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This journal has ceased (2020).The atomic and nanoscale structure of materials used as catalysts significantly influences their performance, and correlating structure with activity is crucial for catalyst optimisation and innovation. Catalysis, Structure & Reactivity will report the latest advances in structure-function relationships in catalytic science. This includes the application of new analytical techniques to understand materials used in catalysis and their performance, especially nano- and micro-probes of structure and composition, high resolution spectroscopies, synchrotron and neutron techniques, alongside traditional techniques. Integral to such advances in catalysis are model studies, both experimental and theoretical, of the behaviour of idealised surfaces.
CO OxidationX-Ray Absorption SpectroscopyTemperature Programmed DesorptionDiffuse Reflectance Infrared Fourier Transform SpectroscopyGas Phase HydrogenationHeterogeneous CatalysisModel CatalystMetal LoadingPd NanoparticlesCO AdsorptionOxidation State of IronCatalytic Activityin Situ SynchrotronSingle CrystalFischer-Tropsch SynthesisSupport EffectSelective HydrogenationSurface AciditySupported Goldin Situ DRIFTS
vol.5 (2019)
vol.4 (2018)
vol.3 (2017)
vol.2 (2016)
vol.1 (2015)