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, Favejee JChL : On the crystal structure of montmorillonite and halloysite . Z Kristallogr 102 , 417 – 431 ( 1940 ) 10. Eggleton RA

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Resolution and Discovery
Authors: K. Tomolya, D. Janovszky, A. Sycheva, M. Sveda, T. Ferenczi, and A. Roósz

. Yan X , Chen X-Q , Grytsiv A , Rogl P , Podloucky R , Pomjakushin V , Schmidt H , Giester G : Crystal structure, phase stability and elastic properties of the Laves phase ZrTiCu2 . Intermetallics 16 , 651 – 657

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DiffracPlus EVA using ICDD PDF2 (2005) for crystalline components. Quantitative evaluation was performed in TOPAS4 with fundamental parameters approach, using crystal structures from ICSD database. Morphological and textural observations were made

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S-4800, ZEISS EVO-MA10), the chemical composition was analyzed by energy-dispersive X-ray spectrometry (EDS, BRUKER AXS), and the crystal structure and the phase purity were examined using X-ray diffraction (XRD, BRUKER D8 ADVANCE CoKα X-ray source

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crystal structure, so it is often applied to characterize graphite and its derivatives [ 27 – 30 ]. Figure 4 represents the Raman spectra of graphite, MLG, and the different GO powders. Figure 4. Raman

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] Silva J. , Reyes , A. , Esparza , H. , Camacho , H. , Fuentes L. ( 2011 ) BiFeO 3 : A review on synthesis, doping and crystal structure . Integrated Ferroelectrics 126 ( 1 ) 47 – 59

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included Th, Si, and U. Also, minor amounts of Fe, Ca, Zr, and Hf were noticed as substitution in uranothorite crystal structure. 4.2.4 Sulfide minerals Pyrite is the most common sulfide minerals. The studied pyrite grains have metallic luster brass

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Rod-shaped nanocrystals are formed by self assembly of t -Bu-phenyl substituted tetra(carboxamido)perylenes (BPP) in different solvents. The structure and the dimensions of the nano-rods may be controlled by the choice of the hydrogen-bond accepting capacity of the solvent (DMSO, DMF, DMAc, HMPA), by the concentration and by the composition of solvent-mixture (by adding hydrogen-bond donating solvents), but is independent of the surface used for their deposition (mica, silicon, gold, glass). The different forms of aggregation were examined by AFM and SNOM and were correlated to UV-Vis absorption spectra of the aggregates in solution. The orientation of the transition dipole moment of the molecules in the nanocrystals has been determined by polarized fluorescence microscopy and, in combination with the crystal structure of the t -Bu substituted analogue of BPP, is used to develop a model for the internal molecular structure of the rod shaped aggregates.

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.P. , Blanco-Labra , A. , Mendiola-Olaya , E. , Smith , G.M. , Moreno , A. & Whitaker , J.R. ( 2009 ): Cloning, sequencing, purification, and crystal structure of Grenache ( Vitis vinifera ) polyphenol oxidase . J. Agr. Food Chem., , 58 , 1189

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Kostrewa, D., Wyss, M., D’arcy, A. & Loon, A.P.G.M. (1999): Crystal structure of Aspergillus niger pH 2.5 acid phosphatase at 2.4 Å resolution: J. Molecular Biol., 288, 965–974. Loon A

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