Metal nanofoams with a porosity above 50% v/v have recently attracted great. Interest In materials science due to their interesting properties.. We.. demonstrate a new straightforward route to prepare such nanofoams using diblock copolymer-based PS-block-P4VP-(PDP) supramolecules that self-assemble Into a bicontinuous gyroid morphology, consisting of PS network channels in a P4VP(PDP) matrix. After dissolving the PDP, the P4VP. collapses onto the PS struts and a free-standing bicontinuous. gyroid template of 50-100 mu m thickness and interconnected, uniformly sized pores Is formed. The hydrophilic P4VP corona facilitates the penetration of water-based plating reagents into the porous template and enables a successful metal deposition. After...
Due to their ability to self-assemble into a variety of periodic nanostructures, block copolymers al...
Due to their ability to self-assemble into a variety of periodic nanostructures, block copolymers al...
Due to their ability to self-assemble into a variety of periodic nanostructures, block copolymers al...
Metal nanofoams with a porosity above 50% v/v have recently attracted great. Interest In materials s...
Metal nanofoams with a porosity above 50% v/v have recently attracted great. Interest In materials s...
Metal nanofoams with a porosity above 50% v/v have recently attracted great. Interest In materials s...
Metal nanofoams with a porosity above 50% v/v have recently attracted great. Interest In materials s...
Nanoporous metal foams possess a unique combination of properties - they are catalytically active, t...
Nanoporous metal foams possess a unique combination of properties - they are catalytically active, t...
Nanoporous metal foams possess a unique combination of properties - they are catalytically active, t...
Nanoporous metal foams possess a unique combination of properties - they are catalytically active, t...
Nanoporous metal foams possess a unique combination of properties - they are catalytically active, t...
Nanoporous metal foams possess a unique combination of properties - they are catalytically active, t...
Nanoporous metal foams possess a unique combination of properties - they are catalytically active, t...
Due to their ability to self-assemble into a variety of periodic nanostructures, block copolymers al...
Due to their ability to self-assemble into a variety of periodic nanostructures, block copolymers al...
Due to their ability to self-assemble into a variety of periodic nanostructures, block copolymers al...
Due to their ability to self-assemble into a variety of periodic nanostructures, block copolymers al...
Metal nanofoams with a porosity above 50% v/v have recently attracted great. Interest In materials s...
Metal nanofoams with a porosity above 50% v/v have recently attracted great. Interest In materials s...
Metal nanofoams with a porosity above 50% v/v have recently attracted great. Interest In materials s...
Metal nanofoams with a porosity above 50% v/v have recently attracted great. Interest In materials s...
Nanoporous metal foams possess a unique combination of properties - they are catalytically active, t...
Nanoporous metal foams possess a unique combination of properties - they are catalytically active, t...
Nanoporous metal foams possess a unique combination of properties - they are catalytically active, t...
Nanoporous metal foams possess a unique combination of properties - they are catalytically active, t...
Nanoporous metal foams possess a unique combination of properties - they are catalytically active, t...
Nanoporous metal foams possess a unique combination of properties - they are catalytically active, t...
Nanoporous metal foams possess a unique combination of properties - they are catalytically active, t...
Due to their ability to self-assemble into a variety of periodic nanostructures, block copolymers al...
Due to their ability to self-assemble into a variety of periodic nanostructures, block copolymers al...
Due to their ability to self-assemble into a variety of periodic nanostructures, block copolymers al...
Due to their ability to self-assemble into a variety of periodic nanostructures, block copolymers al...