Formation of complex 3-D nanoporous structures via selective dissolution of an electroactive component in a bulk material is commonly encountered in corrosion, electrochemistry and materials preparation. We report a characterization technique to rapidly calculate the size distribution of nanoporous ligaments and facets from molecular-scale models that reveal the evolution of nanoporous morphology reaching experimental timescales. The key feature of our approach is the use of connectivity lists for sites, which enables rapid quantification of several million-atom large nanoporous structures while being sufficiently versatile to handle non-cylindrical cross-sections, detachment of ligaments from the main structure, and crystal facet-related q...
AbstractA study of the isothermal evolution of a nanoporous gold (npg) microstructure after dealloyi...
The beauty of dealloying, i.e., the selective dissolution of an alloy, lies in the spontaneous forma...
Ordered Nanoporous Metals (ONMs) form a new family of nanoporous materials composed only of pure met...
Most experimental studies on synthesis of nanoporous structures via selective dissolution of electro...
Nanoporous (NP) metals are three-dimensional (3D) structures with characteristic length-scale of its...
Nanoporous materials, especially those fabricated by liquid metal dealloying processes, possess grea...
The progress of dealloying, an electrochemical synthesis method capable of producing nanoporous stru...
The selective removal of a less noble (more chemically active) metal from a mixture of 2–3 metals ca...
Nanoporous metals prepared via dealloying or selective leaching of solid solution alloys and compoun...
Nanoporous metal ribbons including Au, Pd, Pt, Ag, and Cu can be fabricated through chemical dealloy...
Dealloying of binary AgAu and ternary AgAuPt alloys has been proven to yield nanoporous metals (NPG ...
We demonstrate quantification of porosity, nanopore tortuosity, and electrical connectivity at the s...
The current review article attempts to cover the eld of nanoporous materials, thereby materials wi...
Nanoporous materials are used in the variety of fields, ranging from medicine and biosensors to clea...
Most nanoporous solids, such as metal-organic frameworks and zeolites, are composed of extended thre...
AbstractA study of the isothermal evolution of a nanoporous gold (npg) microstructure after dealloyi...
The beauty of dealloying, i.e., the selective dissolution of an alloy, lies in the spontaneous forma...
Ordered Nanoporous Metals (ONMs) form a new family of nanoporous materials composed only of pure met...
Most experimental studies on synthesis of nanoporous structures via selective dissolution of electro...
Nanoporous (NP) metals are three-dimensional (3D) structures with characteristic length-scale of its...
Nanoporous materials, especially those fabricated by liquid metal dealloying processes, possess grea...
The progress of dealloying, an electrochemical synthesis method capable of producing nanoporous stru...
The selective removal of a less noble (more chemically active) metal from a mixture of 2–3 metals ca...
Nanoporous metals prepared via dealloying or selective leaching of solid solution alloys and compoun...
Nanoporous metal ribbons including Au, Pd, Pt, Ag, and Cu can be fabricated through chemical dealloy...
Dealloying of binary AgAu and ternary AgAuPt alloys has been proven to yield nanoporous metals (NPG ...
We demonstrate quantification of porosity, nanopore tortuosity, and electrical connectivity at the s...
The current review article attempts to cover the eld of nanoporous materials, thereby materials wi...
Nanoporous materials are used in the variety of fields, ranging from medicine and biosensors to clea...
Most nanoporous solids, such as metal-organic frameworks and zeolites, are composed of extended thre...
AbstractA study of the isothermal evolution of a nanoporous gold (npg) microstructure after dealloyi...
The beauty of dealloying, i.e., the selective dissolution of an alloy, lies in the spontaneous forma...
Ordered Nanoporous Metals (ONMs) form a new family of nanoporous materials composed only of pure met...