beta-MnO2 has not been considered as an effective catalyst toward the oxygen evolution reaction due to its lack of active di-mu(2)-oxo bridged Mn centres and inaccessibility to the inner Mn atoms. We have envisioned that beta-MnO2 can be made catalytically active by making the inner Mn atoms accessible. In order to accomplish this, we have synthesized MnCO3 nanoplates via a solution route and converted them into highly porous beta-MnO2 nanoplates with very high surface area. In addition to the reduced overpotential of 450 mV at 10 mA cm(-2), the derived Tafel slope was 78.2 mV dec(-1), showing a superior catalytic activity of the porous nanoplate, which is comparable to the catalytic performance of best performing alpha-MnO2 phase. The impo...
Scalable, low-cost and highly efficient catalysis of oxygen electrocatalytic reactions (ORR/OER) are...
Abstract In this study, pristine MnO2 catalyst was synthesized by hydrothermal technique and anneale...
In this article, manganese oxide nanorods with different crystalline structures, i.e., beta-MnO2, al...
β-MnO2 has not been considered as an effective catalyst toward the oxygen evolution reaction due to ...
The development of catalysts with high intrinsic activity towards the oxygen evolution reaction (OER...
It is of great significance to design and develop the high-efficiency and low-cost bifunctional oxyg...
Development of catalysts for the electrochemical oxygen reactions, namely, oxygen reduction reaction...
In this work, three types of MnO2 nanostructures, viz., microsphere/nanosheet core−corona hierarchic...
Different nanostructures (nanoflowers, nanorods and nanotubes) of manganese dioxide (MnO2) were succ...
© 2018, Tsinghua University Press and Springer-Verlag GmbH Germany. Exposed crystal facets directly ...
Enhancing the electrocatalytic activity of low-cost transition-metal oxides for oxygen reduction rea...
Microbial fuel cells (MFCs) represent a promising technology for simultaneous bioelectricity genera...
Electrochemical oxygen reduction and evolution reactions (ORR and OER) play a vital role in the fiel...
Scalable, low-cost and highly efficient catalysis of oxygen electrocatalytic reactions (ORR/OER) are...
Exposed crystal facets directly affect the electrochemical/catalytic performance of MnO2 materials d...
Scalable, low-cost and highly efficient catalysis of oxygen electrocatalytic reactions (ORR/OER) are...
Abstract In this study, pristine MnO2 catalyst was synthesized by hydrothermal technique and anneale...
In this article, manganese oxide nanorods with different crystalline structures, i.e., beta-MnO2, al...
β-MnO2 has not been considered as an effective catalyst toward the oxygen evolution reaction due to ...
The development of catalysts with high intrinsic activity towards the oxygen evolution reaction (OER...
It is of great significance to design and develop the high-efficiency and low-cost bifunctional oxyg...
Development of catalysts for the electrochemical oxygen reactions, namely, oxygen reduction reaction...
In this work, three types of MnO2 nanostructures, viz., microsphere/nanosheet core−corona hierarchic...
Different nanostructures (nanoflowers, nanorods and nanotubes) of manganese dioxide (MnO2) were succ...
© 2018, Tsinghua University Press and Springer-Verlag GmbH Germany. Exposed crystal facets directly ...
Enhancing the electrocatalytic activity of low-cost transition-metal oxides for oxygen reduction rea...
Microbial fuel cells (MFCs) represent a promising technology for simultaneous bioelectricity genera...
Electrochemical oxygen reduction and evolution reactions (ORR and OER) play a vital role in the fiel...
Scalable, low-cost and highly efficient catalysis of oxygen electrocatalytic reactions (ORR/OER) are...
Exposed crystal facets directly affect the electrochemical/catalytic performance of MnO2 materials d...
Scalable, low-cost and highly efficient catalysis of oxygen electrocatalytic reactions (ORR/OER) are...
Abstract In this study, pristine MnO2 catalyst was synthesized by hydrothermal technique and anneale...
In this article, manganese oxide nanorods with different crystalline structures, i.e., beta-MnO2, al...