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Alexandre Henrique Pinto

CV Lattes

Universidade Federal de São Carlos (UFSCAR). Centro de Ciências Exatas e de Tecnologia (CCET)  (Institutional affiliation for the last research proposal)
Birthplace: Brazil

Mr Alexandre H Pinto began his undergraduate course at Universidade Estadual Paulista UNESP, at Araraquara Campus, in 2005. In 2006,Alexandre transferred his major course in Chemistry to Federal University of São Carlos (UFSCar), São Carlos. Among, the activities developed during his major course, we can cite a Fapesp Project regarding synthesis of solid solutions of lead titanate and lanthanides elements, from 2007 to 2010, under advisory of Prof, Emerson Rodrigues de Camargo. Additionally, during his major course, he had opportunity to spend an internship between June and August 2009, at University of Minnesota, under advisory of Prof R Lee Penn. Furthermore, as compulsory discipline of his major, he spent an internship at Chemical Synthesis Lab of Brazilian Light Synchrotron Source (LNLS). Still under advisory of Prof. Dr. Emerson Rodrigues de Camargo, Mr. Pinto defended , in July 2012, a Master Thesis regarding synthesis of zinc selenide (ZnSe) nanoparticles in aqueous media and analysis of the byproducts from these synthesis. And also since 2012, he has been a referee for the periodicals Materials Science and Engineering B. Currently, Mr. Pinto is a Graduate Student at University of Minnesota, campus Twin Cities (USA), under Profa R. Lee Penn. He has worked also as Teaching Assistant on the course #1065 Chemical Principles I (Lab). (Source: Lattes Curriculum)

FAPESP support in numbers * Updated October 24, 2020
Total / Available in English
2 / 1 Completed scholarships in Brazil

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Keywords used by the researcher
Scientific publications resulting from Research Grants and Scholarships under the grantee's responsibility (7)

(References retrieved automatically from Web of Science and SciELO through information on FAPESP grants and their corresponding numbers as mentioned in the publications by the authors)

Data from Web of Science

ARANTES, TATIANE M.; PINTO, ALEXANDRE H.; LEITE, EDSON R.; LONGO, ELSON; CAMARGO, EMERSON R.. Synthesis and optimization of colloidal silica nanoparticles and their functionalization with methacrylic acid. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, v. 415, p. 209-217, . Web of Science Citations: 14. (08/09697-6, 10/13735-0)

PINTO, ALEXANDRE HENRIQUE; LEITE, EDSON ROBERTO; LONGO, ELSON; DE CAMARGO, EMERSON RODRIGUES. Crystallization at room temperature from amorphous to trigonal selenium as a byproduct of the synthesis of water dispersible zinc selenide. Materials Letters, v. 87, p. 62-65, . Web of Science Citations: 7. (10/13735-0)

ARANTES, TATIANE M.; SALA, RENATA L.; LEITE, EDSON R.; LONGO, ELSON; CAMARGO, EMERSON R.. Comparison of the nanoparticles performance in the photocatalytic degradation of a styrenebutadiene rubber nanocomposite. Journal of Applied Polymer Science, v. 128, n. 4, SI, p. 2368-2374, . Web of Science Citations: 6.

PINTO, ALEXANDRE H.; SOUZA, FLAVIO L.; CHIQUITO, ADENILSON J.; LONGO, ELSON; LEITE, EDSON R.; CAMARGO, EMERSON R.. Characterization of dense lead lanthanum titanate ceramics prepared from powders synthesized by the oxidant peroxo method. Materials Chemistry and Physics, v. 124, n. 2-3, p. 1051-1056, . Web of Science Citations: 7.

PINTO, ALEXANDRE H.; SOUZA, FLAVIO L.; LONGO, ELSON; LEITE, EDSON R.; CAMARGO, EMERSON R.. Structural and dielectric characterization of praseodymium-modified lead titanate ceramics synthesized by the OPM route. Materials Chemistry and Physics, v. 130, n. 1-2, p. 259-263, . Web of Science Citations: 4.

GONCALVES, MAYRA D.; SOUZA, FLAVIO L.; LONGO, ELSON; LEITE, EDSON R.; CAMARGO, EMERSON R.. Dielectric characterization of microwave sintered lead zirconate titanate ceramics. CERAMICS INTERNATIONAL, v. 42, n. 13, p. 14423-14430, . Web of Science Citations: 6. (13/07296-2, 09/01587-0)

GONCALVES, MAYRA D.; CAMARGO, EMERSON R.. Lanthanum-doped PZT synthesized by the oxidant peroxide method and sintered by conventional and microwave routes. CERAMICS INTERNATIONAL, v. 43, n. 3, p. 3004-3009, . Web of Science Citations: 3. (13/07296-2, 09/01587-0)

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