Sort by
Refine Your Search
-
solution processable metal oxides (classical and complex), halide perovskites (Pb-free, 2D and 3D) and, more recently, 2D materials and MXenes. We aim at the development of highly stable solar cells
-
colloidal routes, enabling precise control over size, morphology, composition, and structural complexity. This role offers an unparalleled opportunity to lead the computational core of a cutting-edge
-
and 2D materials, and oxides. Fabrication of functionalized Pb-free MHPs by solution processing methods. Fabrication of complete Pb-free MHPs solar cells and memristors (TFTs). Stability analysis
-
analysis. Main Tasks and responsibilities: · Operate and optimize advanced STEM and FIB instrumentation for the nanoscale analysis of catalytic and energy-related nanomaterials, supporting the development
-
this towards photonic and optoelectronic applications. In this project, you will work on optothermal effects in 2D materials. Main Tasks and responsibilities: To perform optothermal measurements, analysis and
-
As a flagship research center in nanoscience and nanotechnology, our mission is to open and explore new frontiers of knowledge at the nanoscale, and bring value to society in the form of new understanding, capabilities and innovation, while inspiring and providing broad training to the next...
-
addressing crucial challenges in the evolving landscape of information technology and energy consumption. We seek to refine and advance characterization techniques for a comprehensive analysis of thermal
-
(including AFM, PFM); imaging of magnetic domains (MFM); analysis of bit states for probabilistic computing (Shannon entropy, bit error rate, unclonable functions, etc.); analysis of surfaces (XPS); experience
-
) in collaboration with experimental neuroscientists. A central task and responsibility of the candidate will be to lead and execute the analysis of electrophysiological data (signal quality, biomarker
-
fields. Main tasks and responsibilities: · Operate and optimize advanced STEM and FIB instrumentation for the nanoscale analysis of catalytic and energy-related nanomaterials, supporting the development