Modulation of material physical and chemical properties through selective surface engineering is currently one of the most active research fields, aimed at optimizing functional performance for applications. The activity of exposed crystal planes determines the catalytic, sensory, photocatalytic, and electrochemical behavior of a material. In the research on nanomagnets, it opens up new perspectives in the fields of nanoelectronics, spintronics, and quantum computation. Herein, we demonstrate controllable magnetic modulation of α-MnO 2 nanowires, which displayed surface ferromagnetism or antiferromagnetism, depending on the exposed plane. First-principles density functional theory calculations confirm that both Mn- and O-terminated α-MnO2(1...
The activity of exposed crystal facets directly determines its physicochemical properties. Thus, acq...
The structural and electronic properties of MnO2 based electrocatalysts are key factors determining ...
In this research, Mn-doped ZnO nanorods were synthesized by a solvothermal method and their magnetic...
Modulation of material physical and chemical properties through selective surface engineering is cur...
Modulation of material physical and chemical properties through selective surface engineering is cur...
We have studied the microstructure, surface states, valence fluctuations, magnetic properties, and e...
One-dimensional α-MnO2 nanowires with a controlled width of 10–20 nm have been developed by means of...
We report the synthesis of MnO2-delta microspheres using hydrothermal and conventional chemical reac...
Using first-principle calculations, the surface energy, cohesive energy, and electronic properties o...
ABSTRACT: MnO2 is a technologically important material for energy storage and catalysis. Recent inve...
The manipulation of the molecular spin state by atom doping is an attractive strategy to confer desi...
Achieving accurate description and understanding of the chemical and physical properties of complex ...
© 2018, Tsinghua University Press and Springer-Verlag GmbH Germany. Exposed crystal facets directly ...
Based on the density functional theory, we study the magnetic coupling properties of Mn-doped ZnO na...
Achieving accurate description and understanding of the chemical and physical properties of complex ...
The activity of exposed crystal facets directly determines its physicochemical properties. Thus, acq...
The structural and electronic properties of MnO2 based electrocatalysts are key factors determining ...
In this research, Mn-doped ZnO nanorods were synthesized by a solvothermal method and their magnetic...
Modulation of material physical and chemical properties through selective surface engineering is cur...
Modulation of material physical and chemical properties through selective surface engineering is cur...
We have studied the microstructure, surface states, valence fluctuations, magnetic properties, and e...
One-dimensional α-MnO2 nanowires with a controlled width of 10–20 nm have been developed by means of...
We report the synthesis of MnO2-delta microspheres using hydrothermal and conventional chemical reac...
Using first-principle calculations, the surface energy, cohesive energy, and electronic properties o...
ABSTRACT: MnO2 is a technologically important material for energy storage and catalysis. Recent inve...
The manipulation of the molecular spin state by atom doping is an attractive strategy to confer desi...
Achieving accurate description and understanding of the chemical and physical properties of complex ...
© 2018, Tsinghua University Press and Springer-Verlag GmbH Germany. Exposed crystal facets directly ...
Based on the density functional theory, we study the magnetic coupling properties of Mn-doped ZnO na...
Achieving accurate description and understanding of the chemical and physical properties of complex ...
The activity of exposed crystal facets directly determines its physicochemical properties. Thus, acq...
The structural and electronic properties of MnO2 based electrocatalysts are key factors determining ...
In this research, Mn-doped ZnO nanorods were synthesized by a solvothermal method and their magnetic...