A free-standing nanoporous YNiCo metal/metal-oxide composite with hierarchical porosity is fabricated by chemically dealloying Al85Y6Ni6Co3 metallic glass in alkaline solutions. The mixed core-shell-like metal/metal-oxide structure formed during dealloying due to the active properties of these metals. Time-dependent etching experiments suggest that the formation of large and small pores occur simultaneously, which may be related to the different dissolution rate of Al at different sites. The nanoporous composite with a highly conductive metal core exhibits a high areal capacitance. Moreover, this strategy can be extended to fabricate other nanoporous composites considering that the composition of metallic glass can be easily tuned. (C) 2015...
The physical and chemical properties shown by nanoporous metals, related to their unique structure, ...
Transition metal oxides (TMOs) have attracted significant attention for energy storage applications ...
A feasible strategy was developed to fabricate nanoporous iron-based metallic glasses (npFe-MGs) by ...
Dealloying, a famous ancient etching technique, was used to produce nanoporous metals decades ago. W...
Nanoporous metals represent a unique class of materials with promising properties for a wide set of ...
Nanoporous metals prepared via dealloying or selective leaching of solid solution alloys and compoun...
The beauty of dealloying, i.e., the selective dissolution of an alloy, lies in the spontaneous forma...
Nanoporous metal ribbons including Au, Pd, Pt, Ag, and Cu can be fabricated through chemical dealloy...
Porous metals and alloys have many important characteristics such as light weight, high surface area...
Hierarchically porous metals possess intriguing high accessibility of matter molecules and unique co...
Nanoporous metals can be fabricated by dealloying, which is one of the reactions that occur during t...
In this work, a flexible three-dimensional nanoporous bimetallic Cu-Ag (NPCuAg) has been fabricated ...
Nanoparticles of silver and copper were grown at the glass-crystal interfaces within a silicate glas...
Impregnation of Phase Change Materials (PCMs) into a porous medium is a promising way to stabilize t...
Solution-phase processing presents an attractive avenue for building unique architectures from a wid...
The physical and chemical properties shown by nanoporous metals, related to their unique structure, ...
Transition metal oxides (TMOs) have attracted significant attention for energy storage applications ...
A feasible strategy was developed to fabricate nanoporous iron-based metallic glasses (npFe-MGs) by ...
Dealloying, a famous ancient etching technique, was used to produce nanoporous metals decades ago. W...
Nanoporous metals represent a unique class of materials with promising properties for a wide set of ...
Nanoporous metals prepared via dealloying or selective leaching of solid solution alloys and compoun...
The beauty of dealloying, i.e., the selective dissolution of an alloy, lies in the spontaneous forma...
Nanoporous metal ribbons including Au, Pd, Pt, Ag, and Cu can be fabricated through chemical dealloy...
Porous metals and alloys have many important characteristics such as light weight, high surface area...
Hierarchically porous metals possess intriguing high accessibility of matter molecules and unique co...
Nanoporous metals can be fabricated by dealloying, which is one of the reactions that occur during t...
In this work, a flexible three-dimensional nanoporous bimetallic Cu-Ag (NPCuAg) has been fabricated ...
Nanoparticles of silver and copper were grown at the glass-crystal interfaces within a silicate glas...
Impregnation of Phase Change Materials (PCMs) into a porous medium is a promising way to stabilize t...
Solution-phase processing presents an attractive avenue for building unique architectures from a wid...
The physical and chemical properties shown by nanoporous metals, related to their unique structure, ...
Transition metal oxides (TMOs) have attracted significant attention for energy storage applications ...
A feasible strategy was developed to fabricate nanoporous iron-based metallic glasses (npFe-MGs) by ...