A facile method of synthesizing MnO2 nanowires on amine functionalized graphite nanosheet (AFGNS) has been accomplished. A probable mechanism has been proposed where the -NH2 groups on the AFGNS surface create a weakly basic environment assisting the reduction of KMnO4 to MnO2 nanoparticles followed by their anchoring and oriented growth to form MnO2 nanowires. The as prepared MnO2@AFGNS composite has been efficiently used as a selective heterogeneous catalyst for oxidation of primary and secondary benzyl alcohols to corresponding carbonyl compounds under aerobic condition in high yields in the absence of any other oxidizing or activating agent. While MnO2 is considered as the most efficient and selective catalyst for the oxidation of benzy...
Nanocomposites of highly reduced graphene oxide (HRG) and ZnOx nanoparticles doped manganese carbona...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
Three one-dimensional MnO2 nanoparticles with different crystallographic phases, alpha-, beta-, and ...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
Heterogeneous interface in materials has recently attracted much attention because of its crucial ...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
AbstractThe catalytic activity of copper-manganese (CuMn2) mixed oxide nanoparticles (Cu/Mn=1:2) has...
Ag2O nanoparticles-doped MnO2 decorated on different percentages of highly reduced graphene oxide (H...
AbstractCommercially available activated MnO2 has been investigated as a catalyst for the oxidation ...
Ag2O nanoparticles-doped MnO2 decorated on different percentages of highly reduced graphene oxide (H...
Nanocomposites of highly reduced graphene oxide (HRG) and ZnOx nanoparticles doped manganese carbona...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
Three one-dimensional MnO2 nanoparticles with different crystallographic phases, alpha-, beta-, and ...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
Heterogeneous interface in materials has recently attracted much attention because of its crucial ...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
AbstractThe catalytic activity of copper-manganese (CuMn2) mixed oxide nanoparticles (Cu/Mn=1:2) has...
Ag2O nanoparticles-doped MnO2 decorated on different percentages of highly reduced graphene oxide (H...
AbstractCommercially available activated MnO2 has been investigated as a catalyst for the oxidation ...
Ag2O nanoparticles-doped MnO2 decorated on different percentages of highly reduced graphene oxide (H...
Nanocomposites of highly reduced graphene oxide (HRG) and ZnOx nanoparticles doped manganese carbona...
MnO2 was synthesised as a catalyst support material using a hydrothermal method. This involved react...
Three one-dimensional MnO2 nanoparticles with different crystallographic phases, alpha-, beta-, and ...