Characterization of TiO2 Nanoparticle’s Morphology and its Influence on the Hydrogen Sorption Kinetics of MgH2

TiO2 nanorods present good performance as catalysts in the sorption behavior of magnesium hydride. In the present study, the morphology of TiO2 nanorods produced from titanate nanotubes heat-treated at 550 °C (NR550), 650 °C (NR650) and 750 °C (NR750) was characterized and their catalytic role on th...

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Published inMaterials research (São Carlos, São Paulo, Brazil) Vol. 22; no. suppl 1
Main Authors Pereira, Anderson de Farias, Paciornik, Sidnei, Santos, Dilson Silva dos, Jardim, Paula Mendes
Format Journal Article
LanguageEnglish
Published ABM, ABC, ABPol 01.01.2019
Associação Brasileira de Metalurgia e Materiais (ABM); Associação Brasileira de Cerâmica (ABC); Associação Brasileira de Polímeros (ABPol)
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Abstract TiO2 nanorods present good performance as catalysts in the sorption behavior of magnesium hydride. In the present study, the morphology of TiO2 nanorods produced from titanate nanotubes heat-treated at 550 °C (NR550), 650 °C (NR650) and 750 °C (NR750) was characterized and their catalytic role on the sorption kinetics of MgH2 was evaluated. For this, ball-milled MgH2-TiO2 nanocomposites with 5 wt% of additives were prepared and the materials were characterized by X-ray diffraction (XRD), BET surface area and Transmission Electron Microscopy (TEM). The hydrogen sorption kinetics of the composites were evaluated in a Sievert’s apparatus at 350 °C. The results indicated that NR550 and NR650 consisted of a mixture of nanorods and nanoparticles and NR750 of coarser nanoparticles of TiO2-anatase with a small amount of rutile. Composites with NR750 and NR550 presented the best sorption kinetics, suggesting the positive effect of the presence of rutile and of anatase nanorods, respectively, on the sorption properties of the material.
AbstractList TiO2 nanorods present good performance as catalysts in the sorption behavior of magnesium hydride. In the present study, the morphology of TiO2 nanorods produced from titanate nanotubes heat-treated at 550 °C (NR550), 650 °C (NR650) and 750 °C (NR750) was characterized and their catalytic role on the sorption kinetics of MgH2 was evaluated. For this, ball-milled MgH2-TiO2 nanocomposites with 5 wt% of additives were prepared and the materials were characterized by X-ray diffraction (XRD), BET surface area and Transmission Electron Microscopy (TEM). The hydrogen sorption kinetics of the composites were evaluated in a Sievert’s apparatus at 350 °C. The results indicated that NR550 and NR650 consisted of a mixture of nanorods and nanoparticles and NR750 of coarser nanoparticles of TiO2-anatase with a small amount of rutile. Composites with NR750 and NR550 presented the best sorption kinetics, suggesting the positive effect of the presence of rutile and of anatase nanorods, respectively, on the sorption properties of the material.
Author Jardim, Paula Mendes
Santos, Dilson Silva dos
Pereira, Anderson de Farias
Paciornik, Sidnei
AuthorAffiliation Universidade Federal do Rio de Janeiro
Pontifícia Universidade Católica do Rio de Janeiro
AuthorAffiliation_xml – name: Pontifícia Universidade Católica do Rio de Janeiro
– name: Universidade Federal do Rio de Janeiro
Author_xml – sequence: 1
  givenname: Anderson de Farias
  orcidid: 0000-0001-5404-9879
  surname: Pereira
  fullname: Pereira, Anderson de Farias
  organization: Universidade Federal do Rio de Janeiro, Brasil
– sequence: 2
  givenname: Sidnei
  surname: Paciornik
  fullname: Paciornik, Sidnei
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  givenname: Paula Mendes
  surname: Jardim
  fullname: Jardim, Paula Mendes
  organization: Universidade Federal do Rio de Janeiro, Brasil
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Issue suppl 1
Keywords TiO2 nanorods
magnesium hydride
1D nanomaterials
hydrogen storage
Language English
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Snippet TiO2 nanorods present good performance as catalysts in the sorption behavior of magnesium hydride. In the present study, the morphology of TiO2 nanorods...
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SubjectTerms 1D nanomaterials
ENGINEERING, CHEMICAL
hydrogen storage
magnesium hydride
MATERIALS SCIENCE, MULTIDISCIPLINARY
METALLURGY & METALLURGICAL ENGINEERING
TiO2 nanorods
Title Characterization of TiO2 Nanoparticle’s Morphology and its Influence on the Hydrogen Sorption Kinetics of MgH2
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Volume 22
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