Explores high-resolution 3D printing techniques, including two-photon polymerization and holographic printing, for creating complex structures with submicrometer precision.
Explores the evolution of micro and nanoengineering, focusing on the use of silicon as a mechanical material and the application of AFM and T-SPL in nanoengineering.
Explores the fundamentals and processes for photovoltaic devices, including impurities in polysilicon, ingot growth methods, wire sawing, and the impact of cracks on wafer strength.
Explores the fabrication and principles of printed humidity and temperature sensors, along with organic electrochemical transistors as versatile sensors.
Explores volumetric 3D printing, single photon technology, CT imaging, backprojection techniques, and practical applications in bioprinting and ceramics.
Explores the integration of silicon on flexible substrates for bioelectronics applications and the fabrication of flexible multiplexed transistor arrays.