The rational design of new heterogeneous catalysts for clean chemical technologies can be accelerated by molecular level insight into surface chemical processes. In situ methodologies, able to provide time-resolved and/or pressure dependent information on the evolution of reacting adsorbed layers over catalytically relevant surfaces, are therefore of especial interest. Here we discuss recent applications of surface X-ray techniques to surface-catalysed oxidations, (de)hydrogenations, C–C coupling, dehalogenation and associated catalyst restructuring, and explore how these may help to shape future sustainable chemistry
High pressure X-ray photoelectron spectroscopy (XPS) is used to characterize heterogeneous catalytic...
Information about the elementary processes underlying heterogeneous catalysis may be obtained by inv...
In this chapter surface-sensitive X-ray diffraction is introduced as an important crystallographic t...
The rational design of new heterogeneous catalysts for clean chemical technologies can be accelerate...
The rational design of new heterogeneous catalysts for clean chemical technologies can be accelerate...
The rational design of new heterogeneous catalysts for clean chemical technologies can be accelerate...
The rational design of new heterogeneous catalysts for clean chemical technologies can be accelerate...
The rational design of new heterogeneous catalysts for clean chemical technologies can be accelerate...
A personal account is given of how the author became involved with modern surface science and how it...
Catalysts are materials that accelerate the rate of a desired chemical reaction. As such, they const...
Catalysts are materials that accelerate the rate of a desired chemical reaction. As such, theyconsti...
High pressure X-ray photoelectron spectroscopy (XPS) is used to characterize heterogeneous catalytic...
The different types ofindustrial heterogeneous catalysis heterogeneous catalyst currently applied in...
Information about the elementary processes underlying heterogeneous catalysis may be obtained by inv...
Information about the elementary processes underlying heterogeneous catalysis may be obtained by inv...
High pressure X-ray photoelectron spectroscopy (XPS) is used to characterize heterogeneous catalytic...
Information about the elementary processes underlying heterogeneous catalysis may be obtained by inv...
In this chapter surface-sensitive X-ray diffraction is introduced as an important crystallographic t...
The rational design of new heterogeneous catalysts for clean chemical technologies can be accelerate...
The rational design of new heterogeneous catalysts for clean chemical technologies can be accelerate...
The rational design of new heterogeneous catalysts for clean chemical technologies can be accelerate...
The rational design of new heterogeneous catalysts for clean chemical technologies can be accelerate...
The rational design of new heterogeneous catalysts for clean chemical technologies can be accelerate...
A personal account is given of how the author became involved with modern surface science and how it...
Catalysts are materials that accelerate the rate of a desired chemical reaction. As such, they const...
Catalysts are materials that accelerate the rate of a desired chemical reaction. As such, theyconsti...
High pressure X-ray photoelectron spectroscopy (XPS) is used to characterize heterogeneous catalytic...
The different types ofindustrial heterogeneous catalysis heterogeneous catalyst currently applied in...
Information about the elementary processes underlying heterogeneous catalysis may be obtained by inv...
Information about the elementary processes underlying heterogeneous catalysis may be obtained by inv...
High pressure X-ray photoelectron spectroscopy (XPS) is used to characterize heterogeneous catalytic...
Information about the elementary processes underlying heterogeneous catalysis may be obtained by inv...
In this chapter surface-sensitive X-ray diffraction is introduced as an important crystallographic t...