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electrolytes, and thin-films as well as their in-situ and operando structural characterization to ascertain the relevant multiscale properties, establish structure-property maps and provide guidance and concepts
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Materials (NEMM ) program, aiming to advancing the fundamental science of non-equilibrium magnetic materials and phenomena in thin-film materials with strong spin-orbit interactions in the presence
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field at the time of appointment. Experience with microfabrication and nanofabrication techniques, including photolithography, thin film deposition, wet chemical etching, scanning electron microscopy
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performance. The project will also involve optimizing coated hollow fiber thin film composite (TFC) preparation to produce reproducible, low-strikethrough, and defect-free TFC membranes which achieve
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structural characterization of thin films. Demonstrated ability to conduct and perform collaborative research and effectively interact with a broad range of colleagues. Demonstrated ability to represent and
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or several of the following areas: fiber optics, opto-couplers, nano- and micro-material development, optical spectroscopy, and thin film deposition techniques. Experience in developing and fully
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). Analytical chemistry analysis including inductively coupled plasma mass spectrometry (ICP-MS). Thin film deposition and materials processing including atomic layer deposition (ALD), sputtering and e-beam
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such as atomic layer deposition, thin film deposition (e-beam and metal-sputter deposition), and electrodeposition. Work in concert with team members conducting structural and functional materials