Expert Details
Nanotechnology, Solar Cells, Thin Films and Science/HigherEd Policy
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ID: 722694
South Dakota, USA
Developed nanomanipulation tools to engineer surfaces at single molecule scale using scanning probe microscope. Developed methods to characterize nanoscale structures using SPM based spectroscopy. Well experienced with molecule-molecule interactions on surfaces at atomic distances. Experienced in the dynamics of single atoms and molecules on surfaces.
Experienced in the development of thin film fabrication and characterization systems including: molecular beam epitaxy, UHV evaporation, sputter deposition, E-beam evaporation, ion beam assisted deposition, chemical vapor deposition. Deposited and processed metal, semiconductor, insulator thin films. Developed recipes for atomically sharp interfaces in metal/insulator/semiconductor thin films.
Education
Year | Degree | Subject | Institution |
---|---|---|---|
Year: 2001 | Degree: D. Eng | Subject: Materials Technology | Institution: Toyama University, Japan |
Year: 1993 | Degree: MS | Subject: Physics | Institution: G.B. Pant University |
Work History
Years | Employer | Title | Department |
---|---|---|---|
Years: 2004 to Present | Employer: Undisclosed | Title: Undisclosed | Department: Electrical Engineering |
Responsibilities:Available upon request. |
Language Skills
Language | Proficiency |
---|---|
Japanese | Excellent in spoken Japanese and is capable of reading and writing. |
Telugu | Native speaker |
Hindi | Excellent communication skills in Hindi |
Fields of Expertise
nanotechnology, nanomaterial, solar energy, surface characterization, surface modification engineering, thin-film technology, thin film, microfabrication, surface analysis, surface chemistry, higher education, innovation, green energy, science policy, thin film science, nanomanufacturing, nanocrystalline coating material, vacuum environment, nanowire, alternative energy, thin-film sensor, gas surface chemistry, amorphous photovoltaic cell, metal surface, surface physics, thin-film processing, self-assembled monolayer, metal surface chemistry, high vacuum system, high-vacuum technology, advanced material, adsorption, transparent conductive thin film, ultra-high vacuum system, electron-microscope vacuum system, vacuum system, renewable energy system, vacuum technology, physics, monomolecular film