Nanodevice Engineering & Lithography
Precision fabrication of single-nanorod FETs and custom 5-probe architectures using EBL, Photolithography, and FIB.
Read Case Study โMy expertise spans the full materials lifecycle, bridging computational design with experimental realization.
Specialized in Topochemical Molten Salt Synthesis (TMSS) for high-crystallinity powders and low-temperature hydrothermal routes for metastable phases.
Development of Zinc electrodes via electroplating and fabrication of contact pads using Orion Sputtering and CVD.
Developed a proprietary stirring-assisted protocol to synthesize high-aspect-ratio nanorods by overcoming diffusion limitations.
Shear-induced exfoliation and nucleation of nanomaterials for scalable production.
Led the "Mess Digitalization" project for 2000 students, optimizing logistics and reducing costs by 15%.
Guided 4 M.Sc./B.Sc. students through their thesis projects, focusing on experimental design, instrument training, and scientific ethics.
Executed cross-border research (India-Israel) on chiral spintronics.
Shear-induced exfoliation and nucleation of nanomaterials for scalable production.
While my core expertise is experimental, I leverage a robust computational stack to accelerate data analysis and visualization.