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bacteriophage. Main activities will include: Development of a straightforward and inexpensive Mycobacterium tuberculosis (Mtb) lysis solution, comprising pore-forming short cationic peptides and a
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the range of ~2000°C in vacuum. When produced in the bulk of the material, the isotopes have to diffuse out of the target material grains and effuse throughout its interconnected pore network to escape from
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aging. This allows the ratio between grain size and the average pore size of the interstitial foam to be fixed. Several binders can be employed, ranging from hard and brittle to soft and deformable
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Seeking a Ph.D. to support research projects in nanotechnology related to single molecule and single cell spectroscopy. This work utilizes nanometer-diameter pores through nanometer-thick membranes
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, remoulding, and pore-pressure variation. This project will develop a new computational model to simulate seabed–mooring interaction at the particle scale. It will combine the Discrete Element Method (DEM
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, including adsorption and catalysis. MOFs consist of metal nodes connected by organic linker molecules, forming crystalline frameworks with well-defined pore systems and versatile chemistry, as recognized by
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of reservoir and cap-rock analogues to quantify hydrogen production rates, gas compositions, pore–fracture evolution and migration pathways in key reactive systems such as serpentinising ultramafic rocks
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-performance adsorption but also catalytic breakdown of these resilient pollutants. Two structurally distinct MOF systems will be developed, each offering different pore architectures and functional groups
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) information on pore distribution and (ii) computational domains to simulate CVI cycles. • Materials studied: Simple and pre-infiltrated fibrous textures using PIP, provided by project partners. • Acquisitions
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the structural flexibility of organic template-free zeolite nanocrystals. Flexibility will be explored across zeolites with small, medium, and large pores and cages, driven by the movement of cations under