hydrogenating polymer with the catalyst.

Abstract

A hydrogenation catalyst consisting essential­ly of (A) at least one bis(cyclopentadienyl)titanium compound represented by the formula (1): wherein R¹ and R², which may be the same or different, represent halogen atoms, hydrocarbon groups, aryloxy groups, alkoxy groups or carbonyl groups, and (B) at least one lithium compound represented by the formula (2): R³O-Li      (2) wherein R³ represents a hydrocarbon group, or a reaction mixture of an organolithium compound with an alcoholic or phenolic hydroxyl group-containing compound, the (A) component/the (B) component molar ratio being 1/0.5 to 1/20, and optionally (C) at least one reducing organo­metallic compound selected from the group consisting of aluminum compounds, zinc compounds and magnesium com­pounds, the (A) component/the (C) component molar ratio being 1/0.5 to 1/20. The above hydrogenation catalyst is effectively applied to the hydrogenation of a polymer having olefinic double bonds to produce a hydrogenated polymer having a high degree of hydrogenation at a high hydrogenation rate with a high reproducibility.

EP0339986A1, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 26 April 2009, 17.4 years ago.

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33 claims: 1 independent, 32 dependent

  1. 1
    A hydrogenation catalyst consisting essential­ly of (A) at least one bis(cyclopentadienyl)titanium compound represented by the formula (1):wherein R¹ and R², which may be the same or different, represent halogen atoms, hydrocarbon groups, phenolic hydroxyl groups, alkoxy groups or carbonyl groups, and (B) at least one lithium compound represented by the formula (2): R³O-Li      (2) wherein R³ represents a hydrocarbon group, or a reaction mixture of an organolithium compound with an alcoholic or phenolic hydroxyl group-containing compound, the (A) component/the (B) component molar ratio being 1/0.5 to 1/20.
  2. 2
    The hydrogenation catalyst according to Claim 1, wherein the (A) component is selected from the group consisting of bis(cyclopentadienyl)titaniumdimethyl, bis(cyclopentadienyl)titaniumdiethyl, bis(cyclopenta­dienyl)titaniumdi-n-butyl, bis(cyclopentadienyl)­titaniumdi-sec-butyl, bis(cyclopentadienyl)­ titaniumdihexyl, bis(cyclopentadienyl)titaniumdioctyl, bis(cyclopentadienyl)titaniumdimethoxide, bis(cyclo­pentadienyl)titaniumdiethoxide, bis(cyclopentadienyl)­titaniumdibutoxide, bis(cyclopentadienyl)titanium­diphenyl, bis(cyclopentadienyl)titaniumdi-m-tolyl, bis(cyclopentadienyl)titaniumdi-p-tolyl, bis(cyclo­pentadienyl)titaniumdi-m,p-xylyl, bis(cyclopentadienyl)­titaniumdi-4-ethylphenyl, bis(cyclopentadienyl)­titaniumdi-4-butylphenyl, bis(cyclopentadienyl)­titaniumdi-4-hexylphenyl, bis(cyclopentadienyl)titanium diphenoxide, bis(cyclopentadienyl)titanium difluoride, bis(cyclopentadienyl)titanium dichloride, bis(cyclo­pentadienyl)titanium dibromide, bis(cyclopentadienyl)­titanium diiodide, bis(cyclopentadienyl)titanium­dicarbonyl, bis(cyclopentadienyl)titaniumchloridemethyl, bis(cyclopentadienyl)titanium chloride ethoxide, bis(cyclopentadienyl)titanium chloride phenoxide and bis(cyclopentadienyl)titaniumdibenzyl.
  3. 3
    The hydrogenation catalyst according to Claim 1, wherein the (A) component is selected from the group consisting of bis(cyclopentadienyl)titaniumdimethyl, bis(cyclopentadienyl)titaniumdi-n-butyl, bis(cyclo­pentadienyl)titanium dichloride, bis(cyclopentadienyl)­titaniumdiphenyl, bis(cyclopentadienyl)titaniumdi-p-­tolyl, bis(cyclopentadienyl)titaniumdicarbonyl and bis(cyclopentadienyl)titaniumdibenzyl.
  4. 4
    The hydrogenation catalyst according to Claim 1, wherein the (A) component is bis(cyclopentadienyl)­ titanium dichloride.
  5. 5
    The hydrogenation catalyst according to Claim 1, wherein the (B) component is at least one lithium compound selected from the group consisting of methoxy­lithium, ethoxylithium, n-propoxylithium, i-propoxy­lithium, n-butoxylithium, sec-butoxylithium, t-butoxy­lithium, pentyloxylithium, octyloxylithium, phenoxy­lithium, 4-methylphenoxylithium, 2,6-di-t-butyl-4-­methylphenoxylithium and benzyloxylithium.
  6. 6
    The hydrogenation catalyst according to Claim 5, wherein the lithium compound is 2,6-di-t-butyl-4-­methylphenoxylithium.
  7. 7
    The hydrogenation catalyst according to Claim 1, wherein the (B) component is a reaction mixture of an organolithium compound with an alcoholic or phenolic hydroxyl group-containing compound in a molar ratio of the alkyllithium/the alcoholic or phenolic hydroxyl group-containing compound of 5/1 to 1/2.
  8. 8
    The hydrogenation catalyst according to Claim 7, wherein the organolithium compound is selected from the group consisting of methyllithium, ethyllithium, n-­propyllithium, n-butyllithium, phenyllithium, p-tolyl­lithium and xylyllithium.
  9. 9
    The hydrogenation catalyst according to Claim 7, wherein the organolithium compound is n-butyllithium or sec-butyllithium.
  10. 10
    The hydrogenation catalyst according to Claim 7, wherein the alcoholic or phenolic hydroxyl group-­ containing compound is selected from the group consist­ing of methanol, ethanol, n-propanol, i-propanol, n-­butanol, sec-butanol, t-butanol, 1-pentanol, 2-pentanol, 3-pentanol, hexanol, heptanol, octanol, nonanol, decanol, undecanol, lauryl alcohol, 1,3-dichloro-2-­propanol, allyl alcohol, cyclohexanol, cyclopentanol, phenol, o-bromophenol, dichlorophenol, trichlorophenol, o-cresol, m-cresol, p-cresol, p-allylphenol, 2,6-di-t-­butyl-p-cresol, xylenol, dihydroxyanthraquinone, dihydroxycoumarine, 1-hydroxyanthranquinone, m-hydroxy­benzyl alcohol, resolcinol and leucaurine.
  11. 11
    The hydrogenation catalyst according to Claim 7, wherein the alcoholic or phenolic hydroxyl group-­containing compound is 2,6-di-t-butyl-p-cresol.
  12. 12
    The hydrogenation catalyst according to Claim 7, wherein the reaction mixture is that of n-butyl­lithium or sec-butyllithium with 2,6-di-t-butyl-p-­cresol.
  13. 13
    The hydrogenation catalyst according to Claim 7, wherein the molar ratio of the alkyllithium/the alcoholic or phenolic hydroxyl group-containing compound is 3/1 to 1/1.5.
  14. 14
    The hydrogenation catalyst according to Claim 1, which further comprises (C) at least one reducing organometallic compound selected from the group consist­ing of aluminum compounds, zinc compounds and magnesium compounds, the (A) component/the (C) component molar ratio being 1/0.5 to 1/20.
  15. 15
    The hydrogenation catalyst according to Claim 14, wherein the (A) component/the (C) component molar ratio is 1/1 to 1/10.
  16. 16
    The hydrogenated catalyst according to Claim 14, wherein the aluminum compounds include trimethyl­aluminum, triethylaluminum, triisobutylaluminum, tri­phenylaluminum, diethylaluminum chloride, ethylaluminum dichloride, methylaluminum sesquichloride, ethylaluminum sesquichloride, diethylaluminum hydride, diisobutyl­aluminum hydride, triphenylaluminum and tri(2-ethyl­hexyl)aluminum;the zinc compounds include diethylzinc, bis(cyclopentadienyl)zinc and dihexylzinc;and the magnesium compounds include dimethylmagnesium, diethyl­magnesium, methylmagnesium bromide, methylmagnesium chloride, ethylmagnesium bromide, phenylmagnesium bromide, phenylmagnesium chloride and dimethylmagnesium chloride.
  17. 17
    The hydrogenation catalyst according to Claim 14, wherein the (C) component is selected from the group consisting of triethylaluminum, triisobutylaluminum, diethylaluminum chloride and ethylaluminum dichloride.
  18. 18
    The hydrogenation catalyst according to Claim 14, wherein the (A) component/the (C) component molar ratio is 1/1 to 1/10.
  19. 19
    A process for hydrogenating a polymer having olefinic double bonds which comprises contacting the polymer with hydrogen in an inert organic solvent in the presence of the hydrogenation catalyst of Claim 1 or 14.
  20. 20
    The process according to Claim 19, wherein the polymer having olefinic double bonds is a conjugated diene homopolymer, a copolymer of conjugated dienes or a random, block or graft copolymer of a conjugated diene and at least one olefinic monomer copolymerizable therewith.
  21. 21
    The process according to Claim 20, wherein the conjugated diene has 4 to 12 carbon atoms.
  22. 22
    The process according to Claim 21, wherein the conjugated diene having 4 to 12 carbon atoms includes 1,3-budtadiene, isoprene, 2,3-dimethyl-1,3-butadiene, 1,3-pentadiene, 2-methyl-1,3-pentadiene, 1,3-hexadiene, 4,5-diethyl-1,3-octadiene, 3-butyl-1,3-octadiene and chloroprene.
  23. 23
    The process according to Claim 21, wherein the conjugated diene is selected from the group consisting of 1,3-butadiene and isoprene.
  24. 24
    The process according to Claim 19, wherein the polymer having olefinic double bonds is polybutadiene, polyisoprene or a butadiene/isoprene copolymer.
  25. 25
    The process according to Claim 19, wherein the polymer having olefinic double bonds has a 1,2-vinyl content of 10% or more.
  26. 26
    The process according to Claim 19, wherein the polymer having olefinic double bonds has a molecular weight of 1,000 to 1,000,000.
  27. 27
    The process according to Claim 19, wherein the inert organic solvent is selected from the group consisting of aliphatic hydrocarbons, alicyclic hydro­carbons, aromatic hydrocarbons and ethers.
  28. 28
    The process according to Claim 27, wherein the aliphatic hydrocarbons include n-pentane, n-hexane, n­heptane and n-octane;the alicyclic hydrocarbons include cyclopentane, cyclohexane and cycloheptane;the aromatic hydrocarbons include benzene, toluene, xylene and ethyl­benzene;and the ethers include diethyl ether and tetrahydrofuran.
  29. 29
    The process according to Claim 19, wherein a solution of the polymer having olefinic double bonds in the inert organic solvent is kept at a desired tempera­ture, the hydrogenation catalyst is added thereto with or without stirring and the hydrogen is subsequently introduced thereinto to reach a desired pressure to hydrogenate the polymer.
  30. 30
    The process according to Claim 19, wherein the alkylaluminum is first added to the inert organic solvent, the alcoholic or phenolic hydroxyl group-­containing compound is then added thereto, the (A) component is then added and thereafter the polymer having olefinic double bonds is hydrogenated with hydrogen.
  31. 31
    The process according to Claim 19, wherein the amount of the hydrogenation catalyst is 0.01 to 20 millimoles per 100 g of the polymer having olefinic double bonds.
  32. 32
    The process according to Claim 31, wherein hydrogen molecule is introduced in the form of a gas into a solution of the polymer having olefinic double bonds in the inert organic solvent with stirring in the presence of the hydrogenation catalyst at a temperature of 0° to 120°C.
  33. 33
    The process according to Claim 32, wherein the hydrogen pressure is 1 to 100 kg/cm²G.
Independent claims33