Search Results - "Lacerda, Lívia C. T."
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Hybrid Materials Based on Magnetic Iron Oxides with Benzothiazole Derivatives: A Plausible Potential Spectroscopy Probe
Published in International journal of molecular sciences (12-04-2021)“…Rare diseases affect a small part of the population, and the most affected are children. Because of the low availability of patients for testing, the…”
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Bulk and surface theoretical investigation of Nb-doped δ-FeOOH as a promising bifunctional catalyst
Published in Journal of molecular modeling (01-09-2021)“…The development of bifunctional catalysts is of great interest in fine chemistry, since they are capable of promoting multicatalytic reactions involved in…”
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Ionic desorption in PMMA–gamma-Fe2O3 hybrid materials induced by fast electrons: An experimental and theoretical investigation
Published in Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy (03-01-2014)“…[Display omitted] •PMMA–maghemite hybrid material was investigate by the electron stimulated ion desorption (ESID) techniques.•Fragmentation mechanism was…”
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SYNTHESIS AND THEORETICAL STUDY OF HPW CATALYSTS SUPPORTED ON NIOBIA CALCINATED AT 500 AND 600 ºC
Published in Química Nova“…Keggin heteropolyacids (HPW) supported on niobia have been considered for both homogeneous and heterogeneous catalysis due to its special features, like the…”
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Zn-doped Nb2O5 photocatalysts driven by visible-light: An experimental and theoretical study
Published in Materials chemistry and physics (15-04-2019)“…Zn-doped Nb2O5 are prospective photocatalysts since they can be activated by visible-light. In this context, undoped and Zn-doped Nb2O5 (0.1 and 0.2% mol of…”
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Doping effect of Cu (II) in the adsorption of CrO42- by the Fe3O4 (111) surface: A theoretical study
Published in Chemical physics letters (16-10-2021)“…[Display omitted] •Industrial effluents are largely responsible for water contamination.•Fe3O4 is considered a promising catalyst for the removal of Cr (VI) in…”
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SYNTHESIS AND THEORETICAL STUDY OF HPW CATALYSTS SUPPORTED ON NIOBIA CALCINATED AT 500 AND 600 degrees C
Published in Química nova (01-08-2019)“…HPW…”
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