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Journal of Materials Science & Technology, ISSN 1005-0302, 08/2019, Volume 35, Issue 8, pp. 1570 - 1577
Cuprous oxide (Cu2O) is an attractive material for photoelectrochemical (PEC) hydrogen production or photovoltaic application, because of its appropriate band... 
Photoelectrochemical cell | Semiconductor films | Tuning conductivity | Comproportionation | Cuprous oxide (Cu2O) | Thin films | Electrical conductivity | Analysis | Electrochemistry | Chemical properties | Dielectric films | Copper oxide | Cuprite | Electric properties
Journal Article
by Miao, YP and Lyu, J and Yong, HY and Sigen, A and Gao, YS and Wang, WX
CHINESE JOURNAL OF POLYMER SCIENCE, ISSN 0256-7679, 06/2019, Volume 37, Issue 6, pp. 591 - 597
Cu(0)-mediated reversible deactivation radical polymerization (Cu(0)-mediated RDRP) has been demonstrated as an excellent technique to control the... 
Mutual conversion of copper species | POLYMER SCIENCE | DISPROPORTIONATION | METALLIC COPPER | SET-LRP | COMPONENTS | LIGAND STRUCTURE | ACTIVATION RATE CONSTANTS | Polymerization equilibrium | SOLVENT | ATRP | COMPROPORTIONATION | Cu-mediated RDRP | DEACTIVATION RADICAL POLYMERIZATION | Reaction parameters
Journal Article
Russian Journal of Electrochemistry, ISSN 1023-1935, 5/2019, Volume 55, Issue 5, pp. 458 - 466
The article contains results of numerical analysis of convective-diffusion transport equations for the components of the bromate anion electrochemical... 
bromate-anion | Chemistry | comproportionation | Physical Chemistry | Electrochemistry | redox-mediating autocatalysis | kinetic layer | convective diffusion | Br 2 /Br − redox couple | ELECTROCHEMISTRY | BROMIDE REACTION | MECHANISM | KINETICS | Br-2/Br- redox couple | Protons | Comparative analysis | Numerical analysis
Journal Article
Electrochemistry communications, ISSN 1388-2481, 2018, Volume 86, pp. 76 - 79
Bromate reduction from strongly acidic solutions under steady-state conditions in the presence of a very small amount of bromine has been studied... 
Comproportionation reaction | Bromine/bromide redox mediation | Disk microelectrode | Autocatalytic cycle | ELECTROCHEMISTRY | CATION ADSORPTION | ANION | LIMITING CURRENTS | 1ST | KINETICS | ACIDIC-SOLUTION | STEADY-STATE CONDITIONS | ELECTRODE | Mediation | Chemical Sciences
Journal Article
Journal Article
Russian Journal of Electrochemistry, ISSN 1023-1935, 1/2018, Volume 54, Issue 1, pp. 62 - 69
Process of bromate anion reduction at rotating disk electrode in steady state occurring owing to catalytic cycle is analyzed theoretically. The cycle consists... 
bromate-anion | Chemistry | comproportionation | Physical Chemistry | bromine/bromide redox-couple | Electrochemistry | redox-mediator autocatalysis | kinetic layer | convective diffusion | ELECTROCHEMISTRY | BROMIDE REACTION | ELECTROREDUCTION | MECHANISM | KINETICS | Protons | Chemical Sciences
Journal Article
New journal of chemistry, ISSN 1144-0546, 2018, Volume 42, Issue 1, pp. 654 - 661
The effects of appended hydroxyl groups and the chain length of a series of (imino)pyridine ligands on copper coordination and copper-catalyzed aerobic... 
GALACTOSE-OXIDASE | DIOXYGEN | MOLECULAR-STRUCTURE | AEROBIC ALCOHOL OXIDATION | COMPLEXES | COMPROPORTIONATION | ALDEHYDES | TRIAZOLE LIGANDS | SCHIFF-BASE LIGANDS | CHEMISTRY, MULTIDISCIPLINARY | WATER | Ethanol | Catalysts | Copper chlorides | Benzaldehyde | Ligands | Alcohol | Oxidation | Benzyl alcohol | Catalysis | Copper | Hydroxyl groups | Crystal structure
Journal Article
Journal of cluster science, ISSN 1040-7278, 2018, Volume 29, Issue 6, pp. 1017 - 1022
A novel high-nuclearity copper(I) cluster formulated as [Cu14(tBuC≡C)10(CH3COO)4] (1) was synthesized through comproportionation reaction under stirring... 
Comproportionation reaction | Chemistry | Physical Chemistry | Luminescence | Catalysis | Inorganic Chemistry | Copper(I)-alkynide cluster | Nanochemistry | Crystal structure | EXCITED-STATE | OCTANUCLEAR | ACETYLIDE COMPLEXES | ALKYNYL COMPLEXES | AG-I | MODULATION | GOLD(I) | CHEMISTRY, INORGANIC & NUCLEAR | Powders | Diffraction | Analysis | Green technology | X-rays | Crystals | Structure
Journal Article
Journal of Electroanalytical Chemistry, ISSN 1572-6657, 06/2018, Volume 819, pp. 240 - 250
Journal Article