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, https://orcid.org/0000-0003-3224-2103 , putinas.kalinauskas@ftmc.lt Topic Description: The development of efficient and stable photocatalysts composed of earth-abundant elements is a central challenge for
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characterization in ultra-high vacuum and via magneto-optics of hybrid interfaces between organic films and inorganic magnetic materials, in particular oxides, with potential applications in magnonics and
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of the programme is to manipulate and study the magnetic properties of complex oxides or magnetic thin films by controlling, at the nanoscale, the structural properties of materials through “phase nano-engineering
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candidate will work in the frame of a regional project ESKYMO. His/her missions will include: the definition of the thin films characteristics in relation with the engineer for the growth of the oxide thin
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Current Biology challenges this established view and advocates a significant role for the PETC redox state in sensing the R/Fr ratio (DOI: 10.1016/j.cub.2021.10.018). We found that oxidation of the PETC
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transformations under harsh environments4 making it difficult to identify the true active component. On the other hand, selective oxidation of chalcogenides is of fundamental importance in nature and organic
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PhD student at ILL: studying In situ neutron diffraction for green steel and functional metal oxides
. Complementary in situ X-ray powder diffraction will be carried out at Leipzig University, Germany. The aim of the PhD project is to understand reaction pathways of the reaction of metal oxides with hydrogen
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for Sustainable Ethylen: innovating Redox chemistry in methane conversion (SOCCER) dedicated to research and innovations within chemical looping oxidative coupling of methane (CL-OCM). The project is coordinated by
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/ Partnerships Partners of the PEPR DIADEM – CINEMA project funding this PhD: IRCER, Institut P’, ILM https://www.pepr-diadem.fr/projet/cinema-2/ Scientific Field and Context The optimization of growth–property
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also connected to the Wallenberg Initiative Materials Science for Sustainability (WISE, https://wise-materials.org ). WISE, funded by the Knut and Alice Wallenberg Foundation, is the largest-ever