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. This collaborative project will run from 1 July 2024 for 5 years. The focus will be on designing composites of the inorganic solid electrolytes with polymers that retain the high conductivity of the materials, allow
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usually involves molecules, polymeric molecules, bulk polymers, and interfaces of polymers. Other types of advanced materials (e.g., inorganic materials) are also considered. The research typically involves
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usually involves molecules, polymeric molecules, bulk polymers, and interfaces of polymers. Other types of advanced materials (e.g., inorganic materials) are also considered. The research typically involves
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usually involves molecules, polymeric molecules, bulk polymers, and interfaces of polymers. Other types of advanced materials (e.g., inorganic materials) are also considered. The research typically involves
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Job Description To conduct research in area of composite hybrid thermoelectric materials and devices Qualifications 1. A Ph.D. degree in area of Polymer Science and Engineering, or Physical
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Job Description To conduct research in area of composite hybrid thermoelectric materials and devices Qualifications 1. A Ph.D. degree in area of Polymer Science and Engineering, or Physical
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Job Description • Polymer Synthesis • Nanomaterials Synthesis • Self-Assembly, particularly crystallization-induced self-assembly • Mentor PhD students • Draft grant proposals
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English Previous research experience in conducting polymers, hydrogel, flexible electronics and microfluidics is advantageous. To apply, please send your cover letter, CV and names of 3 references (name
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Job Description The successful candidate will work with A/Prof Suresh Valiyaveettil on assessing the environmental impact of microplastics and controlled polymer degradation. The job involves
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papers and collaboration with other researchers Job Requirements • Possess a PhD degree in Chemistry, Materials, Polymers and Chemical Engineering. • Good knowledge in synthesis and characterization