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Field
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its employees in reconciling work and family life and regularly undergoes the audit berufundfamilie® . Further information at: http://www.ifw-dresden.de . The Nanostructured Thin Film Materials (NTFM
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computational approaches for growing physical materials with a focus on developing atomic layer processing ferroelectric thin films and their integration with devices. Emphasis will be placed on understanding
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optical characterization of quantum dots, thin films, and other materials. Academic Qualifications and Skills Required: PhD in Physics with a strong grasp on Optics and Lasers. Demonstrated record
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hydrogen production. Research activities include thin-film deposition by magnetron sputtering, surface modification through doping and grain boundary engineering, materials characterization, and evaluation
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the fabrication of LED and laser diodes Demonstrated experience in the cleanroom fabrication of thin films by solution and vacuum processes- e-beam lithography, e-beam deposition, sputtering. A record of
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characterization of thin-film samples, e.g. spin coating, physical vapor deposition, spray coating, surface property characterizations, General skills regarding fabrication or characterization of optoelectronic
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of novel 2D materials (e.g., thin-film deposition by PVD and CVD). Proven programming skills (e.g., Python) for instrument control and data analysis. You are a highly motivated and independent researcher
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of the method of ac-electrogravimetry with dissipation (ac-EQCM-D) at different harmonics. Task I: Development of model electroactive thin films with modulable mechanical properties (Prussian Blue analogues
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) (0–30 points). * Experience in the characterization of thin-film materials (structural, morphological, and optical) (0–20 points). * Experience in the processing, and testing of optoelectronic devices
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on artificial 2D heterostructures. It will also involve the nanofabrication of microdevices (using techniques such as thin film deposition, electron-beam lithography and etching), and their electrical