Viktor Dubovoy
Colgate-Palmolive
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Featured researches published by Viktor Dubovoy.
Journal of Visualized Experiments | 2017
Viktor Dubovoy; Ravi Subramanyam; Michael A. Stranick; Laurence Du-Thumm; Long Pan
An aqueous suspension of nanogibbsite was synthesized via the titration of aluminum aqua acid [Al(H2O)6]3+ with L-arginine to pH 4.6. Since the hydrolysis of aqueous aluminum salts is known to produce a wide array of products with a wide range of size distributions, a variety of state-of-the-art instruments (i.e., 27Al/1H NMR, FTIR, ICP-OES, TEM-EDX, XPS, XRD, and BET) were used to characterize the synthesis products and identification of byproducts. The product, which was comprised of nanoparticles (10-30 nm), was isolated using gel permeation chromatography (GPC) column technique. Fourier transform infrared (FTIR) spectroscopy and powder X-ray diffraction (PXRD) identified the purified material as the gibbsite polymorph of aluminum hydroxide. The addition of inorganic salts (e.g., NaCl) induced electrostatic destabilization of the suspension, thereby agglomerating the nanoparticles to yield Al(OH)3 precipitate with large particle sizes. By utilizing the novel synthetic method described here, Al(OH)3 was partially loaded inside the highly ordered mesoporous framework of MCM-41, with average pore dimensions of 2.7 nm, producing an aluminosilicate material with both octahedral and tetrahedral Al (Oh/Td = 1.4). The total Al content, measured using energy-dispersive X-ray spectrometry (EDX), was 11% w/w with a Si/Al molar ratio of 2.9. A comparison of bulk EDX with surface X-ray photoelectron spectroscopy (XPS) elemental analysis provided insight into the distribution of Al within the aluminosilicate material. Furthermore, a higher ratio of Si/Al was observed on the external surface (3.6) as compared to the bulk (2.9). Approximations of O/Al ratios suggest a higher concentration of Al(O)3 and Al(O)4 groups near the core and external surface, respectively. The newly developed synthesis of Al-MCM-41 yields a relatively high Al content while maintaining the integrity of the ordered silica framework and can be used for applications where hydrated or anhydrous Al2O3 nanoparticles are advantageous.
Crystal Growth & Design | 2016
Viktor Dubovoy; Michael A. Stranick; Laurence Du-Thumm; Long Pan
Archive | 2017
Jeffrey Mastrull; Viktor Dubovoy; Laurence Du-Thumm; Steven Misner; David Santos; Long Pan
Archive | 2017
Viktor Dubovoy; Long Pan
Archive | 2017
Baohua Qiao; Long Pan; Gregory Szewczyk; Ravi Subramanyam; Shiri Nawrocki; Viktor Dubovoy
Archive | 2016
Scott Smart; Long Pan; Kristen Reale; Viktor Dubovoy
Archive | 2015
Viktor Dubovoy; Michael A. Stranick; Peter R. Hilliard; Laurence Du-Thumm; Long Pan
Archive | 2014
Shiri Nawrocki; Viktor Dubovoy; Long Pan; Baohua Qiao; Gregory Szewczyk; Ravi Subramanyam
Archive | 2014
Viktor Dubovoy; Richard Adams; Sandra Wadeer; Christine Boyke; Long Pan
Archive | 2014
Viktor Dubovoy; Richard Adams; Sandra Wadeer; Christine Boyke; Long Pan