Understanding the interaction between surfaces and their surroundings is crucial in many materials-science fields such as catalysis, corrosion, and thin-film electronics, but existing characterization methods have not been capable of fully determining the structure of surfaces during dynamic processes, such as catalytic reactions, in a reasonable time frame. We demonstrate an x-ray-diffraction–based characterization method that uses high-energy photons (85 kiloelectron volts) to provide unexpected gains in data acquisition speed by several orders of magnitude and enables structural determinations of surfaces on time scales suitable for in situ studies. We illustrate the potential of high-energy surface x-ray diffraction by determining the s...
Processes at material interfaces to liquids or to high-pressure gases often involve structural chang...
AbstractWe have performed a quantitative structure determination of the 5×5R27° surface oxide, forme...
Determining how electrode structure governs the performance of an electrocatalyst requires technique...
Understanding the interaction between surfaces and their surroundings is crucial in many materials-s...
AbstractWe have performed a quantitative structure determination of the 5×5R27° surface oxide, forme...
We have combined three techniques, High Energy Surface X-Ray Diffraction (HESXRD), Surface Optical R...
We have combined three techniques, High Energy Surface X-Ray Diffraction (HESXRD), Surface Optical R...
We have performed a quantitative structure determination of the SQRT(5 75)R27\ub0 surface oxide, for...
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-energy surface X-ray diffraction (HESXRD) provides surface structural information with high tem...
High-energy surface X-ray diffraction (HESXRD) provides surface structural information with high tem...
In this chapter surface-sensitive X-ray diffraction is introduced as an important crystallographic t...
In this chapter surface-sensitive X-ray diffraction is introduced as an important crystallographic t...
High-energy surface X-ray diffraction (HESXRD) provides surface structural information with high tem...
Processes at material interfaces to liquids or to high-pressure gases often involve structural chang...
AbstractWe have performed a quantitative structure determination of the 5×5R27° surface oxide, forme...
Determining how electrode structure governs the performance of an electrocatalyst requires technique...
Understanding the interaction between surfaces and their surroundings is crucial in many materials-s...
AbstractWe have performed a quantitative structure determination of the 5×5R27° surface oxide, forme...
We have combined three techniques, High Energy Surface X-Ray Diffraction (HESXRD), Surface Optical R...
We have combined three techniques, High Energy Surface X-Ray Diffraction (HESXRD), Surface Optical R...
We have performed a quantitative structure determination of the SQRT(5 75)R27\ub0 surface oxide, for...
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-energy surface X-ray diffraction (HESXRD) provides surface structural information with high tem...
High-energy surface X-ray diffraction (HESXRD) provides surface structural information with high tem...
In this chapter surface-sensitive X-ray diffraction is introduced as an important crystallographic t...
In this chapter surface-sensitive X-ray diffraction is introduced as an important crystallographic t...
High-energy surface X-ray diffraction (HESXRD) provides surface structural information with high tem...
Processes at material interfaces to liquids or to high-pressure gases often involve structural chang...
AbstractWe have performed a quantitative structure determination of the 5×5R27° surface oxide, forme...
Determining how electrode structure governs the performance of an electrocatalyst requires technique...