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of the remarkable physical properties of plant cells, which are able both to withstand high osmotic pressures and to dynamically remodel themselves through the action of specific enzymes. The experimental approach
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the development of flexible nanozeolites. This position offers a unique opportunity to explore the structural dynamics of nanozeolites under varying conditions and contribute to advancing green
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to optimize ternary hydrides and other materials; - Calculating the electronic structures of configurations generated in silico, as well as their thermodynamic, dynamic (phonon), and mechanical properties, and
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Eligibility criteria PhD in chemistry (organic, inorganic, materials or physical chemistry). Strong experience in molecular synthesis and/or coordination chemistry. Familiarity with at least one structural or
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people, including researchers, PhD students, engineers and technicians, within a multicultural and international environment. The person recruited will join the DYNAMOP group (https://www.ibs.fr/en
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facilities and a dynamic research environment. You will be under the direct supervision of Dr. Paul Conduit, who is a group leader at the IJM. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre
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understanding its internal structure. Interpreting these geophysical data to model planetary structure and dynamics depends on understanding the physical properties of materials under relevant pressure and
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multilayer systems has led to a deep understanding of acoustic phonons in such structures. However, the development of phononic devices operating in the GHz–THz range remains an open area, offering
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to detect, image, and analyze ferroelectric domains in 2D ferroelectric heterostructures. You will employ advanced cryogenic micro-spectroscopy, and reflection contrast imaging to visualize domain structures
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localization microscopy, in particular to enable dynamic observation of living cells. In particular, it has recently patented various concepts for localizing molecules under structured illumination inducing