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science, or a related field; • Strong knowledge of thin-film growth techniques (PLD, MBE, or similar methods); • Experience in structural characterization (X-ray diffraction, electron microscopy
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beam electron diffraction, electron energy loss spectroscopy, and geometrical phase analysis Investigation of carrier generation and recombination processes and their interaction with shallow and deep
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PhD in Physics, Materials Science or a closely related field In-depth working knowledge of electron microscopy, including image formation and contrast mechanisms, electron diffraction, and
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synthesis reactor developed as part of the project. The PhD candidate will use a range of characterization techniques, including X-ray diffraction and total X-ray scattering, scanning and transmission
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, chromatography, electron microscopy, X-ray diffraction, etc.). Methodology: • Design and synthesize model substrates to measure the activity of enzyme mimics. • Develop analytical methods to detect and quantify
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; 5. Structural, chemical, and morphological characterization (X-ray diffraction – DRX, scanning electron microscopy – SEM, transmission electron microscopy – TEM, Raman spectroscopy, Fourier transform
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loss spectroscopy (EELS) and selected area electron diffraction (SAED), as well as TEM specimen preparation using focused ion beam (FIB) techniques and analysis of HR-TEM images using fast Fourier
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diffraction, electron microscopy, spectroscopy, metallography, and quantitative image analysis. Publish research results in peer-reviewed journals and present results at conferences, seminars, and technical
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electron beams and detectors Structural and electrical characterization using TEM techniques such as scanning transmission electron microscopy, convergent beam electron diffraction, electron energy
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light and electron microscopy studies, and microelectron diffraction supporting intramural, academic, and industrial researchers. The RCNF is a pillar of Rutgers’ excellence in structural and cellular