This title appears in the Scientific Report :
2015
Single Crystal Neutron Diffraction Studies of Complex Hydrogen Bonds in Silicates and Phosphates with HEIDI
Single Crystal Neutron Diffraction Studies of Complex Hydrogen Bonds in Silicates and Phosphates with HEIDI
Minerals of both the silicate and phosphate families are subject of numerous studies because they are needed for many industrial processes. In addition, silicates provide about 90% of the earth's crust. Due to their complex framework structures many of these compounds were extensively studied w...
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Personal Name(s): | Meven, Martin (Corresponding author) |
---|---|
Gatta, G. D. | |
Contributing Institute: |
Streumethoden; JCNS-2 JCNS-FRM-II; JCNS-FRM-II |
Imprint: |
2015
|
Conference: | VI European Conference on Neutron Scattering, Zaragoza (Spain), 2015-08-30 - 2015-09-04 |
Document Type: |
Poster |
Research Program: |
Jülich Centre for Neutron Research (JCNS) FRM II / MLZ Quantum Condensed Matter: Magnetism, Superconductivity Controlling Collective States |
Subject (ZB): | |
Publikationsportal JuSER |
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520 | |a Minerals of both the silicate and phosphate families are subject of numerous studies because they are needed for many industrial processes. In addition, silicates provide about 90% of the earth's crust. Due to their complex framework structures many of these compounds were extensively studied with X-ray diffraction. But for those members containing hydrogen the important role of hydrogen bonds on their structures could not always resolved clearly with this method. Recently various silicates and phosphates of these groups with very different crystallographic space groups were studied on the hot neutorn single crystal diffractometer HEIDI at the Heinz Maier-Leibnitz Zentrum in Garching (MLZ). The combination of neutron and X-ray diffraction together with other methods reveal for all studied minerals, e.g. epidote, zoisite, elbaite, brazillianite and paravauxite - valuable information about their structural details, not only the different roles of hydrogen bonds but also occupational and site disorder. | ||
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