Improvement of Cs<sub>3</sub>Cu<sub>2</sub>I<sub>5</sub> Single-Crystal Growth Process by YCl<sub>3</sub> Additives: Cu<sup>+</sup> Oxidation Inhibition and Precursor Colloid Stabilization. [PDF]
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Oxidation Strength of PLA Filled with Algal Biomass and Rosemary Extract Powders for Food-Safe Handling. [PDF]
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Biogenic Silica as a Direct Sol-Gel Precursor for High-Efficiency MSU-X Mesostructure Assembly: Closing the Loop from Rice Husk Waste to Functional Wormhole Frameworks. [PDF]
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Selective Binding of Hardness Ions by Humic Sorbents for Prevention of Carbonate Scaling in Reverse Osmosis Systems. [PDF]
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Extra-large pore JZO zeolites with tunable Si/Al ratios as efficient catalysts for degradable plastic monomer production. [PDF]
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Application of in-line imaging technology in preparation of Ziegler-Natta catalysts for propylene polymerization. [PDF]
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Diffractometric crystal centering
Journal of Applied Crystallography, 1999A general formalism for centering a single-crystal on a four-circle diffractometer, based on the setting angles of reflections, is presented. The minimum information for the determination of crystal displacement are the diffractometer setting angles of two reciprocal vectors. The method is independent of the crystallographic system and does not require
Przemyslaw Dera, Andrzej Katrusiak
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