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Fluids moving through materials like sandstone can dissolve or precipitate solids as they travel, with an ease that depends on the size and connectivity of its pores. In natural porous materials
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environmental impact. A key process (yet not a well-studied one) is the so-called filling, in which a liquid electrolyte is incorporated into the battery, occupying the pores in the electrodes. It requires
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to obtain a range of different pore sizes. The materials will be characterised using a range of techniques, including X-ray and Electron Diffraction, Raman Spectroscopy, NMR, BET analysis, and tested for gas
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magnetic resonance methods to study the fundamentals of catalysis Central to the design of producing new catalytic processes is to understand how reactants are converted to products with the pore space of
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humidity, natural and synthesised porous materials tend to swell. The swelling occurs not only in the macro- and mesoscopic pores, but also in the nanometer-scale ones, where the fluid molecules are confined
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of droplets in micromechanical devices. Recently, we have produced the first study of spontaneous capillary flow in a single liquid pore and have produced proof-of-principle experiments in spontaneous and