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; experience in physicochemical characterization techniques of bioactive compounds and materials with and without functionalization (e.g., FTIR, UV-Visible spectroscopy, HPLC, GC-MS, etc.); experience in
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printing and/or electrospinning Develop plasma-based coatings and functional surfaces for tissue engineering scaffolds Perform surface characterization using advanced techniques (XPS, FTIR, SEM, AFM
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plasma-treated hydrogels for cancer therapy Perform material and surface characterization using advanced techniques (XPS, FTIR, SEM, AFM) Evaluate biological responses in cancer and healthy cells in
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fluorescence spectroscopy (XRF); Raman spectroscopy; and Fourier-transform infrared spectroscopy (FTIR). The study of corrosion mechanisms associated with these multilayer systems (tinplate with paint coatings
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an anticipated start date of May 2026 in Dr. Nicole Fahrenfeld’s group in Civil & Environmental Engineering at Rutgers University-New Brunswick (https://sites.google.com/site/nicolefahrenfeld/home ). The postdoc
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Energy-Dispersive X-ray Spectroscopy) to visualise particle morphology at the micro- and nanoscale, and µ-FTIR (Micro-Fourier Transform Infrared Spectroscopy) for high-throughput particle identification
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-XRF, Raman, FTIR in reflection mode) to enable multimodal data fusion and automated material characterization. • Apply and further develop machine-learning and statistical models (e.g. PCA, SAM
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, FTIR, etc. Basic knowledge or training of scientific writing and presentation Proposed Salary $14.00 per hour This is a non-exempt position paid on a biweekly basis. Required Documents to Attach Resume
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distribution. Spectroscopic techniques (XPS, Raman, FTIR) for surface chemistry studies. Electrochemical Performance Evaluation: Galvanostatic cycling to assess capacity retention and rate capability
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-selected cluster source devices, 5 XPS, 3 gloveboxes, 3 XRD set-ups, ICP-MS, FTIR, 3 full time technicians, and a sufficient number of wet-labs, fume hoods, and furnaces. This project will also collaborate