Intelligent self-assembly of nanobuilding blocks during the formation of Ni(OH)(2) single crystals with concave polyhedron structure was studied. The nickel hydroxide nanoplates pile up together with the aid of hydrazine molecules and grow along the [001] direction to form the brand-new geometry of concave polyhedrons. The novel nanostructure looks like a regularly twisted triangular prism wringed smoothly in the middle and could be attributed to the inherent spatial asymmetry of the nickel hydroxide crystal structure and the hydrogen bonds linked with the added hydrazine molecules. On the basis of the putative mechanism, polyhedrons with different longitudinal sizes (0.3-1 mu m) were synthesized by adjusting the quantities of hydrazine. We...
In this paper, we report in situ growth of hexagonal prism-like Ni(OH)2 microrods via one-step hydro...
The oxygen evolution reaction (OER) is involved in various renewable energy systems, such as water‐s...
Structural control in micro- and nanometer scales is necessary to design highly functional materials...
We report the synthesis, characterization, and electrochemistry properties of ribbon- and boardlike ...
We report here the successful synthesis of one-dimensional (ID) nanoribbons of nickel hydroxide crys...
Learning from the classical crystallization mode and the conventional oriented attachment mode, we d...
We demonstrate here that single-crystal ??-Ni(OH)2 nanosheets can be selectively synthesized in larg...
Constructing complex nanostructures has become increasingly important in the development of hydrogen...
Nanostructural beta-nickel hydroxide (beta-Ni(OH)(2)) plates were prepared using the microwave hydro...
The nickel hydroxides (beta-Ni(OH)(2)) with different shapes such as hexagonal nanosheets, irregular...
Abstract Three-dimensional (3D) flower-like hierarchicalβ-Ni(OH)2hollow architectures were synt...
beta-Ni(OH)(2) hierarchical micro-flowers, hierarchical hollow microspheres and nanosheets were synt...
International audienceTrinuclear building block {Fe(2)NiO(Piv)(6)} (Piv = pivalate), which possessed...
A mesoporous nanoplate network of two-dimensional (2D) layered nickel hydroxide Ni(OH)2 intercalated...
alpha-Ni(OH)(2) with hydrotalcite-like structure was prepared by precipitation of nickel acetate and...
In this paper, we report in situ growth of hexagonal prism-like Ni(OH)2 microrods via one-step hydro...
The oxygen evolution reaction (OER) is involved in various renewable energy systems, such as water‐s...
Structural control in micro- and nanometer scales is necessary to design highly functional materials...
We report the synthesis, characterization, and electrochemistry properties of ribbon- and boardlike ...
We report here the successful synthesis of one-dimensional (ID) nanoribbons of nickel hydroxide crys...
Learning from the classical crystallization mode and the conventional oriented attachment mode, we d...
We demonstrate here that single-crystal ??-Ni(OH)2 nanosheets can be selectively synthesized in larg...
Constructing complex nanostructures has become increasingly important in the development of hydrogen...
Nanostructural beta-nickel hydroxide (beta-Ni(OH)(2)) plates were prepared using the microwave hydro...
The nickel hydroxides (beta-Ni(OH)(2)) with different shapes such as hexagonal nanosheets, irregular...
Abstract Three-dimensional (3D) flower-like hierarchicalβ-Ni(OH)2hollow architectures were synt...
beta-Ni(OH)(2) hierarchical micro-flowers, hierarchical hollow microspheres and nanosheets were synt...
International audienceTrinuclear building block {Fe(2)NiO(Piv)(6)} (Piv = pivalate), which possessed...
A mesoporous nanoplate network of two-dimensional (2D) layered nickel hydroxide Ni(OH)2 intercalated...
alpha-Ni(OH)(2) with hydrotalcite-like structure was prepared by precipitation of nickel acetate and...
In this paper, we report in situ growth of hexagonal prism-like Ni(OH)2 microrods via one-step hydro...
The oxygen evolution reaction (OER) is involved in various renewable energy systems, such as water‐s...
Structural control in micro- and nanometer scales is necessary to design highly functional materials...