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Field
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in the framework of the BBEST PEPR. The project aims to valorise syngas derived from biomass via the OX-ZEO process. This relay catalytic process combines a hydrogenating metal oxide to produce
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Offer Description Objective The aim of this project is to employ X-ray characterisation combined with in-situ electrochemical and Raman spectroscopy (RS) measurements on metal, metal-oxide
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the preponderance of surface and finite size effects. This project aims to dynamically track temperature-induced phase transitions at the nanoscale through atomistic simulations. Focusing on metallic alloys and
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to the quality of the interfaces and materials, particularly the presence of an amorphous oxide in the junction. To address this challenge, InAs nanostructures coated with Sn are being developed to fabricate
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of the BMFTR-funded collaborative research project SOCool, a completely novel approach to the fabrication of metal-supported solid oxide electrolysis cells (MS-SOECs) will be developed. The proposed cell concept
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Key Responsibilities & Accountabilities Design, synthesize, and test heterogeneous catalysts (e.g., supported metals, oxides, single-atom systems, and high-entropy metal alloy systems) and operate
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) interfaces (e.g., between carbonaceous anodes and ionic liquid electrolytes in next-generation Na-ion batteries), and the solid-solid (S-S) interfaces (e.g., between metal oxide catalysts and carbon support
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to create a step-change in protein-templated synthesis and metal oxide sintering. You will work within a highly skilled, interdisciplinary team of researchers to develop protein-mediated low temperature
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for basic and applied science. [Work content and job description] Regarding the research on “development of metal oxide-based oxygen evolution catalysts and cell performance evaluation” of the research
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areas: Thin-film deposition (including crystal growth) and characterization of two-dimensional (2D) transition metal dichalcogenides (TMDCs) and oxide semiconductor materials Semiconductor device