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María Teresa Navarro
Researcher at Polytechnic University of Valencia
Publications - 43
Citations - 3827
María Teresa Navarro is an academic researcher from Polytechnic University of Valencia. The author has contributed to research in topics: Catalysis & Mesoporous material. The author has an hindex of 22, co-authored 43 publications receiving 3704 citations. Previous affiliations of María Teresa Navarro include University of Castilla–La Mancha & Spanish National Research Council.
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Synthesis of an ultralarge pore titanium silicate isomorphous to MCM-41 and its application as a catalyst for selective oxidation of hydrocarbons
TL;DR: An ultralarge pore titanium silicate with MCM-41 structure has been prepared by direct hydrothermal synthesis; this material gives rise to useful catalysts for the selective oxidation of small and large organic compounds.
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Acidity and Stability of MCM-41 Crystalline Aluminosilicates
TL;DR: In this article, it was shown that MCM-41 is readily dealuminated upon thermal treatment both in air and in N2 atmosphere, and after calcination the sample shows an acidity of medium strength as compared with a USY zeolite.
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Synthesis, Characterization, and Catalytic Activity of Ti-MCM-41 Structures
TL;DR: In this article, it has been shown that the intrinsic activity of MCM-41 is lower than Ti-Beta and TS-1 when using H2O2 as oxidant.
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Synthesis of MCM-41 with Different Pore Diameters without Addition of Auxiliary Organics
TL;DR: In this paper, the authors suggest that the mechanism of swelling is related with the replacement of some CTMA+ species by others cations in the interface formed between the liquid crystal and the silica surfaces.
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Strategies to improve the epoxidation activity and selectivity of Ti-MCM-41
Avelino Corma,Marcelo Eduardo Domine,J. A. Gaona,José L. Jordá,María Teresa Navarro,Fernando Rey,Joaquín Pérez-Pariente,Junpei Tsuji,Beth McCulloch,Laszlo T. Nemeth +9 more
TL;DR: In this article, two strategies to improve the catalytic activity of Ti-MCM-41 materials in the epoxidation of olefins are described; the first approach involves silylation of the surface of the Ti material, which produces a very hydrophobic catalyst whereas the second approach is based on removal of water from the reaction media.