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My research interest is X-ray diffraction using synchrotron radiation (SR). During the Bell Labs years, I developed the methods for studying surface structure using X-ray diffraction. These methods, based on crystal truncation rods, have become the definitive technique for the determination of the atomic positions at surfaces and interfaces. These surface methods are still used today at the major SR facilities, NSLS (Brookhaven), ESRF (Grenoble), APS(Chicago) and SLS (Villigen). I was awarded two prizes for the surface structure work, the Warren Prize in 2000 and the Surface Structure Prize in 2011.
To develop the methodology of X-ray diffraction with SR, I built two beamlines. The first was a dedicated surfaces and interface structure beamline X16A at the National Synchrotron Light Source (Brookhaven). The second was 34-ID for coherent diffraction at the Advanced Photon Source(Chicago). More recently I have been developing methods of using the very high coherence of the latest SR sources to enable direct 3D imaging of structure. This is potentially useful for examining strain distributions inside complex materials on the nanometre length scale.
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Nature Energypp.1-1, (2024)
NATURE ENERGY (2024)
Jiecheng Diao,Longlong Wu,Ana F. Suzana, Emil S. Bozin,Edoardo M. Zatterin,Steven J. Leake, Ross J. Harder, Wonsuk Cha,Milinda Abeykoon, Jiadong Fan,Huaidong Jiang,Ian K. Robinson
PHYSICAL REVIEW MATERIALSno. 1 (2024)
Xi Yu,Longlong Wu,Yuewei Lin,Jiecheng Diao, Jialun Liu, Jörg Hallmann, Ulrike Boesenberg, Wei Lu, Johannes Möller, Markus Scholz, Alexey Zozulya, Anders Madsen,
npj Computational Materialsno. 1 (2024): 1-9
Mohammed Yusuf, Jahan Salma, Safana Farooq, Alessia Candeo,Archana Bhartiya, Atiqa Sajid, Marta Szynkiewicz,Ian Robinson, Stan Botchway,El-Nasir Lalani
crossref(2023)
ADVANCED FUNCTIONAL MATERIALSno. 19 (2023)
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