Bikram Ghosh
Graduate Researcher @University Of Notre Dame - College Of Science
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WORK HISTORY
Graduate Researcher @University Of Notre Dame - College Of Science
Notre Dame, IN, US
DOCTORAL RESEARCHER, MATERIAL SCIENCE & ENGINEERING Department of Chemistry and Biochemistry, University of Notre Dame Understanding plasmon–exciton coupling in metal-semiconductor heterostructures. Probing exciton and charge carrier dynamics in semiconductor heterostructures using ultrafast spectroscopy, spectroelectrochemistry, and microscopy.
EDUCATION
Ramakrishna Mission Vidyamandira
Bachelor's of Science, Industrial Chemistry
Ramakrishna Mission Vidyamandira
Master's of Science, Applied Chemistry
University of Notre Dame - College of Science
Master of Science, Chemistry
University of Notre Dame - College of Science
Doctor of Philosophy - PhD, Materials Chemistry
ABOUT BIKRAM GHOSH
Ph.D. candidate in Materials Science & Engineering at the University of Notre DameSpecialties: Semiconductor Heterostructures | 2D Materials | Nanofabrication | Ultrafast Spectroscopy | Optoelectronics | Materials Characterization | Cleanroom Processing | Solar Energy | ElectrocatalysisWhat I DoI investigate how light and matter interact at the nanoscale, particularly in metal-semiconductor heterostructures and 2D materials systems. Using ultrafast spectroscopy and microscopy techniques, I probe exciton dynamics and charge carrier behavior with sub-picosecond resolution—work that has direct implications for improving solar cells, photodetectors, and optoelectronic devices.My expertise spans the full materials development pipeline: from synthesis in glove boxes and cleanroom fabrication (photolithography, ALD, e-beam evaporation) to advanced characterization using SEM, XRD, spectroelectrochemistry, and time-resolved spectroscopy.Research Impact- 2 first-author publications in ACS Nano and Chemical Science on plasmon-exciton coupling and charge carrier dynamics- 6 total peer-reviewed publications, including work in PNAS on electrocatalysis- MRS Best Poster Award (2025) for research on 2D heterostructures- Eilers Graduate Fellowship recipient for energy-related researchTechnical StrengthsSemiconductor Processing: Photolithography, atomic layer deposition, e-beam evaporation, thermal evaporation, spin coatingMaterials Synthesis: 2D materials, metal-semiconductor heterostructures, nanostructure engineeringAdvanced Characterization: Transient absorption spectroscopy/microscopy, TCSPC, spectroelectrochemistry, SEM, XRDSoftware & Modeling: COMSOL Multiphysics, LabVIEW, Python, OriginProLooking ForwardI\'m passionate about translating fundamental materials research into scalable semiconductor technologies. Whether it\'s developing next-generation photovoltaics, advancing 2D materials for electronics, or optimizing heterostructure interfaces for better device performance, I\'m driven by the challenge of solving complex problems at the intersection of chemistry, physics, and engineering.Currently seeking internship and full-time opportunities in semiconductor R&D where I can contribute to process development, materials characterization, or advanced device fabrication. b•••••@nd.edu | Let\'s connect if you\'re working on cutting-edge semiconductor technologies or materials innovation!
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