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A brief overview of Materials Science in Uruguay

Published online by Cambridge University Press:  31 December 2018

Ivana Aguiar*
Affiliation:
GDMEA, Area Radioquímica, DEC, Facultad de Química, Udelar, Montevideo,Uruguay
Livia Arizaga
Affiliation:
Cátedra de Química Inorgánica, DEC, Facultad de Química, Udelar, Montevideo,Uruguay
Santiago Botasini
Affiliation:
Laboratorio de Biomateriales, Facultad de Ciencias, Udelar, Montevideo,Uruguay
María Andrea De León
Affiliation:
Cátedra de Fisicoquímica, DETEMA, Facultad de Química, Udelar, Montevideo,Uruguay
Sofia Favre
Affiliation:
Instituto de Física, Facultad de Ingeniería, Udelar, Montevideo,Uruguay
María Eugenia Pérez Barthaburu
Affiliation:
GDMEA, Centro Universitario Regional del Este, Udelar, Rocha, Uruguay
Mauricio Rodríguez
Affiliation:
Centro Universitario Regional del Este, UdelaR, Rocha, Uruguay
Mariano Romero
Affiliation:
Cátedra de Física, DETEMA, Facultad de Química, Udelar, Montevideo,Uruguay
Mariana Silva
Affiliation:
Instituto de Ensayo de Materiales, Facultad de Ingenieria, Udelar, Montevideo,Uruguay
*

Abstract

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Materials science is a growing research area in Uruguay. In order to obtain a brief overview of the research done we collected information about research in this field. As a starting point, we searched in the Scopus database for the keywords: affiliation country: “Uruguay” and subject: “Materials Science” (using the “Timbó” platform). We inspected the records and we analyzed them to construct a timeline. The data show that we are in a steady state regime of number of publications that we expect to increase together with the number of students in the area, with the generation of long term policies (grants, funding opportunities), and, if we get involved in a community that promotes this area of interest.

Type
Preface
Copyright
Copyright © Materials Research Society 2018 

References

ANII, “TIMBO.” [Online]. Available: http://timbo.org.uy/ (Accessed 1 November 2018).Google Scholar
“Scimago Journal & Country Rank.” [Online]. Available: https://www.scimagojr.com/ (Accessed 1 November 2018).Google Scholar
Ciocca, D. R. and Delgado, G., The reality of scientific research in Latin America; an insider’s perspective, Cell Stress Chaperones, 1–6 (2017).Google Scholar
Saravia, L. R. and Casamayou, L., Calculation of the photoelectric effect in germanium, J. Phys. Chem. Solids 32 (7), 15411552, (1971).CrossRefGoogle Scholar
Saravia, L. R. and Casamayou, L., Interpretation of the optical and photoemissive properties of CdTe, J. Phys. Chem. Solids 33 (1), 145155 (1972).CrossRefGoogle Scholar
Saravia, L. R. and Duomarco, J. L., The pair scattering and the photoemission effect in GaAs, J. Phys. Chem. Solids 34 (10), 16611673 (1973).CrossRefGoogle Scholar
Saravia, L. R., Strain-split energy bands and piezooptical properties of Si, J. Phys. Chem. Solids 35 (11), 14691479 (1974).CrossRefGoogle Scholar
Maggiolo De Gerszonowicz, S., Gerszonowicz, D., An approximate analytic expression of the ballistic sensitivity curve and its application to rapid measurement, Rev. Sci. Instrum 12, 9899 (1941).CrossRefGoogle Scholar
Frugoni, J. A. C., A note on the detection of sulphate ions on paper chromatograms, J. Chromatogr. A 1, 9091 (1958).CrossRefGoogle Scholar
Burastero, R. W., J.J., Martres, Amperometric Titration of Thorium in Monazite Sands, Anal. Chem. 34, 378381 (1962).CrossRefGoogle Scholar
Giglio, M., Zur Kristallchemie der Verbindungen vom Typ ABX6 I, J. Inorg. Gen. Chem. 324, 225232 (1963).Google Scholar
Hirschfeld, T., An Improved Resolution Criterion, Appl. Opt. 3 (10), 1187, Oct. (1964).Google Scholar
, P. A. W. Jr. and Hirschfeld, T., Internal Reflection Spectroscopy, Appl. Spectrosc. Rev. 1 (1), 99130 (1967).CrossRefGoogle Scholar
Dittrich, S., The influence of the chemical nature of the sample on its detectability by iodine vapor, J. Chromatogr. A 31, 628630 (1967).CrossRefGoogle ScholarPubMed
Mac-Coll, C. R. P., Carbonato complexes of cobalt(III), Coord. Chem. Rev. 4 (2), 147198 (1969).CrossRefGoogle Scholar
Martres, R. W. and Burastero, J. J., Polarographic determination of uranium in monazite sands, Analyst. 96 (1145), 579583 (1971).CrossRefGoogle Scholar
Michaelis De Saenz, S., Amonini, I., Presa, N., Changes of Specific Gravity of Nh4No3 with Temperature, During the Gradual III ⇋ iv Transition, Zeitschrift für Phys. Chemie 43 , 119122 (1964).CrossRefGoogle Scholar
Nieto, A., Heterogeneous catalysis: Resin-catalyzed saponification of methyl acetate, J. Chem. Educ. 50 (12), 846 (1973).CrossRefGoogle Scholar
Panizza, G. A. and Dally, J. W., Predicting failures with conducting-polymer fatigue-damage indicators, Exp. Mech. 13 (1), 713, (1973).CrossRefGoogle Scholar
Mognaschi, E. R., Menafra, L., and Rigamonti, A., Dielectric and nuclear spin-lattice relaxationmeasurements around the phase transition in the layered SnCl2.2H2O crystal, Ferroelectrics 13 (1), 545547 Jan. (1976).Google Scholar
Sosa, R. M., Ventura, O. N., and Liberles, A., A quantum-mechanical study of methyl fluoroformate, Chem. Phys. Lett. 70 (1), 170174 (1980).CrossRefGoogle Scholar
Kremer, C., León, A., Gambino, D., Cartesio, S., Ures, C., Savio, E., Campos, E., and Kremer, E., Solid phase reduction of 99mTcO with zinc: A method for the preparation of difficult 99m complexes, J. Label. Compd. Radiopharm. 27 (11), 13311340 (1989).CrossRefGoogle Scholar
Slomovitz, D. and Joskowicz, J., Error evaluation of thermistor linearizing circuits, Meas. Sci. Technol. 1 (12), 1280 (1990).CrossRefGoogle Scholar
SLOMOVITZ, D. and GÓMEZ, D., Influence of resistance-temperature models of thermistors on the behaviour of linearizing circuits, Int. J. Electron. 69 (5), 691696, (1990).CrossRefGoogle Scholar
Bonilla, S. and Dalchiele, E. A., Electrochemical deposition and characterization of CdTe polycrystalline thin films, Thin Solid Films 204 (2), 397403 (1991).CrossRefGoogle Scholar
Veretnik, D., Mombru, A., and Reich, S., Enhancement of crystallinity in YBa2Cu3O7−x ceramic by water or NaOH solution attack, Mater. Lett. 16 (2), 5760 (1993).CrossRefGoogle Scholar
Baran, E. J., Etcheverry, S. B., Torre, M. H., and Kremer, E., Preparation and properties of copper(II) sebacate, Polyhedron 13 (12), 18591862 (1994).CrossRefGoogle Scholar
Bussi, J., Correa, C., and Coch Frugoni, J. A., An experiment on heterogeneous catalysis, J. Chem. Educ. 68 (2), 170 (1991).CrossRefGoogle Scholar
Diano, W., Rubino, R., and Sergio, M., Al-pillared montmorillonite: Preparation from concentrated slurries of homoionic Ca clay, characterization and thermal stability, Microporous Mater. 2 (3), 179184 (1994).CrossRefGoogle Scholar
Castiglioni, J., Kieffer, R., Botana, F.J., Calvino, J.J., Rodríguez-Izquierdo, J.M., Vidal, H., Journal of Alloys and Compounds, 180 (1–2), 295-301 (1992).CrossRefGoogle Scholar
Gobbi, A. O. M. and Eiras, J. A., Dislocation damping and associated modulus defect in copper crystals, J. Alloys Compd. 211–212, 152154 (1994).CrossRefGoogle Scholar
Zinola, C. F. and Luna, A. M. C., The inhibition of Ni corrosion in H2SO4 solutions containing simple non-saturated substances, Corros. Sci. 37 (12), 19191929 (1995).CrossRefGoogle Scholar
Masoller, C., Cabeza, C., and Schifino, A. S., Effect of the nonlinear gain in the visibility of a semiconductor laser with incoherent feedback in the coherence collapsed regime, IEEE J. of Quantum Electron 33, 796803 (1997).CrossRefGoogle Scholar
Alles, A. B., Murphy, M. W., Symanski, J. J., Tremper, C. L., and Schulze, W. A., Piezoresistivity modeling of grain‐boundary junctions in positive temperature coefficient of resistivity BaTiO3, J. Appl. Phys. 77(10), 53225334 (1995).CrossRefGoogle Scholar
C. A. N. and H. G. and A. A. and J. A. E. and Bassora, L. A., Analysis of cross-coupling characteristics of piezocomposites 1-3, IEEE Ultrason. Symp. Proceedings. An Int. Symp. 2, 10231027 (1995).Google Scholar
Sarobe, R., , J. , Miraballes, I. , Molina, J. A., Forcada, J. and Hidalgo‐Álvarez, , Nephelometric assay of immunoglobulin G chemically bound to chloromethyl styrene beads, Polym. Adv. Technol 7, 749753 (1996).3.0.CO;2-0>CrossRefGoogle Scholar
Gambino, D., Otero, L., Kremer, E., Piro, O. E., and Castellano, E. E., Synthesis, characterization and crystal structure of hexakis-(thiourea-S) rhenium(III) trichloride tetrahydrate: A potential precursor to low-valent rhenium complexes, Polyhedron 16 (13), 22632270 (1997).CrossRefGoogle Scholar
Fornaro, L., Chen, H., Chattopadhyay, K., Chen, K.-T., and Burger, A., Optical, Electrical and Surface Characterization of Mercuric Iodide Platelets Grown in the HgI 2-HI-H2O System, MRS Proc. 487, 339 (1997).CrossRefGoogle Scholar
Pardo, H., Ortiz, W. A., Araújo-Moreira, F. M., Suescun, L., Toby, B., Quagliata, E., Negreira, C. A., Prassides, K., and Mombrú, A. W., A new structure in the REBaCuFeO5+δ series: LaBaCuFeO5+δ. Structure and magnetic properties in the La1−xPrxBaCuFeO5+δ system, Phys. C Supercond. 313 (1), 105114 (1999).CrossRefGoogle Scholar
Marotti, E., R. , Rondoni, A. , Quagliata, E. and Dalchiele, , Citation for: Porous Silicon Growth by Lateral Anodization, phys. stat. sol. (b), 220, 319324 (2000).3.0.CO;2-P>CrossRefGoogle Scholar
Denis, P. and Ventura, O. N., Hydroxamic chelates of boric acid, a density functional study, J. Mol. Struct. THEOCHEM. 537 (1), 173180 (2001).CrossRefGoogle Scholar
Chiozzone, R., González, R., Kremer, C., De Munno, G., and Faus, J., Oxalato complexes of Re(V). Synthesis and structural characterization of [ReO(OCH3)(ox)(L)] (L=bipy, dppe and dppee), Inorganica Chim. Acta 325 (1) 203207 (2001).CrossRefGoogle Scholar
Odriozola, G., Moncho-Jordá, A., Schmitt, A., Callejas-Fernández, J., Martínez-García, R., and Hidalgo-Álvarez, R., in Trends in Colloid and Interface Science XV, edited by Koutsoukos, P. G. (Springer, New York, 2001), pp. 8790.CrossRefGoogle Scholar
Méndez, E., Rodríguez, J. L., Arévalo, M. C., and Pastor, E., Comparative Study of Ethanol and Acetaldehyde Reactivities on Rhodium Electrodes in Acidic Media, Langmuir 18 (3), 763772 (2002).CrossRefGoogle Scholar
Tancredi, N., Medero, N., Möller, F., Píriz, J., Plada, C., and Cordero, T., Phenol adsorption onto powdered and granular activated carbon, prepared from Eucalyptus wood, J. Colloid Interface Sci. 279 (2), 357363 (2004).CrossRefGoogle ScholarPubMed
Saucedo, E., Fornaro, L., Corregidor, V., and Diéguez, E., Some structural aspects of PbxCd1-xTe bulk material, Eur. Phys. J. Appl. Phys. 27 (1), 427 - 430 (2004).CrossRefGoogle Scholar
Cuña, A., Noguera, A., Saucedo, E., and Fornaro, L., Growth of bismuth tri‐iodide platelets by the physical vapor deposition method, Cryst. Res. Technol. 39 (10), 912919 (2004).CrossRefGoogle Scholar
Ohanian, M., Caraballo, R., Dalchiele, E. A., and Quagliata, E., A Mössbauer and Electrochemical Characterization of the Corrosion Products Formed from Marine and Marine-Antartic Environments, Hyperfine Interact. 148 (1), 193198 Jun. (2003).CrossRefGoogle Scholar
Stari, F. M. A.-M. C., Moreno-Gobbi, A., Mombru, A.W., Sergeenkov, S., Lanfredi, A.J.C., Cardoso, C.A., Elastic properties of polycrystalline YBa_2Cu_3O_7: Evidence for granularity induced martensitic behavior, Phys. C 433, 50 (2005).CrossRefGoogle Scholar
Suescun, L. et al. , Structural and magnetic study of $\mathrm{La}\mathrm{Ba}\mathrm{Co}\mathrm{Cu}{\mathrm{O}}_{5+\ensuremath{\delta}}$, Phys. Rev. B 71 (14), 144405 (2005).CrossRefGoogle Scholar
Torres, J. et al. , Sm(III) complexation with small peptides. Crystal structure of [Sm2(Gly–Val)4(H2O)8](ClO4)6·2H2O, Inorganica Chim. Acta 355, 442448 (2003).CrossRefGoogle Scholar
Cerdá, M. F., Méndez, E., Gancheff, J. S., Kremer, C., and Luna, A. M. C., Redox stability of Re(V)–amine complexes, Inorg. Chem. Commun. 6 (2), 189192 (2003).CrossRefGoogle Scholar
Sánchez, G., Rodrigo, A., and Alles, A. B., Titanium nitride pacing electrodes with high surface-to-area ratios, Acta Mater. 53 (15), 40794086 (2005).CrossRefGoogle Scholar
de Sensale, G. R., Strength development of concrete with rice-husk ash, Cem. Concr. Compos. 28 (2), 158160 (2006).CrossRefGoogle Scholar
Aulet, A., Calas, H., Moreno, E., Eiras, J. A., and Negreira, C., Electrical and Acoustical Characterization of the Bessel Transducers, Ferroelectrics 333 (1), 131137 (2006).CrossRefGoogle Scholar
Faccio, R. A. W., Pardo, H., Denis, P. A., Yoshikawa Oeiras, R., Araújo-Moreira, F. M., Veríssimo-Alves, M., Marcos, A. W., Induced magnetism by single carbon vacancies in a three-dimensional graphitic network: a supercell study, Phys. Rev. B 77, (2007).Google Scholar
Sarasua, M. A., Moreno-Gobbi, L. G., Continentino, A., Magnetic transitions in a double exchange-Holstein model with electron-phonon interactions coupled to magnetism, Phys. Rev. B 79, 064408 (2009).CrossRefGoogle Scholar
Noguera, A. L., Pérez, M. E., Quagliata, E., and Fornaro, L. R., Phase, nucleation and coalescence of HgI2 onto amorphous substrates, J. Cryst. Growth 310 (7), 16911696 (2008).CrossRefGoogle Scholar
Muñoz, E., Schrebler, R., Henríquez, R., Heyser, C., Verdugo, P. A., and Marotti, R., Photoelectrochemical reduction of nitrate on p-Si coated with metallic Re thin films, Thin Solid Films 518 (1), 138146 (2009).CrossRefGoogle Scholar
Mombrú, A. W. et al. , Multilevel ferromagnetic behavior of room-temperature bulk magnetic graphite, Phys. Rev. B 71 (10), 100404 Mar. (2005).CrossRefGoogle Scholar