The Silver Nanowire Membranes A30 are freestanding nanoporous membrane disks built from interconnected pure silver nanowires. They are supplied as ready-to-use conductive membrane scaffolds with an open Ag nanowire network. These membranes use silver nanowires with an average diameter of ~30 nm, creating a balanced porous metallic network for applications that require both permeability and electrical conductivity. The freestanding format allows the membrane to be handled, integrated, laminated, or evaluated directly in membrane devices, conductive substrates, sensing platforms, and electrochemical systems. With their combination of controlled porosity, high surface area, conductive pathways, and mechanical flexibility, the Silver Nanowire Membranes A30 are suitable for filtration media, selective separation, particle capture, SEM sample support, SERS substrate development, electrochemical studies, conductive sensor structures, flexible membrane devices, and EMI shielding research.
Catalog Number: NovaWire-Ag-MEM-A30
Size: 25 mm diameter; custom sizes available
Thickness: 20 µm; custom thicknesses available
APPLICATIONS
The Silver Nanowire Membranes A30 can be used in the following applications:
- Conductive filtration and separation platforms requiring a freestanding metallic membrane with controlled porosity.
- Particle capture and surface-collection studies using an interconnected 30 nm Ag nanowire network.
- Conductive SEM support substrates where the membrane surface can assist sample placement and electrical grounding.
- SERS and surface-enhanced analysis substrates based on porous silver nanowire membrane structures.
- Electrochemical membrane platforms where continuous Ag nanowire pathways provide electrical conductivity across the membrane.
- Flexible pressure, strain, bending, and twisting sensor structures using laminated or embedded AgNW membrane layers.
- Wearable sensor and artificial-skin prototypes requiring flexible, porous, and conductive membrane components.
- EMI shielding studies using freestanding conductive silver nanowire networks with high surface area.
- Custom membrane device research involving pore structure, nanowire diameter, surface area, conductivity, and membrane integration.





