Nanometer-sized hydrides are attractive for hydrogen storage. Nanofabricated model systems can be studied by a novel localized surface plasmon resonance (LSPR) based direct sensing approach and by quartz crystal microbalance. The role of nanoparticle size, shape and microstructure on the storage thermodynamics can be scrutinized. \ua9 2010 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
Using a novel indirect nanoplasmonic sensing platform, we have measured hydrogen absorption/desorpti...
Using a novel indirect nanoplasmonic sensing platform, we have measured hydrogen absorption/desorpti...
Hydrogen storage properties of supported Pd nanoparticles with average sizes in the range 2.7-7.6 nm...
In this review, we discuss the evolution of localized surface plasmon resonance and surface plasmon ...
In this review, we discuss the evolution of localized surface plasmon resonance and surface plasmon ...
The interaction of light with sub-wavelength noble metal nanoparticles and nanostructures has develo...
The interaction of light with sub-wavelength noble metal nanoparticles and nanostructures has develo...
Hydride-forming metal nanoparticles sustaining localized surface plasmon resonance have emerged as p...
<p>When light interacts with metallic nanoparticles smaller than its wavelength it can excite a coll...
When light interacts with metallic nanoparticles smaller than its wavelength it can excite a collect...
Nanostructured metal hydrides are able to efficiently detect hydrogen in optical sensors. In the lit...
In this review we discuss the evolution of surface plasmon resonance and localized surface plasmon r...
Nanostructured metal hydrides are able to efficiently detect hydrogen in optical sensors. In the lit...
Nanostructured metal hydrides are able to efficiently detect hydrogen in optical sensors. In the lit...
Hydrogen storage properties of supported Pd nanoparticles with average sizes in the range 2.7-7.6 nm...
Using a novel indirect nanoplasmonic sensing platform, we have measured hydrogen absorption/desorpti...
Using a novel indirect nanoplasmonic sensing platform, we have measured hydrogen absorption/desorpti...
Hydrogen storage properties of supported Pd nanoparticles with average sizes in the range 2.7-7.6 nm...
In this review, we discuss the evolution of localized surface plasmon resonance and surface plasmon ...
In this review, we discuss the evolution of localized surface plasmon resonance and surface plasmon ...
The interaction of light with sub-wavelength noble metal nanoparticles and nanostructures has develo...
The interaction of light with sub-wavelength noble metal nanoparticles and nanostructures has develo...
Hydride-forming metal nanoparticles sustaining localized surface plasmon resonance have emerged as p...
<p>When light interacts with metallic nanoparticles smaller than its wavelength it can excite a coll...
When light interacts with metallic nanoparticles smaller than its wavelength it can excite a collect...
Nanostructured metal hydrides are able to efficiently detect hydrogen in optical sensors. In the lit...
In this review we discuss the evolution of surface plasmon resonance and localized surface plasmon r...
Nanostructured metal hydrides are able to efficiently detect hydrogen in optical sensors. In the lit...
Nanostructured metal hydrides are able to efficiently detect hydrogen in optical sensors. In the lit...
Hydrogen storage properties of supported Pd nanoparticles with average sizes in the range 2.7-7.6 nm...
Using a novel indirect nanoplasmonic sensing platform, we have measured hydrogen absorption/desorpti...
Using a novel indirect nanoplasmonic sensing platform, we have measured hydrogen absorption/desorpti...
Hydrogen storage properties of supported Pd nanoparticles with average sizes in the range 2.7-7.6 nm...