Shyamal Mondal
Also known as: S. Mondal
Fondazione Bruno Kessler, Maharaja Manindra Chandra College, Saha Institute of Nuclear Physics, University of Burdwan, Banwarilal Bhalotia College
About
Dr. Shyamal Mondal is a dedicated researcher with a passion for experimental work and problem-solving. With over 12 years of experience in nanofabrication, thin film deposition, and characterization techniques, they hold a Ph.D. in Physics and have conducted post-doctoral research.
Known for his hands-on approach to challenging problems, Dr.Mondal has successfully managed various projects nationally and internationally, including lab setups, supervising students, and collaborating with international teams. Their excellent communication skills and belief in teamwork have earned him a reputation as a compassionate colleague.
Throughout his academic journey, Dr. Mondal has displayed exceptional time management skills, meeting deadlines, and delivering results. His experience with various deposition methods, such as magnetron sputtering, PECVD, and e-beam evaporation, makes him a valuable asset in the field of nano and micro fabrication.
Employment
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Fondazione Bruno Kessler Post doctoral researcher2018 - Present
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Maharaja Manindra Chandra College Assistant Professor2015 - Present
Education
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Saha Institute of Nuclear Physics Doctoral2008 - 2015
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University of Burdwan Masters2006 - 2008
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Banwarilal Bhalotia College Bachelors2003 - 2006
Projects & Funding
Projects & funding information is unavailable.
Publications (21)
- Omnidirectional and broadband photon harvesting in self-organized Ge columnar nanovoids Save
- Observation of ordered arrays of endotaxially grown nanostructures from size-selected Cu-nanoclusters deposited on patterned substrates of Si Save
- Oriented attachment induced morphology modulation of ZnO nanoparticles at low temperature using KOH as a morphology controller Save
- Surface scaling behaviour of size-selected Ag-nanocluster film growing under subsequent shadowing process Save
- Controlled deposition of size-selected metal nanoclusters on prepatterned substrate Save
- Thermal diffusion driven Island formation and fragmentation of size-selected Ag-nanocluster films Save
- Pattern formation on ion-irradiated Si surface at energies where sputtering is negligible Save
- Nanomechanical properties of ion induced Si ripple patterns Save
- Oxygen adsorption by supported size-selected copper clusters: Substrate effects Save
- Size and density controlled Ag nanocluster embedded MOS structure for memory applications Save