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for specific textile functionalities (antibiofilm, repellence, adhesion). Characterize the deposited materials using various surface analytical techniques (e.g., XPS, SEM, etc.). Evaluate the performance
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material characterization techniques (e.g., SEM, EDS, XRD, XPS), Timely and high-quality contributions to project deliverables, reports, and milestones Team-oriented attitude, continuous learning mindset
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SD-26086 POSTDOCTORAL RESEARCHER IN THE PHYSICAL VAPOR DEPOSITION OF ELECTROCATALYST FOR PHOTOANO...
physical vapor deposition of transparent oxide thin films and metal alloy thin films for advanced electrocatalytic applications (WP1). Comprehensive characterization methods, including surface analysis (XPS
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SD-26083 – POSTDOCTORAL RESEARCHER IN THE CHEMICAL VAPOR DEPOSITION OF METAL ORGANIC FRAMEWORKS F...
, including surface analysis (XPS, Raman, SIMS, HRMS, BET, TEM, FTIR, SEM, XRD, UV/Vis/NIR) and electrochemical analysis will be employed to evaluate the thin film properties. The researcher will work closely
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SD-26084 – POSTDOCTORAL RESEARCHER IN THE CHEMICAL VAPOR DEPOSITION OF COVALENT ORGANIC FRAMEWORK...
, including surface analysis (XPS, Raman, SIMS, HRMS, BET, TEM, FTIR, SEM, XRD, UV/Vis/NIR) and electrochemical analysis will be employed to evaluate the thin film properties. The researcher will work closely
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SD-26085 POSTDOCTORAL RESEARCHER IN THE OXIDATIVE CHEMICAL VAPOR DEPOSITION OF FUNCTIONAL BUILDIN...
chemical vapor deposition of unexplored building blocks for the synthesis of functional thin films (WP2). Comprehensive characterization methods, including surface analysis (XPS, Raman, SIMS, HRMS, TEM, FTIR
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porous materials. Proven expertise in the characterization of carbon materials (e.g., XPS, Raman spectroscopy, SEM) and adsorption methods. Experience with supercapacitors, electrochemical CO2 capture
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to examine the textural and structural properties of porous materials using a panoply of characterization techniques such as XRD, N2 adsorption, SEM, TEM, XAS, XPS, dissolution-NMR, IR spectroscopy and TGA
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characterization techniques such as XRD, N2 adsorption, FESEM, TEM, XAS, XPS, dissolution-NMR, IR spectroscopy and TGA and other related spectroscopy techniques such as UV and fluorometer Able to monitor
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, and gas phase X-ray Photoelectron Spectroscopy (XPS) for complementary information on the catalyst surface chemistry. The ultra-high-vacuum based model catalyst preparation allows us to highlight