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. The research project focuses on the development of solid electrode composites, so-called boosters, for next-generation redox-targeted flow batteries. In these systems, soluble redox mediators dissolved in
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. Working within an interdisciplinary research programme, the PDRA will engineer plant systems to express functional methane monooxygenase (MMO) enzymes, including particulate and soluble MMO, and investigate
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boosters, for next-generation redox-targeted flow batteries. In these systems, soluble redox mediators dissolved in the electrolyte exchange charge with solid booster materials held in the storage tanks
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, characterizing mass transfer and selectivity under flow conditions, and screening and tuning DES compositions to optimize solubility, speciation, and electrochemical accessibility for target elements
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drug-delivery systems to address solubility and stability challenges and producing formulation solutions suitable for in vivo evaluation and future clinical translation. You will contribute
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drug-delivery systems to address solubility and stability challenges and producing formulation solutions suitable for in vivo evaluation and future clinical translation. You will contribute
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. The project involves measuring the solubility of acidic components in high pressure CO2 under gaseous, liquid, and supercritical conditions, as well as examining the flow behavior of these mixtures
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ionic liquids and deep eutectic systems. Analysis of solubility, drug content, stability, and in vitro drug release using HPLC/LC-MS or suitable analytical techniques. Ex vivo permeation studies using
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Requirements Recent or soon-to-be-completed PhD (within the last 0-5 years) in chemical engineering, materials science, chemistry, or a closely related field Expertise in crystallization science, including