The challenge of chemistry in the 21st century is to achieve 100% selectivity of the desired product molecule in multipath reactions ('green chemistry') and develop renewable energy based processes. Surface chemistry and catalysis play key roles in this enterprise. Development of in situ surface techniques such as high-pressure scanning tunneling microscopy, sum frequency generation (SFG) vibrational spectroscopy, time-resolved Fourier transform infrared methods, and ambient pressure X-ray photoelectron spectroscopy enabled the rapid advancement of three fields: nanocatalysts, biointerfaces, and renewable energy conversion chemistry. In materials nanoscience, synthetic methods have been developed to produce monodisperse metal and oxide nano...
Catalysis is a science at the interface between chemistry, physics, biology, engineering and materia...
Analogously to enzymatic catalysis, where the active metal sites and their environment are controlle...
Analogously to enzymatic catalysis, where the active metal sites and their environment are controlle...
In the past years the surface-science approach was successfully applied to elucidate the mechanisms ...
In the past years the surface-science approach was successfully applied to elucidate the mechanisms ...
In the past years the surface-science approach was successfully applied to elucidate the mechanisms ...
Solar fuel generation addresses the inherent intermittency of solar energy and can be part of the gl...
Colloidal chemistry is used to control the size, shape, morphology, and composition of metal nanopar...
Water oxidation is an essential reaction of an artificial photosystem for solar fuel generation beca...
We aim to develop novel catalysts that exhibit high activity, selectivity and stability under real c...
Water oxidation is an essential reaction of an artificial photosystem for solar fuel generation beca...
Colloidal chemistry is used to control the size, shape, morphology, and composition of metal nanopar...
The Special Issue, “Nanomaterials for Environmental Purification and Energy Conversion”, describes t...
SSCI-VIDE+ECI2D+LPIInternational audienceHeterogeneous catalysis, which is currently used in most in...
Vacuum studies of metal single crystal surfaces using electron and molecular beam scattering reveale...
Catalysis is a science at the interface between chemistry, physics, biology, engineering and materia...
Analogously to enzymatic catalysis, where the active metal sites and their environment are controlle...
Analogously to enzymatic catalysis, where the active metal sites and their environment are controlle...
In the past years the surface-science approach was successfully applied to elucidate the mechanisms ...
In the past years the surface-science approach was successfully applied to elucidate the mechanisms ...
In the past years the surface-science approach was successfully applied to elucidate the mechanisms ...
Solar fuel generation addresses the inherent intermittency of solar energy and can be part of the gl...
Colloidal chemistry is used to control the size, shape, morphology, and composition of metal nanopar...
Water oxidation is an essential reaction of an artificial photosystem for solar fuel generation beca...
We aim to develop novel catalysts that exhibit high activity, selectivity and stability under real c...
Water oxidation is an essential reaction of an artificial photosystem for solar fuel generation beca...
Colloidal chemistry is used to control the size, shape, morphology, and composition of metal nanopar...
The Special Issue, “Nanomaterials for Environmental Purification and Energy Conversion”, describes t...
SSCI-VIDE+ECI2D+LPIInternational audienceHeterogeneous catalysis, which is currently used in most in...
Vacuum studies of metal single crystal surfaces using electron and molecular beam scattering reveale...
Catalysis is a science at the interface between chemistry, physics, biology, engineering and materia...
Analogously to enzymatic catalysis, where the active metal sites and their environment are controlle...
Analogously to enzymatic catalysis, where the active metal sites and their environment are controlle...