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Singlecrystal 2 simulate synchrotron
Singlecrystal 2 simulate synchrotron




Coppens, Crystallography at 0.3 Å: Single-Crystal Study of Сr(NH 3) 6 Cr(CN) 6 at the Cornell High Energy Synchrotron Source, Acta Cryst. Beizner, Measurements and Correction of Secondary Extinction in CaF 2 by means of Synchrotron Radiation X-ray Diffraction Data, Acta Cryst. Jeffrey, NATO Advanced Study Institute Proc, North-Holland Publishing, (1991), in press The Application of Charge-Density Research to Chemistry and Drug Design, ed. 110 (1988) 775Įlectron Density Mapping in Molecules and Crystals, ed. Craven, Energies of Molecular Interactions from Bragg Diffraction Data, J. Coppens, X-ray Analysis of the Incommensurate Modulation in the 2:2:1:2 Bi-Sr-Ca-Cu Superconductor including the Oxygen Atoms, Phys. Sleight, The Incommensurate Modulation Study of the 2212 Bi-Sr-Ca-Cu-O Superconductor, Science 241 (1988) 954–956

singlecrystal 2 simulate synchrotron singlecrystal 2 simulate synchrotron

Subramanian, Anomalous Scattering Study of the Bi Distribution in the 2212 Superconductor: Implications for Cu Valency, Science 244 (1989) 62–64 Sleight, A New High Temperature Superconductor: Bi 2Sr 3-xCa xCu 2O 8+y, Science 239 (1988) 1015–1017 Matsushita, X-ray Diffraction Study of Phase Transitions in 2 МnСl 4 under Pressure, Sol. Cox, Synchrotron X-ray Diffraction Measurements of Single-Crystal Hydrogen to 26.5 Gigapascals, Science 239 (1988) 1131–34 Hemley, Single-crystal X-ray Diffraction of n-Н 2 at High Pressure, Phys. Shrotani, Synchrotron Radiation Study of Phase Transitions in Phosphorus at High Pressures and Temperatures, Physica В Fitch, A Two-Circle Powder Diffractometer for SR with a Closed Loop Encoder Feedback System, J. McCusker, The Ab-initio Structure Determination of Sigma-2 (a New Clathrasil Phase) from Synchrotron Powder Diffraction Data, J. Parrish, Polycrystalline Diffraction and Synchrotron Radiation, Materials Res. Eddy, Acquisition of Powder Diffraction Data with Synchrotron Radiation, Aust. Weber, Structure Investigation of a 6 μm CaF 2 Crystal with Synchrotron Radiation, Acta Cryst A41 (1985) 35ĭ.E. Wulf, Strukturanalyse an einem CaF2-Einkristall mit nur 6 μm Kantenlaenge: Ein Experiment mit Synchrotronstrahlung, Angew.

singlecrystal 2 simulate synchrotron singlecrystal 2 simulate synchrotron

Pool, Molecular Photography with an X-ray Flash, Science 240 (1988) 295 Teng, 120 Picosecond Laue Diffraction Using an Undulator X-ray Source, Trans. Helliwell, Synchrotron X-radiation Protein Crystallography: Instrumentation, Methods and Applications, Rep. This process is experimental and the keywords may be updated as the learning algorithm improves. These keywords were added by machine and not by the authors. The easy tunability of SR has allowed an almost deliberate choice of the magnitude of scattering factors, leading to an enhanced detectability of elements of interest.Ĭase histories serve to highlight these points. The small vertical divergence of SR has narrowed the width of reflected intensity profiles (by one order of magnitude), thereby permitting the detection of very weak reflections and the resolution of many more individual lines at high angle in powder spectra. The ready availability of radiation in the high energy spectral range has reduced systematic errors in the data (like absorption and extinction) -thus greatly improving the data’s quality. The advent of synchrotron radiation (SR) has been of great benefit to solid state research.įor crystallography in particular, the high brightness of SR has permitted the use of single crystals of a smaller size (by one order of magnitude), and/or the study of biological samples with short beam lifetime.






Singlecrystal 2 simulate synchrotron