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Laos Alexandre Hirano

CV Lattes


Ministério da Educação (Brasil). Universidade Federal do ABC (UFABC). Centro de Engenharia, Modelagem e Ciências Sociais Aplicadas (CECS)  (Institutional affiliation for the last research proposal)
Birthplace: Brazil

Graduated in Control Engineering and Automation, at Universidade Federal de Ouro Preto (2006), master's degree in Materials Engineering at Rede Temática de Engenharia de Materiais - UFOP / UEMG / CETEC (2009) and PhD at Post-graduation Program in Nanoscience and Advanced Materials, at Universidade Federal do ABC. Has experience in the area of Materials Engineering, with emphasis on Electroactive Polymers, acting on the following topics: electroactive polymers, artificial muscles, robotics and ionomeric polymers metal composites. (Source: Lattes Curriculum)

FAPESP support in numbers * Updated May 23, 2020
Total / Available in English
1 / 1 Completed scholarships in Brazil

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Most frequent collaborators in research granted by FAPESP
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Use this Research Supported by FAPESP (BV/FAPESP) channel only to send messages referring to FAPESP-funded scientific projects.


 

 

 

 

Keywords used by the researcher
Scientific publications resulting from Research Grants and Scholarships under the grantee's responsibility (2)

(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)

Publications2
Citations13
Cit./Article6.5
Data from Web of Science

HIRANO, LAOS ALEXANDRE; ACERBI, LENIN WAGNER; KIKUCHI, KUNITOMO; TSUCHITANI, SHIGEKI; SCURACCHIO, CARLOS HENRIQUE. Study of the Influence of the Hydration Level on the Electromechanical Behavior of Nafion Based Ionomeric Polymer-metal Composites Actuators. MATERIALS RESEARCH-IBERO-AMERICAN JOURNAL OF MATERIALS, v. 18, n. 2, p. 154-158, . Web of Science Citations: 1. (09/09928-0)

HIRANO, LAOS A.; ESCOTE, MARCIA T.; MARTINS-FILHO, LUIZ S.; MANTOVANI, GERSON L.; SCURACCHIO, CARLOS H.. Development of Artificial Muscles Based on Electroactive Ionomeric Polymer-Metal Composites. ARTIFICIAL ORGANS, v. 35, n. 5, p. 478-483, . Web of Science Citations: 12. (09/09928-0)

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