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  2. Coordination sphere - Wikipedia

    en.wikipedia.org/wiki/Coordination_sphere

    Compared to the first coordination sphere, the second coordination sphere has a less direct influence on the reactivity and chemical properties of the metal complex. Nonetheless the second coordination sphere is relevant to understanding reactions of the metal complex, including the mechanisms of ligand exchange and catalysis.

  3. Chloro(pyridine)cobaloxime - Wikipedia

    en.wikipedia.org/wiki/Chloro(pyridine)cobaloxime

    Chloro(pyridine)cobaloxime is a coordination compound containing a Co III center with octahedral coordination. It has been considered as a model compound of vitamin B 12 for studying the properties and mechanism of action of the vitamin.

  4. Hydration number - Wikipedia

    en.wikipedia.org/wiki/Hydration_number

    This first coordination sphere is encased in further solvation shells, whereby water bonds to the coordinated water via hydrogen bonding. For charged species , the orientation of water molecules around the solute dependent on its radius and charge, [ 1 ] with cations attracting water’s electronegative oxygen and anions attracting the hydrogens.

  5. Solvation shell - Wikipedia

    en.wikipedia.org/wiki/Solvation_shell

    The solvation shell number of a dissolved electrolyte can be linked to the statistical component of the activity coefficient of the electrolyte and to the ratio between the apparent molar volume of a dissolved electrolyte in a concentrated solution and the molar volume of the solvent (water): [clarification needed]

  6. Coordination number - Wikipedia

    en.wikipedia.org/wiki/Coordination_number

    The most common coordination number for d-block transition metal complexes is 6. The coordination number does not distinguish the geometry of such complexes, i.e. octahedral vs trigonal prismatic. For transition metal complexes, coordination numbers range from 2 (e.g., Au I in Ph 3 PAuCl) to 9 (e.g., Re VII in [ReH 9] 2−).

  7. Coordination geometry - Wikipedia

    en.wikipedia.org/wiki/Coordination_geometry

    The coordination geometry of an atom is the geometrical pattern defined by the atoms around the central atom. The term is commonly applied in the field of inorganic chemistry, where diverse structures are observed. The coordination geometry depends on the number, not the type, of ligands bonded to the metal centre as well as their locations.

  8. Water of crystallization - Wikipedia

    en.wikipedia.org/wiki/Water_of_crystallization

    Formula of hydrated metal ion sulfate Coordination sphere of the metal ion Equivalents of water of crystallization that are not bound to M mineral name Remarks MgSO 4 (H 2 O) [Mn(μ-H 2 O)(μ 4,-κ 1-SO 4) 4] [31] none: kieserite: see Mn, Fe, Co, Ni, Zn analogues MgSO 4 (H 2 O) 4 [Mg(H 2 O) 4 (κ′,κ 1-SO 4)] 2: none: sulfate is bridging ...

  9. Hexol - Wikipedia

    en.wikipedia.org/wiki/Hexol

    In chemistry, hexol is a cation with formula {[Co(NH 3) 4 (OH) 2] 3 Co} 6+ — a coordination complex consisting of four cobalt cations in oxidation state +3, twelve ammonia molecules NH 3, and six hydroxy anions HO −, with a net charge of +6. The hydroxy groups act as bridges between the central cobalt atom and the other three, which carry ...

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