Macrobicyclic d-metal tris-dioximates obtained by cross-linking with p-block elements—VII. Clathrochelate tris-dioximates of cobalt(III) formed by tin tetrachloride
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Physical and Theoretical Chemistry
Reference22 articles.
1. Macrobicyclic d-metal tris-dioximates obtained by cross-linking with p-block elements Part I. Template synthesis and properties of macrobicyclic boron-containing iron(II) dioximates
2. Macrobicyclic d-metal tris-dioximates obtained by cross-linking with p-block elements. Part III. Template synthesis, structure and properties of clathrochelate tin-containing iron(II) dioximates formed by tin tetrachloride
3. Macrobicyclic d-metal tris-dioximates obtained by cross-linking with p-block elements—V. Synthesis and properties of polymeric germanium-containing iron(II) dioximates
4. Encapsulation reaction. Synthesis of the clathro chelate 1,8-bis(fluoroboro)-2,7,9,14,15,20-hexaoxa-3,6,10,13,16,19-hexaaza-4,5,11,12,17,18-hexamethylbicyclo[6.6.6]eicosa-3,5,10,12,16,18-hexaenecobalt(III) ion
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2. Cobalt complexes with hemilabile o-iminobenzoquinonate ligands: a novel example of redox-induced electron transfer;Dalton Transactions;2018
3. Template synthesis, structure and electropolymerization of the 2-thiopheneboron-capped cobalt(II) clathrochelates;Inorganic Chemistry Communications;2013-03
4. Synthesis, structure, properties and immobilization on a gold surface of the monoribbed-functionalized tris-dioximate cobalt(ii) clathrochelates and an electrocatalytic hydrogen production from H+ ions;Dalton Transactions;2012
5. Tris‐Dioximate Cobalt(I,II,III) Clathrochelates: Stabilization of Different Oxidation and Spin States of an Encapsulated Metal Ion by Ribbed Functionalization;European Journal of Inorganic Chemistry;2010-10-29
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