Neeraj Yadav
FBK - Fondazione Bruno Kessler, Fondazione Bruno Kessler, University of Trento, Panjab University, National Dairy Research Institute National Library on Dairying, Amity University
About
I am a postdoc researcher with a passion for exploring and advancing the field of Microelectromechanical Systems (MEMS) and Bio-MEMS technology, as well as microfluidics. My research interests lie at the intersection of engineering and life sciences, with a focus on developing innovative devices for biomedical applications. I possess expertise in a wide range of technical skills, including lithography techniques, semiconductor processing, biosensors, microfluidic devices, Micro & Nano device fabrication and characterization, as well as proficiency in computer-aided design (CAD) and simulation software. Through my academic journey and research endeavors, I am committed to contributing to the development of cutting-edge technologies that address real-world challenges in healthcare and biotechnology.
Employment
-
FBK - Fondazione Bruno Kessler Researcher2023 - Present
-
Fondazione Bruno Kessler Ph.D. Student2019 - 2023
-
National Dairy Research Institute National Library on Dairying Senior Research Fellow2019 - 2019
-
Imec Master Thesis Student2018 - 2018
Education
-
University of Trento Doctoral Degree in Materials, Mechatronics and Systems Engineering2019 - 2024
-
Panjab University Degree in Master of Technology in Nano Science & Nano Technology2016 - 2018
-
Amity University Degree in Bachelor of Technology in Nanotechnology2011 - 2015
Projects & Funding
Projects & funding information is unavailable.
Publications (11)
- 3D MicroOrganoSpheres Formation of Hepatocellular Carcinoma on Chip as a Novel in Vitro Model for Physiological and Therapeutic Studies Save
- Development of a miniaturized electrochemical biochip Save
- Electrochemical Chip for the Alzheimer’s Associated miRNA PCR-Free Detection Save
- Point-of-Care Sensor for the Electrochemical Detection of miRNA Biomarker of Alzheimer’s Disease Save
- Advancing three-dimensional electrophysiology: Development and evaluation of versatile platform for tailored 3D microelectrode array fabrication Save
- Enhancing the Deposition Rate and Uniformity in 3D Gold Microelectrode Arrays via Ultrasonic-Enhanced Template-Assisted Electrodeposition Save
- Influence of Ultrasonic Bath on Mold-Assisted Electrodeposition of Gold Microelectrode Arrays Save
- Development of multi-depth probing 3D microelectrode array to record electrophysiological activity within neural cultures Save
- Enrichment of motile spermatozoa from cattle semen samples by microfluidics method Save
- A novel additive manufacturing approach towards fabrication of multi-level three-dimensional microelectrode array for electrophysiological investigations Save