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PhD offer : Design and performance evaluation of innovative DES-based porous liquids for VOC capture
project, the PhD candidate will work at the interface of solution chemistry, thermodynamics, and process engineering. The research focuses on the development of Type 3 Porous Liquids (T3PLs) obtained by
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the Job related to staff position within a Research Infrastructure? No Offer Description Preparation and optical, structural, electrical, and thermal characterization of samples of porous materials
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for VOCs using Porous Liquids (PLs). These PLs will be obtained by combining porous solids with rationally designed Deep Eutectic Solvents (DESs). The objective is to transition from trial-and-error
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) to characterize the POSS-based porous liquids developed within the project; (ii) to study the sorption of gases (CO₂, H₂, N₂, CH₄) and vapors (water and solvents with increasing polarity); (iii) to understand
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challenges. Porous materials are found to be ideal for gas storage, particularly with the existence of water in the porous structure. It is critical to understand the mechanism of maximizing gas storage in
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purification applications. To explore this area of macrocycle-based porous frameworks for water contaminant removal, the candidate will be involved in the directed synthesis of organic macrocycle containing
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scaled up to industrial production. - Development of purification and separation methods - Structural and textural characterization of porous materials - Performance measurements in gas separation tests
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the Institut Charles Gerhardt de Montpellier. The postdoctoral project is a collaboration between the D3 department (Porous and Hybrid Materials) and the D2 department (Macromolecular Chemistry and Materials
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The thesis will be conducted within the Biomechanics team at IRPhé (UMR 7342). The project falls under the research theme “Living and Bio-inspired Systems.” Acoustic streaming in porous media: applications in
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interdisciplinary team of 5 to 10 members working in the fields of adsorption, analytical chemistry, biomass valorization, and materials science within the Porous & Hybrid Materials department. Agro-wastes