FI (list display)

  • C07C5/00
  • Preparation of hydrocarbons from hydrocarbons containing the same number of carbon atoms HB CC 4H006
  • C07C5/02
  • .by hydrogenation HB CC 4H006
  • C07C5/03
  • ..of non-aromatic carbon-to-carbon double bonds [3] HB CC 4H006
  • C07C5/05
  • ...Partial hydrogenation [3] HB CC 4H006
  • C07C5/08
  • ..of carbon-to-carbon triple bonds HB CC 4H006
  • C07C5/09
  • ...to carbon-to-carbon double bonds [3] HB CC 4H006
  • C07C5/10
  • ..of aromatic six-membered rings HB CC 4H006
  • C07C5/11
  • ...Partial hydrogenation [3] HB CC 4H006
  • C07C5/13
  • ..with simultaneous isomerisation [3] HB CC 4H006
  • C07C5/22
  • .by isomerisation (with simultaneous hydrogenation C07C 5/13) HB CC 4H006
  • C07C5/23
  • ..Rearrangement of carbon-to-carbon unsaturated bonds [3] HB CC 4H006
  • C07C5/25
  • ...Migration of carbon-to-carbon double bonds [3] HB CC 4H006
  • C07C5/27
  • ..Rearrangement of carbon atoms in the hydrocarbon skeleton [3] HB CC 4H006
  • C07C5/29
  • ...changing the number of carbon atoms in a ring while maintaining the number of rings [3] HB CC 4H006
  • C07C5/31
  • ...changing the number of rings [3] HB CC 4H006
  • C07C5/32
  • .by dehydrogenation with formation of free hydrogen [2] HB CC 4H006
  • C07C5/327
  • ..Formation of non-aromatic carbon-to-carbon double bonds only [3] HB CC 4H006
  • C07C5/333
  • ...Catalytic processes [3] HB CC 4H006
  • C07C5/35
  • ..Formation of carbon-to-carbon triple bonds only [3] HB CC 4H006
  • C07C5/367
  • ..Formation of an aromatic six-membered ring from an existing six-membered ring, e.g. dehydrogenation of ethylcyclohexane to ethylbenzene [3] HB CC 4H006
  • C07C5/373
  • ..with simultaneous isomerisation [3] HB CC 4H006
  • C07C5/387
  • ...of cyclic compounds containing no six-membered ring to compounds containing a six-membered aromatic ring [3] HB CC 4H006
  • C07C5/393
  • ...with cyclisation to an aromatic six-membered ring, e.g. dehydrogenation of n-hexane to benzene [3] HB CC 4H006
  • C07C5/41
  • ....Catalytic processes [3] HB CC 4H006
  • C07C5/42
  • .by dehydrogenation with a hydrogen acceptor HB CC 4H006
  • C07C5/44
  • ..with a halogen or a halogen-containing compound as an acceptor [2] HB CC 4H006
  • C07C5/46
  • ..with sulfur or a sulfur-containing compound as an acceptor [2] HB CC 4H006
  • C07C5/48
  • ..with oxygen as an acceptor [2] HB CC 4H006
  • C07C5/50
  • ..with an organic compound as an acceptor [2] HB CC 4H006
  • C07C5/52
  • ...with a hydrocarbon as an acceptor, e.g. hydrocarbon disproportionation, i.e. 2 CnHp→ CnHp+q + CnHp-q [2] HB CC 4H006
  • C07C5/54
  • ..with an acceptor system containing at least two compounds provided for in more than one of groups C07C 5/44-C07C 5/50 [3] HB CC 4H006
  • C07C5/56
  • ...containing only oxygen and either halogens or halogen-containing compounds [3] HB CC 4H006
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