Fernández Lorenzo, María Concepción Autor

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

Número de citas: 26 (Web of Science) 12 (Scopus)

Intrinsic stability analysis of perovskite nanopowder with double and triple cation in a site, FA<inf>x</inf>MA<inf>(1-x)</inf>PbI<inf>3</inf> and FA<inf>x</inf>Cs<inf>y</inf>MA<inf>(1-x-y)</inf>PbI<inf>3</inf>

  • Gallardo J.
  • Barea-Sepúlveda M.
  • Aguilar T.
  • Alcántara R.
  • Fernández-Lorenzo C.
  • Navas J.

Materials Research Bulletin - 1/11/2019

10.1016/j.materresbull.2019.110528

Número de citas: 5 (Web of Science) 3 (Scopus)

Interface-inspired formulation and molecular-level perspectives on heat conduction and energy storage of nanofluids

  • Carrillo-Berdugo I.
  • Zorrilla D.
  • Sánchez-Márquez J.
  • Aguilar T.
  • Gallardo J.
  • Gómez-Villarejo R.
  • Alcántara R.
  • Fernández-Lorenzo C.
  • Navas J.
... Ver más Contraer

Scientific Reports - 20/05/2019

10.1038/s41598-019-44054-0

Número de citas: 18 (Web of Science) 15 (Scopus)

Visible-Light-Enhanced Photocatalytic Activity of Totally Inorganic Halide-Based Perovskite

  • Reyes-Pérez F.
  • Gallardo J.
  • Aguilar T.
  • Alcántara R.
  • Fernández-Lorenzo C.
  • Navas J.

ChemistrySelect - 28/9/2018

10.1002/slct.201801564

Número de citas: 21 (Web of Science) 7 (Scopus)

Experimental characterization and theoretical modelling of Ag and Au-nanofluids: A comparative study of their thermal properties

  • Gómez-Villarejo R.
  • Martín E.
  • Sánchez-Coronilla A.
  • Aguilar T.
  • Teruel M.
  • Alcántara R.
  • Carrillo-Berdugo I.
  • Fernández-Lorenzo C.
  • Navas J.
... Ver más Contraer

Journal of Nanofluids - 1/12/2018

10.1166/jon.2018.1544

Número de citas: 3 (Web of Science) 3 (Scopus)

Towards the improvement of the global efficiency of concentrating solar power plants by using Pt-based nanofluids: The internal molecular structure effect

  • Gómez-Villarejo R.
  • Martín E.
  • Sánchez-Coronilla A.
  • Aguilar T.
  • Gallardo J.
  • Martínez-Merino P.
  • Carrillo-Berdugo I.
  • Alcántara R.
  • Fernández-Lorenzo C.
  • Navas J.
... Ver más Contraer

APPLIED ENERGY - 15/10/2018

10.1016/j.apenergy.2018.07.062

Número de citas: 13 (Web of Science) 6 (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.
... Ver más Contraer

Nanomaterials - 10/10/2018

10.3390/nano8100816

Número de citas: 16 (Web of Science) 8 (Scopus)

MoS2 nanosheets vs. nanowires: preparation and a theoretical study of highly stable and efficient nanofluids for concentrating solar power

  • Navas J.
  • Martínez-Merino P.
  • Sánchez-Coronilla A.
  • Gallardo J.
  • Alcántara R.
  • Martín E.
  • Piñero J.
  • León J.
  • Aguilar T.
  • Toledo J.
  • Fernández-Lorenzo C.
... Ver más Contraer

Journal of Materials Chemistry A - 1/1/2018

10.1039/c8ta03817a

Número de citas: 22 (Web of Science) 15 (Scopus)
Open Access

MoS2/Cu/TiO2 nanoparticles: synthesis, characterization and effect on photocatalytic decomposition of methylene blue in water under visible light

  • Santos D.
  • Chahid S.
  • Alcántara R.
  • Navas J.
  • Aguilar T.
  • Gallardo J.
  • Gómez-Villarejo R.
  • Carrillo-Berdugo I.
  • Fernández-Lorenzo C.
... Ver más Contraer

WATER SCIENCE AND TECHNOLOGY - 1/1/2018

10.2166/wst.2018.101

Número de citas: 8 (Web of Science) 6 (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 Ver en origen

Número de citas: 43 (Web of Science) 36 (Scopus)

Influence of the Ge coverage prior to carbonization on the structure of SiC grown on Si(111)

  • Morales, FM
  • Zgheib, C
  • Molina, SI
  • Araujo, D
  • Garcia, R
  • Fernandez, C
  • Sanz-Hervas, A
  • Masri, P
  • Weih, P
  • Stauden, T
  • Ambacher, O
  • Pezoldt, J
  • Madar, R
  • Camassel, J
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Materials Science Forum - 29/11/2004

10.4028/www.scientific.net/msf.457-460.297 Ver en origen

Número de citas: 4 (Web of Science) 3 (Scopus)

Synthesis and Raman spectroscopy study of TiO2 nanoparticles

  • Alcántara, R.
  • Navas, J.
  • Fernández-Lorenzo, C.
  • Martín, J.
  • Guillén, E.
  • Anta, J.A.

PHYSICA STATUS SOLIDI C: CURRENT TOPICS IN SOLID STATE PHYSICS, VOL 8, NO 6 - 1/6/2011

10.1002/pssc.201000319 Ver en origen

Número de citas: 14 (Web of Science) 12 (Scopus)

The role of Ge predeposition temperature in the MBE epitaxy of SiC on silicon

  • Morales, FM
  • Zgheib, C
  • Molina, SI
  • Araujo, D
  • Garcia, R
  • Fernandez, C
  • Sanz-Hervas, A
  • Masri, P
  • Weih, P
  • Stauden, T
  • Cimalla, V
  • Ambacher, O
  • Pezoldt, J
  • Godlewski, M
  • Kossut, J
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Physica Status Solidi C: Conferences - 18/5/2004

10.1002/pssc.200303940 Ver en origen

Número de citas: 11 (Web of Science) 12 (Scopus)

RAMAN-SPECTROSCOPY OF PHOSPHORUS-DOPED SILICA-GELS

  • FERNANDEZLORENZO, C
  • MARTIN, J
  • ESQUIVIAS, LM
  • BLANCO, E
  • HENCH, LL
  • WEST, JK

CHEMICAL PROCESSING OF ADVANCED MATERIALS - 1992

Número de citas: 1 (Web of Science)

Este autor no tiene patentes.

M(Al,Ni)-TiO2-Based Photoanode for Photoelectrochemical Solar Cells

  • Navas J.
  • Reyes-Pérez F.
  • Alcántara R.
  • Fernández-Lorenzo C.
  • Bernal J.
  • Martín-Calleja J.

ZEITSCHRIFT FUR PHYSIKALISCHE CHEMIE-INTERNATIONAL JOURNAL OF RESEARCH IN PHYSICAL CHEMISTRY and CHEMICAL PHYSICS - 17/11/2017

10.1515/zpch-2017-1002

Número de citas: 6 (Web of Science) 2 (Scopus)

Scopus: 21

Web of Science: 23

Scopus: 37

Web of Science: 43

Última actualización de los datos: 15/06/24 8:58
Próxima recolección programada: 22/06/24 3:00