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  2. Copper(II) chloride - Wikipedia

    en.wikipedia.org/wiki/Copper(II)_chloride

    CuCl 2 reacts with HCl or other chloride sources to form complex ions: the red [CuCl 3] − (found in potassium trichloridocuprate(II) K[CuCl 3]) (it is a dimer in reality, [Cu 2 Cl 6] 2−, a couple of tetrahedrons that share an edge), and the green or yellow [CuCl 4] 2− (found in potassium tetrachloridocuprate(II) K 2 [CuCl 4]). [5] [14] [15]

  3. Copper(I) chloride - Wikipedia

    en.wikipedia.org/wiki/Copper(I)_chloride

    4 CuCl + O 2 + 2 H 2 O → Cu 3 Cl 2 (OH) 4 + CuCl 2 Copper(I) chloride catalyzes a variety of organic reactions , as discussed above. Its affinity for carbon monoxide in the presence of aluminium chloride is exploited in the COPure SM process.

  4. Deacon process - Wikipedia

    en.wikipedia.org/wiki/Deacon_process

    4 HCl + O 2 → 2 Cl 2 + 2H 2 O The reaction takes place at about 400 to 450 °C in the presence of a variety of catalysts, including copper chloride (CuCl 2 ). Three companies developed commercial processes for producing chlorine based on the Deacon reaction: [ 1 ]

  5. Glossary of chemical formulae - Wikipedia

    en.wikipedia.org/wiki/Glossary_of_chemical_formulae

    C 4 H 7 NO 3: aceturic acid: C 4 H 7 NO 4: aspartic acid Asp: 56-84-8 C 4 H 8: cyclobutane: 287-23-0 C 4 H 8 N 2 O 3: asparagine Asn: 70-47-3 C 4 H 8 O: tetrahydrofuran THF: 109-99-9 C 4 H 8 O 2: ethyl acetate: C 4 H 8 O 3: gamma-Hydroxybutyric acid: 591-81-1 C 4 H 9 ClHg n-Butylmercuric chloride: 543-63-5 C 4 H 9 Li: n-butyllithium: C 4 H 9 NO ...

  6. Copper(II) acetate - Wikipedia

    en.wikipedia.org/wiki/Copper(II)_acetate

    Copper(II) acetate, also referred to as cupric acetate, is the chemical compound with the formula Cu(OAc) 2 where AcO − is acetate (CH 3 CO − 2).The hydrated derivative, Cu 2 (OAc) 4 (H 2 O) 2, which contains one molecule of water for each copper atom, is available commercially.

  7. Wacker process - Wikipedia

    en.wikipedia.org/wiki/Wacker_process

    No H/D exchange effects seen in this reaction. Experiments using C 2 D 4 in water generate CD 3 CDO, and runs with C 2 H 4 in D 2 O generate CH 3 CHO. Thus, keto-enol tautomerization is not a possible mechanistic step. Negligible kinetic isotope effect with fully deuterated reactants (⁠ k H / k D ⁠ =1.07).

  8. Copper–chlorine cycle - Wikipedia

    en.wikipedia.org/wiki/Copper–chlorine_cycle

    Atomic Energy of Canada Limited has demonstrated experimentally a CuCl electrolyzer in which hydrogen is produced electrolytically at the cathode and Cu(I) is oxidized to Cu(II) at the anode, thereby combining above steps 1 and 4 to eliminate the intermediate production and subsequent transport of solid copper.

  9. Dicopper chloride trihydroxide - Wikipedia

    en.wikipedia.org/wiki/Dicopper_chloride_trihydroxide

    12 NaCuCl 2 + 3 O 2 + 2 H 2 O → 4 Cu 2 (OH) 3 Cl + 4 CuCl 2 + 12 NaCl. The product from this process is of fine particle with size of 1 ~ 5 μm and is usable as an agricultural fungicide. [6] Astable, free-flowing, non-dusty green powder with typical particle size of 30 ~ 100 microns has been used in preparation of uniform animal feed ...