Dealloying is a powerful and versatile method to fabricate three-dimensional nanoporous (np) materials with high surface area. In this work, we investigated the dealloying processes of Zn80Cu20 alloy ribbons in acidic and alkaline environments. Our results show that the nanostructure can be controlled by varying the nature of electrolyte solution, pH value, dealloying time, and temperature. In acidic media, the presence of chloride ions enhances the Cu surface mobility, leading to a faster coarsening and growth of ligaments during the dealloying process over time. In contrast, the surface diffusivity of Cu atoms in alkaline media is three orders lower than that in acid and results in a remarkably smaller ligament size due to the formation o...
Hierarchical (bimodal) porous copper (Cu) materials with micro- and nano-sized pores are desired for...
In this study, 3D interconnected nanoporous (3DNP) TiVNbMoTa HEAs were synthesized from the (TiVNbMo...
This paper reports the critical role of microstructural length scale in dealloying for the fabricati...
A facile synthetic route to form nanoporous (np) metallic materials is the (electro)chemical dissol...
The monolithic hierarchical structured nanoporous copper ribbons (HSNCRs) have been facilely fabrica...
In this work, a flexible three-dimensional nanoporous bimetallic Cu-Ag (NPCuAg) has been fabricated ...
Dealloying, a famous ancient etching technique, was used to produce nanoporous metals decades ago. W...
Nanoporous metal ribbons including Au, Pd, Pt, Ag, and Cu can be fabricated through chemical dealloy...
The development of non-noble nano-porous metal materials is hindered by surface oxidation reactions ...
Dealloying of binary AgAu and ternary AgAuPt alloys has been proven to yield nanoporous metals (NPG ...
In order to enhance the cycle performance of active material, three-dimensional porous substrate suc...
Nanoporous metal nanowires with large surface areas, and a high density of defect sites play an impo...
Characterizing materials on the nanoscale is a key factor to enhance nanotechnology in diverse appli...
International audienceIn present work we report the synthesis of nanoporous surface using a copper-b...
Nanoporous copper (NPC) thin films with bimodal channel size distributions can be benignly fabricate...
Hierarchical (bimodal) porous copper (Cu) materials with micro- and nano-sized pores are desired for...
In this study, 3D interconnected nanoporous (3DNP) TiVNbMoTa HEAs were synthesized from the (TiVNbMo...
This paper reports the critical role of microstructural length scale in dealloying for the fabricati...
A facile synthetic route to form nanoporous (np) metallic materials is the (electro)chemical dissol...
The monolithic hierarchical structured nanoporous copper ribbons (HSNCRs) have been facilely fabrica...
In this work, a flexible three-dimensional nanoporous bimetallic Cu-Ag (NPCuAg) has been fabricated ...
Dealloying, a famous ancient etching technique, was used to produce nanoporous metals decades ago. W...
Nanoporous metal ribbons including Au, Pd, Pt, Ag, and Cu can be fabricated through chemical dealloy...
The development of non-noble nano-porous metal materials is hindered by surface oxidation reactions ...
Dealloying of binary AgAu and ternary AgAuPt alloys has been proven to yield nanoporous metals (NPG ...
In order to enhance the cycle performance of active material, three-dimensional porous substrate suc...
Nanoporous metal nanowires with large surface areas, and a high density of defect sites play an impo...
Characterizing materials on the nanoscale is a key factor to enhance nanotechnology in diverse appli...
International audienceIn present work we report the synthesis of nanoporous surface using a copper-b...
Nanoporous copper (NPC) thin films with bimodal channel size distributions can be benignly fabricate...
Hierarchical (bimodal) porous copper (Cu) materials with micro- and nano-sized pores are desired for...
In this study, 3D interconnected nanoporous (3DNP) TiVNbMoTa HEAs were synthesized from the (TiVNbMo...
This paper reports the critical role of microstructural length scale in dealloying for the fabricati...