Laura Acebo

Laura Acebo
CIDETEC | CIDETEC

About

10
Publications
1,708
Reads
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116
Citations
Citations since 2017
7 Research Items
111 Citations
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201720182019202020212022202305101520
201720182019202020212022202305101520
201720182019202020212022202305101520
Additional affiliations
March 2021 - September 2021
CTME
Position
  • - Direction and responsible of projects
Description
  • Development of scientific projects in thermal projection. - Metallic, ceramic and composite coatings for parts that acquire an improvement in properties such as higher hardness, corrosion resistance, resistance to high temperatures, etc. - Characterization of materials. - Optimization of coatings. - Application of these coatings on different types of materials as rigid steels and flexible, woven, etc.
December 2016 - December 2020
CIC Energigune
Position
  • PhD Student
Description
  • Development of new cathode materials for sodium batteries: - Synthesis and characterization of advanced materials used as cathodes, phosphate type and laminar oxides. - Manufacture of semi-cell and full cell batteries - Characterization of materials and batteries, studying the effect of syntheses on the properties of materials, mainly morphological and electrochemical. - Optimization of materials and batteries. - Possibility of taking these materials to the industry in order to be used in future
December 2014 - November 2016
IREC Catalonia Institute for Energy Research
Position
  • Researcher
Description
  • I was working in advanced materials for energy

Publications

Publications (10)
Article
The sodium deficiency issue of Na0.67[Fe0.5Mn0.5]O2, P2-type layered oxide, is compensated with the addition of Na2C4O4 as sacrificial salt. Na2C4O4 is easy to synthesize and stable, which makes it easy to handle and scale-up. Sodium-free hard carbon anode and sodium-deficient layered oxide cathode, mixed with different amounts of Na2C4O4, are used...
Article
Full-text available
Accesible at http://onlinelibrary.wiley.com/doi/10.1002/pip.2981/abstract http://onlinelibrary.wiley.com/doi/10.1002/pip.2981/epdf The cover image, by Ignacio Becerril-Romero et al., is based on the Research Article CZTSe solar cells developed on polymer substrates: Effects of low-temperature processing, DOI: 10.1002/pip.2945.
Article
Full-text available
Earth abundant compounds are of interest as possible alternative to more mature thin film based technologies. Cu2SnZnSe4 (CZTS) is the most studied material but its development is impeded by an easy formation of secondary phases, decomposition effects during both synthesis and post process treatments, and formation of Cu-Zn defects resulting in lim...
Article
Full text available through www.sci-hub.hk Cu2ZnSn(S1−xSex)4 solar cells are well suited for roll-to-roll mass production since they are formed mainly by non-toxic and earth-abundant elements. Polyimide (PI) has proved to be a promising roll-to-roll compatible substrate yielding very high efficiency devices for Cu(In,Ga)Se2. In this work, we demon...
Article
Full-text available
A spherical carbonyl iron powder was consolidated by the field-assisted hot pressing technique using graphite tools at two different temperatures, both above the austenitizing temperature. The microstructures obtained exhibited a compositional gradient in carbon along the consolidated material. Thus, the outer rim of the cylindrical samples was com...

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