Aguilar Sánchez, María Teresa Author

2D MoSe<inf>2</inf>-based nanofluids prepared by liquid phase exfoliation for heat transfer applications in concentrating solar power

  • Teruel M.
  • Aguilar T.
  • Martínez-Merino P.
  • Carrillo-Berdugo I.
  • Gallardo-Bernal J.
  • Gómez-Villarejo R.
  • Alcántara R.
  • Fernández-Lorenzo C.
  • Navas J.
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Solar Energy Materials and Solar Cells - 15/9/2019

10.1016/j.solmat.2019.109972

Cite count: 26 (Web of Science) 12 (Scopus)

Ag-based nanofluidic system to enhance heat transfer fluids for concentrating solar power: Nano-level insights

  • Gomez-Villarejo, Roberto
  • Martin, Elisa I.
  • Navas, Javier
  • Sanchez-Coronilla, Antonio
  • Aguilar, Teresa
  • Jesus Gallardo, Juan
  • Alcantara, Rodrigo
  • De los Santos, Desire
  • Carrillo-Berdugo, Ivan
  • Fernandez-Lorenzo, Concha
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APPLIED ENERGY - 15/05/2017

10.1016/j.apenergy.2017.03.003 View source

Cite count: 53 (Web of Science) 45 (Scopus)

Are Nanofluids Suitable for Volumetric Absorption in PTC-CSP Plants? An Exemplified, Realistic Assessment with Characterized Metal–Oil Nanofluids

  • Iván Carrillo-Berdugo
  • Javier Sampalo-Guzmán
  • Alejandro Domínguez-Núñez
  • T. Aguilar
  • Paloma Martínez-Merino
  • Javier Navas

ENERGY and FUELS - 22/07/2022

10.1021/acs.energyfuels.2c01759

Cite count: 2 (Web of Science)

A route for the synthesis of Cu-doped TiO2 nanoparticles with a very low band gap

  • Aguilar, T.
  • Navas, J.
  • Alcantara, R.
  • Fernandez-Lorenzo, C.
  • Gallardo, J. J.
  • Blanco, G.
  • Martin-Calleja, J.
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CHEMICAL PHYSICS LETTERS - 20/05/2013

10.1016/j.cplett.2013.04.007 View source

Cite count: 122 (Web of Science) 85 (Scopus)

A Solvothermal Synthesis of TiO2 Nanoparticles in a Non-Polar Medium to Prepare Highly Stable Nanofluids with Improved Thermal Properties

  • Aguilar T.
  • Carrillo-Berdugo I.
  • Gómez-Villarejo R.
  • Gallardo J.
  • Martínez-Merino P.
  • Piñero J.
  • Alcántara R.
  • Fernández-Lorenzo C.
  • Navas J.
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Nanomaterials - 10/10/2018

10.3390/nano8100816

Cite count: 16 (Web of Science) 8 (Scopus)

Cu(II)-Doped TiO<inf>2</inf> nanoparticles as photoelectrode in dye-sensitized solar cells: Improvement of open-circuit voltage and a light scattering effect

  • Navas, Javier
  • Aguilar, Teresa
  • Fernandez-Lorenzo, Concha
  • Alcantara, Rodrigo
  • de los Santos, Desire M.
  • Sanchez-Coronilla, Antonio
  • Zorrilla, David
  • Sanchez-Marquez, Jesus
  • Martin-Calleja, Joaquin
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Science of Advanced Materials - 1/03/2014

10.1166/sam.2014.1740 View source

Cite count: 8 (Web of Science) 7 (Scopus)

Dramatically enhanced thermal properties for TiO<inf>2</inf>-based nanofluids for being used as heat transfer fluids in concentrating solar power plants

  • Yasinskiy, Andrey
  • Navas, Javier
  • Aguilar, Teresa
  • Alcantara, Rodrigo
  • Jesus Gallardo, Juan
  • Sanchez-Coronilla, Antonio
  • Martin, Elisa I.
  • De Los Santos, Desiree
  • Fernandez-Lorenzo, Concha
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Renewable Energy - 1/04/2018

10.1016/j.renene.2017.10.057 View source

Cite count: 43 (Web of Science) 36 (Scopus)

Electronic and Structural Properties of Highly Aluminum Ion Doped TiO2 Nanoparticles: A Combined Experimental and Theoretical Study

  • de los Santos, Desiree M.
  • Aguilar, Teresa
  • Sanchez-Coronilla, Antonio
  • Navas, Javier
  • Cruz Hernandez, Norge
  • Alcantara, Rodrigo
  • Fernandez-Lorenzo, Concha
  • Martin-Calleja, Joaquin
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CHEMPHYSCHEM - 4/08/2014

10.1002/cphc.201402071 View source

Cite count: 27 (Web of Science) 19 (Scopus)

Enhanced thermophysical properties in spinel CuFe 2 O 4 ‐based nanofluids for concentrated solar power

  • Aguilar T.
  • Carrillo-Berdugo I.
  • Alcántara R.
  • Navas J.

International Journal of Energy Research - 25/03/2022

10.1002/er.7484

Cite count: 1 (Web of Science) 1 (Scopus)
Open Access

Exfoliated graphene oxide-based nanofluids with enhanced thermal and optical properties for solar collectors in concentrating solar power

  • Aguilar T.
  • Sani E.
  • Mercatelli L.
  • Carrillo-Berdugo I.
  • Torres E.
  • Navas J.

Journal of Molecular Liquids - 15/5/2020

10.1016/j.molliq.2020.112862

Cite count: 30 (Web of Science) 14 (Scopus)

This author has no books, chapters or theses.

This author has no conferences.

This author has no patents.

This author has no reports or other types of publications.

Scopus: 15

Web of Science: 17

Scopus: 19

Web of Science: 23

Last data update: 5/4/24 8:51 AM
Next scheduled update: 5/11/24 3:00 AM