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contact and thus minimize friction and damage to the surfaces for improved energy efficiency [5,6]. To characterize these different polymer brushes, atomic force microscopy (AFM) is used, which in its
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épaisseur (épaisseur maximale de quelques nanomètres). Une partie importante du travail de thèse mettra œuvre de nombreuses techniques d'analyses de surface (microscopies (AFM, MEB, fluorescence
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their hydrogen adsorption properties. Collaborate with partners to scale up processes to an industrial level. Characterization: Perform physicochemical characterizations (Raman, FTIR, XPS, TEM, SEM, AFM, BET, DLS
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found here https://www.maxiv.lu.se/beamlines- accelerators/support-labs/microscopy-labs/ . This is a temporary position from March until October 2026. Qualifications for a successful candidate are: Hold
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sustainable replacements can be developed. Our aim is to solve this challenge. Using the atomic force microscope (AFM), you will investigate the organisation of surface-active agents at the molecular scale, and
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force microscopy (AFM), fluorescence microscopy, cell biology, and data analysis. The workplace offers modern laboratory facilities and access to advanced infrastructure for cell and molecular biology
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intermoléculaire sur surface et former des matériaux 2D ou SCOFs. Ces monocouches moléculaires seront caractérisées in situ par microscopie à effet tunnel (STM) et à force atomique sans contact (nc-AFM) pour
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Materials, Bioinspired Materials and Sustainable Materials. For more details, please view https://www.ntu.edu.sg/mse/research . This position supports frontier research in the electrocatalysis of hydrogen
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force microscopy (AFM), advanced fluorescence and confocal microscopy, and quantitative biophysics. The project aims to elucidate how mechanical properties and forces emerge from molecular and structural
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to deciphering the interaction mechanism of astringent compounds with components of the oral cavity. Use the atomic force microscope (AFM) to measure nanomechanical properties. Contribute to cutting-edge research