3.5k VIEWS. This page was last edited on 10 June 2020, at 19:54. Which of the following compound will not undergo azo coupling reaction with benzene diazonium chloride? When aqueous solution of benzene diazonium chloride is warmed with Cu, 5) Commercial preparation of chloro benzene (Raschig process). These reactions proceed via the oxidative addition of iodobenzene. The aromatic amide (0.1moles), which optionally was provided previously with protective groups for protecting further reactive groups, is dissolved or Suspended in half concentrated mineral acid (1mole) and alcohol (C1-C4 100mL)is added. ��8y��?� ����6����գ%� �x>:� �J��lkG�#@.���^������^�+���xT��o��Q��U�GU��V�U�[�y�B���h��n�h���Z����G; �>��u���� P���УY�����@���_� �#O;���G�]��1����)��+=5��w���hɡ� ,�� ��@N� ;�9?�\ ���diH�.�������#S@]�?��� �2�G�7�ɬ]�z؟������l�\���P/�#� �NM��`�P�FO0$pX>zѠ��z/�rq 9��fA��d��9�&ge���ZP��tq��kI���������� t�AN.� �:���Y!��Q��� �`Hޅvz�s�>��?�����q�@=���Zt�yB⏻�?I�ь@}������� ;ASSIGNORS:PAPARATTO, GIUSEPPE;SAETTI, MARCO;REEL/FRAME:004675/0368, PATENT EXPIRED DUE TO NONPAYMENT OF MAINTENANCE FEES UNDER 37 CFR 1.362, A method for the synthesis of iodobenzene, Process for preparing iodinated aromatic compounds and the regeneration of catalysts used therein, Process for production of iodine compounds and process for production of high-purity 5-iodo-2-methylbenzoic acid, Process for producing 5-iodo-2-methylbenzoic acid, Cation-exchanged zeolite catalyst and process for producing mono-iodo benzene through transiodination by using it, Process for the catalytic trans-halogenation of a poly-iodo benzene, Process for the catalytic trans-alogenzaione of a poly-iodo benzene and in particular of a di-iodo-benzene, Processes for preparing iodinated aromatic compounds, Process for preparing iodinated aromatic compounds, Selective liquid phase disproportionation catalysts for iodoaromatics, Process for preparing iodinated substituted aromatic compounds, Liquid phase isomerization of iodoaromatic compounds, Oxyiodination incorporating an iodine generator for the conversion of methyl iodide to iodine, Novel method for oxyiodination product partial purification, Liquid-phase process for the oxyiodination of naphthalene, Process for regenerating a zeolite catalyst, Method of preparing mono-iodo benzene through transiodination, Manufacturing process for iodinated aromatic compounds, Method of preparing iodinated aromatic compounds, Manufacturing Process for iodinated aromatic compounds, Catalyst containing copper phosphate and silver phosphate useful in the oxygenation of hydrogen halides, Composite catalyst for halogenation and condensation of alkanes, Continuous process for converting natural gas to liquid hydrocarbons, Methyl halides and methyl alcohol from methane, Catalyst for the manufacture of ethylene oxide, Palladium (II)-catalyzed double carbonylation of organic halides in the presence of amines: α-Ketoamide synthesis, Hydroxylation of benzene with dinitrogen monoxide over H-ZSM-5 zeolite, Integrated process for the preparation of olefin oxides, Process for producing ethylene dichloride, Process for the preparation of 1,1,1,2-tetrafluorethane, Hydrodehalogenation of 1,1,1,2-tetrafluoro chloroethane in the presence of supported pd, Hydrogen peroxide method using optimized H+ and BR- concentrations, Process for preparing 1,1,1,2-tetrafluoroethane, Preparation of furan by decarbonylation of furfural, Regeneration and stabilization of dehydrogenation catalysts, Catalytic vapor phase process for producing dihydrocarbyl carbonates, Catalytic process for converting lower alkanes to esters, alcohols, and to hydrocarbons, Catalytic reaction of methane with carbon dioxide, Lapse for failure to pay maintenance fees, Expired due to failure to pay maintenance fee, Information on status: patent discontinuation.
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