Electrolyte additions are used to control the functionality of a nanostructured oxide. Dopant ions affect the size and shape of deposit crystallites and modify the host structure. Such ions can be incorporated into the deposit or form a separate oxide phase. The manganese dioxide family of polymorphs with ion-molecular sieve properties represents the additional possibilities of “template” effects of dopant ions on the phase composition, heterovalent substitution in the cationic sublattice, changes in morphology and alteration of nanocrystallite size during electrocrystallisation. The effects of electrolyte doping in electrodeposited, non-stoichiometric manganese dioxide (NH4+, Li+ and Co2+), chromium oxide-based films (Co2+, Li+) were inves...
International audienceX-ray amorphous manganese oxides were prepared by reduction of sodium permanga...
A facile synthetic route has been proposed to prepare cauliflower-like nanostructures of Cr doped Mn...
X-ray diffraction and transmission electron microscopy, including lattice imaging and convergent-bea...
International audienceNew Co- and Al-substituted manganese dioxide materials have been prepared by e...
Traditional electrode materials are based on the redox potential difference of the electrode in the ...
Manganese Oxide has a very long history of being used as anode material in Lithium Ion Battery. Ther...
New nanocrystalline manganese oxides as cathode materials for lithium batteries: electron microscopy...
Reversible cycling of MnO2 cathodes remains a challenge in alkaline rechargeable battery development...
Nanosized pure, Ag-coated and doped manganese dioxides (MDO) were prepared through a redox reaction ...
Various polymorphs of MnO2 are widely used as electrode materials in Li/MnO2 batteries. Electrolytic...
Manganese oxides are most attractive materials as cathodes for lithium secondary batteries (LIBs) fr...
Batteries and supercapacitors as electrochemical energy storage and conversion devices are continuou...
Aditional electrode materials are based on the redox potential difference of the electrode in the c...
Single nanowires of two manganese oxide polymorphs (α-MnO2 and todorokite manganese oxide), which di...
International audienceNew nanostructured manganese oxi-iodides were prepared by redox reaction of so...
International audienceX-ray amorphous manganese oxides were prepared by reduction of sodium permanga...
A facile synthetic route has been proposed to prepare cauliflower-like nanostructures of Cr doped Mn...
X-ray diffraction and transmission electron microscopy, including lattice imaging and convergent-bea...
International audienceNew Co- and Al-substituted manganese dioxide materials have been prepared by e...
Traditional electrode materials are based on the redox potential difference of the electrode in the ...
Manganese Oxide has a very long history of being used as anode material in Lithium Ion Battery. Ther...
New nanocrystalline manganese oxides as cathode materials for lithium batteries: electron microscopy...
Reversible cycling of MnO2 cathodes remains a challenge in alkaline rechargeable battery development...
Nanosized pure, Ag-coated and doped manganese dioxides (MDO) were prepared through a redox reaction ...
Various polymorphs of MnO2 are widely used as electrode materials in Li/MnO2 batteries. Electrolytic...
Manganese oxides are most attractive materials as cathodes for lithium secondary batteries (LIBs) fr...
Batteries and supercapacitors as electrochemical energy storage and conversion devices are continuou...
Aditional electrode materials are based on the redox potential difference of the electrode in the c...
Single nanowires of two manganese oxide polymorphs (α-MnO2 and todorokite manganese oxide), which di...
International audienceNew nanostructured manganese oxi-iodides were prepared by redox reaction of so...
International audienceX-ray amorphous manganese oxides were prepared by reduction of sodium permanga...
A facile synthetic route has been proposed to prepare cauliflower-like nanostructures of Cr doped Mn...
X-ray diffraction and transmission electron microscopy, including lattice imaging and convergent-bea...