Noble metal aerogels offer a wide range of catalytic applications due to their high surface area and tunable porosity. Control over monolith shape, pore size, and nanofiber diameter is desired in order to optimize electronic conductivity and mechanical integrity for device applications. However, common aerogel synthesis techniques such as solvent mediated aggregation, linker molecules, sol⁻gel, hydrothermal, and carbothermal reduction are limited when using noble metal salts. Here, we present the synthesis of palladium aerogels using carboxymethyl cellulose nanofiber (CNF) biotemplates that provide control over aerogel shape, pore size, and conductivity. Biotemplate hydrogels were formed via covalent cross linking using 1-ethyl-3-(3-dimethy...
In heterogeneous catalysis, carrier systems are most often composed of inorganic materials whereas o...
Nanostructured, porous metals are of great interest for material scientists since they combine high ...
In order to implement a sustainable approach in the development of carbonaceous materials with impro...
Noble metal aerogels offer a wide range of catalytic applications due to their high surface area and...
New challenges in nanotechnology arise in the assembly of nanoobjects into three-dimensional supers...
We report controllable synthesis of Pd aerogels with high surface area and porosity by destabilizing...
This study presents a novel, green, and efficient way of preparing crosslinked aerogels from cellulo...
In the quest of building mechanically strong materials with low density and high porosity, polymer c...
Multifunctional, light-weight, responsive materials show promise in a range of applications includin...
Metallic and catalytically active materials with high surface area and large porosity are a long-des...
Metal-organic frameworks (MOFs) are hybrid porous crystalline networks with tunable chemical and str...
International audienceComing from soft chemistry (e.g. sol-gel), chemical nature and nanostructurati...
Highly porous, strong aerogels with anisotropic structural properties are of great interest for mult...
Metallic and catalytically active materials with high surface area and large porosity are a long-des...
Three-dimensional (3D) porous metal nanostructures have been a long sought-after class of materials ...
In heterogeneous catalysis, carrier systems are most often composed of inorganic materials whereas o...
Nanostructured, porous metals are of great interest for material scientists since they combine high ...
In order to implement a sustainable approach in the development of carbonaceous materials with impro...
Noble metal aerogels offer a wide range of catalytic applications due to their high surface area and...
New challenges in nanotechnology arise in the assembly of nanoobjects into three-dimensional supers...
We report controllable synthesis of Pd aerogels with high surface area and porosity by destabilizing...
This study presents a novel, green, and efficient way of preparing crosslinked aerogels from cellulo...
In the quest of building mechanically strong materials with low density and high porosity, polymer c...
Multifunctional, light-weight, responsive materials show promise in a range of applications includin...
Metallic and catalytically active materials with high surface area and large porosity are a long-des...
Metal-organic frameworks (MOFs) are hybrid porous crystalline networks with tunable chemical and str...
International audienceComing from soft chemistry (e.g. sol-gel), chemical nature and nanostructurati...
Highly porous, strong aerogels with anisotropic structural properties are of great interest for mult...
Metallic and catalytically active materials with high surface area and large porosity are a long-des...
Three-dimensional (3D) porous metal nanostructures have been a long sought-after class of materials ...
In heterogeneous catalysis, carrier systems are most often composed of inorganic materials whereas o...
Nanostructured, porous metals are of great interest for material scientists since they combine high ...
In order to implement a sustainable approach in the development of carbonaceous materials with impro...