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are highly toxic and can only be reliably tested at >1ppm levels. To overcome this limitation, new sensing materials such as 2D materials and their heterostructures will be investigated to enable ppb level
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PhD project to develop theoretical computations and modelling methods to guide and optimise the synthesis conditions and composition of electrocatalysts. PhD project to develop theoretical
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) and computer simulation (FEA) Experience in material characterisation and experimental testings Knowledge in impact dynamics Passionate and have interest in pursuing PhD degree. Experience in research
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) and complete any other CSIRO requirements. Ideally, the applicant will have a bachelor degree in chemistry, chemical engineering, material science or engineering or relevant fields. Preference will be
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team tackling major challenges facing the world’s population in global sustainability and wellbeing as part of the QUEX Institute. The joint PhD programme provides a fantastic opportunity for the most
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substantial research component. The successful applicant will have an undergraduate or postgraduate degree in Materials Science, Chemistry, Chemical Engineering, Mechanical Engineering, or related areas
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the value of the spent battery materials. Student type Future Students Faculties and centres Faculty of Science & Engineering Western Australian School of Mines (WASM) Course type Higher Degree by Research
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applicant will receive a tax-free stipend of $36,063 per annum (2025 full-time rate). The Structured Biointerfaces Group at Monash Institute of Pharmaceutical Sciences is an established group led by Professor
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concept of this project lies in the design of novel perovskite materials as both electrolyte and electrodes for facilitating water splitting for hydrogen production. Such new technology is anticipated
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should have Masters or bachelor (Honors) degree in Engineering (e.g., Chemical, Materials, Environmental, Resources) or Chemistry (e.g., Inorganic Chemistry, Physical Chemistry, Electrochemistry