Rupam Mukherjee
PRESIDENCY UNIVERSITY, BANGALORE, Lovely Professional University, Indian Institute of Technology Guwahati, Ramakrishna Mission Vidyamandira
About
Dr. Rupam received his PhD from Wayne State University, USA followed by postdoctoral experience from University of Tennessee, Knoxville, USA. He pursued his MSc from IIT Guwahati and undergraduate from Ramakrishna Mission Vidyamandira, Belur, West Bengal, India. Dr. Mukherjee's research work mainly encompasses synthesis and transport characterizations of 2D quantum materials and quantum percolation in nanocomposites.
After returning back to India, he joined Lovely Professional University, Punjab, India as an assistant professor of Physics and served for 5 years. Along with both undergraduate and postgraduate teaching, he has supervised 4 PhD students, 3 Master's students, 2 B.tech students and co-supervised 1 PhD student in their respective research projects. During this time, he worked on broad domains like ferroelectric polymers, Sodium based SSE and AlQ3 based flexible OLEDs.
In 2023, he has moved to Presidency University, Bangalore, India and joined as full time research assistant professor. Currently, he is supervising 2 PhD students with the focus on developing novel multiferroics for biomedical applications and treatment.
Employment
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PRESIDENCY UNIVERSITY, BANGALORE RESEARCH ASSISTANT PROFESSOR2023 - Present
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Lovely Professional University Assistant Professor2018 - 2023
Education
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Indian Institute of Technology Guwahati Master of Science2006 - 2008
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Ramakrishna Mission Vidyamandira Bachelor of Science2002 - 2005
Projects & Funding
Projects & funding information is unavailable.
Publications (51)
- Synthesis and optimization of ionic conductivity in PVDF–sodium β‑alumina hybrid nanocomposite system Save
- Thermally annealed nano-crystalline Alq3 thin films for yellow and green OLED solid-state lighting application Save
- Synthesis and optimization of ionic conductivity in PVDF–sodium β-alumina hybrid nanocomposite system Save
- Role of annealing on structural and magnetic properties of Mg–Zn spinel ferrite nanoparticles Save
- Measurement techniques for determining the thermal conductivity of bulk samples and thin films Save
- Measurement Techniques for Determining the Thermal Conductivity of Bulk Samples and Thin Films Save
- Harnessing Tamm-Plasmon Polaritons in Cantor Sequence Photonic Quasicrystals for Enhanced Cancer Cell Detection Save
- Dual Self-Referenced Refractive Index Sensor Utilizing Tamm Plasmons in Photonic Quasicrystal for Multistage Malaria Parasite Detection Save
- Delivering Drugs to Cancer Cells and inside the Mitochondria Using a Dual-Ligand Installed Targeted Drug Delivery System Save
- Concurrent targeted delivery of doxorubicin and curcumin to the cancer cells using simple and versatile ligand-installed multifaceted chitosan-based nanoconjugates Save