Electron diffraction, X-ray powder diffraction and pair-distribution- function analyses to determine the crystal structures of Pigment Yellow 213, C23H21N5O9

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Abstract

The crystal structure of the nanocrystalline phase of Pigment Yellow 213 (P.Y. 213) was solved by a combination of single-crystal electron diffraction and X-ray powder diffraction, despite the poor crystallinity of the material. The molecules form an efficient dense packing, which explains the observed insolubility and weather fastness of the pigment. The pair-distribution function (PDF) of the phase is consistent with the determined crystal structure. The Β phase of P.Y. 213 shows even lower crystal quality, so extracting any structural information directly from the diffraction data is not possible. PDF analysis indicates the Β phase to have a columnar structure with a similar local structure as the phase and a domain size in column direction of approximately 4 nm. © 2009 International Union of Crystallography.

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Schmidt, M. U., Brühne, S., Wolf, A. K., Rech, A., Brüning, J., Alig, E., … Kolb, U. (2009). Electron diffraction, X-ray powder diffraction and pair-distribution- function analyses to determine the crystal structures of Pigment Yellow 213, C23H21N5O9. Acta Crystallographica Section B: Structural Science, 65(2), 189–199. https://doi.org/10.1107/S0108768109003759

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