Sort by
Refine Your Search
-
Listed
-
Category
-
Employer
-
Field
-
plasmonic nanogap cavities into a scanning probe technique. Plasmonic nanogap cavities are plasmonic nanoparticles placed few nanometers above a metallic surface. They can confine light to atomic dimensions
-
center, CRC 1719 ChemPrint “Next-generation printed semiconductors: Atomic-level engineering via molecular surface chemistry”. Your tasks Develop new approaches for electrodeposition of metals
-
Are you passionate about cutting-edge fundamental research on molecular and 2D materials heterostructures? Are you looking to pursue your PhD in an excellent, interdisciplinary research environment
-
of Chemistry (Inorganic Chemistry). Our group investigates fundamental questions in bioinorganic chemistry using advanced spectroscopic techniques to understand the structure and reactivity of complex metal
-
of Chemistry (Inorganic Chemistry). Our group investigates fundamental questions in bioinorganic chemistry using advanced spectroscopic techniques to understand the structure and reactivity of complex metal
-
with a focus on steels and other metallic alloys. Our institute underwent a significant transformation, reflecting our unwavering commitment to pioneering basic research on sustainable materials
-
mineral and metal-bearing raw materials more efficiently and to recycle them in an environmentally friendly way. The Department of Modelling and Evaluation is looking for a PhD Student (f/m/d) to work in
-
PhD Position (m/f/d) - Atomic Layer Deposition (ALD) of transition metals for biomedical application
information at: www.ifw-dresden.de The Institute for Metallic Materials of the IFW Dresden offers a Ph.D. position (m/f/div), TV-L 13, 70 % on the following topic: Atomic Layer Deposition (ALD) of transition
-
qualification (usually PhD). Tasks: The successful candidate will work in a team developing metal-free magnetism in graphene-related materials and organic 2-dimentional crystals by means of theoretical materials
-
the frameworks. • Elucidation of the effects of coupled confinement of multiple catalytic centers. Requirements • Master's degree in Chemistry or Materials Science. • Experience in organic/metal–organic