Faculty Details

Manu Jaiswal

Professor

HSB 252A
Ph.D. IISc Bangalore

πŸ“ž 044 - 2257 4893
βœ‰οΈ manu.jaiswal@iitm.ac.in

πŸ‘€ Personal Home Page

Areas of Interest

βœ” Experimental Condensed Matter Physics

βœ” Physics of Graphene and 2D systems

βœ” Confined Water

βœ” Graphene Membranes

βœ” Transport phenomena - electrical and thermal

βœ” Conducting Polymers & carbon materials

Current Research

My current research interests are the exotic properties of graphene and two-dimensional systems spanning diverse topics including electronic, thermal and mechanical properties. Among the research problems In recent years I have studied problems such as the snap-through instability of atom-thin membranes over corrugated surfaces, the electromechanics of 2D systems, the ability to engineer in graphene both ultralow as well as ultrahigh thermal conductivities, and last but not the least, the physics of water and ions under confinement.

Students

Current PhD Students

βœ” PH16D001 AKASH MOHAPATRA

βœ” PH16D201 GAYATHRI P

βœ” PH17D044 LAVUDYA DEVENDAR

βœ” PH17D203 VIKAS YADAV

βœ” PH18D047 ANJAN DAS

βœ” PH20D202 ASWATHI SAMPANRAJ

βœ” PH21D080 BHAGYALAXMI POTHAL

Recent Publications

  • βœ” Intercalated water mediated electromechanical response of graphene oxide films on flexible substrates. Lavudya Devendar, M R Shijeesh, T. Sakorikar, K Lakshmi Ganapathi, and Manu Jaiswal. Condensed Matter. 34. 025001. DOI: 10.1088/1361-648X/ac2ad0. 2022.
  • βœ” Thermal transport across wrinkles in few-layer graphene stacks. Akash Mohapatra, S. Das, K. Majumdar, MSR Rao, and Manu Jaiswal. Nanoscale Advances. 3. 1708. DOI: 10.1039/D0NA00944J. 2021.
  • βœ” Stable thermal transport in reduced graphene-oxide aerogel at elevated temperatures. Prakash C. Mahakul, P. Gayathri,T. Remyamol, H. Sreemoolanadhan, M.R. Ajith and Manu Jaiswal. Materials Research Express. 7. 105603. DOI: 10.1088/2053-1591/abbd5e. 2020.
  • βœ” Geometry dependent performance limits of stretchable reduced graphene oxide interconnects: The role of wrinkles. Tushar Sakorikar, V. Pramitha, and Manu Jaiswal. Carbon. 158. 864. DOI: 10.1016/j.carbon.2019.11.070. 2020.
  • βœ” Chemical-free transfer of patterned reduced graphene oxide thin films for large area flexible electronics and nanoelectromechanical systems. N Patil, A Gupta, M Jaiswal, S Dutta. Nanotechnology. 31 (49). 495301. 2020.
  • βœ” High photoelectrochemical performance of reduced graphene oxide wrapped, CdS functionalized, TiO2 multi-leg nanotubes. Y Rambabu, S Dhua, M Jaiswal, SC Roy. Nanotechnology. 31 (27). 275701. 2020.
  • βœ” Nanostructuring mechanical cracks in a flexible conducting polymer thin film for ultra-sensitive vapor sensing. Biporjoy Sarkar, Dillip K Satapathy, and Manu Jaiswal. Nanoscale. 11. 200-210. DOI: 10.1039/C8NR07230B. 2019.
  • βœ” Humidity-induced significant microstructural reordering in partially reduced graphene oxide: Insights on water permeation mechanism. T. M. Pranav, Tushar Sakorikar, Pramitha V., and Manu Jaiswal. Journal of Applied Physics. 125. 024303. DOI: 10.1063/1.5078665. 2019.
  • βœ” Probing permeation of energetic hydrogen atoms through molybdenum disulphide on graphene platform. Vasumathy Ravishankar, P R Shaina, Vani Yadav, S Ramaprabhu, and Manu Jaiswal. Materials Research Express. 6. 095614. DOI: 10.1088/2053-1591/ab3170. 2019.
  • βœ” Ion percolation through annealed, supported graphene oxide films: Role of nanochannels and voids. Vasumathy Ravishankar, S. Ramaprabhu, and Manu Jaiswal. Journal of Applied Physics. 125. 144304. DOI: https://doi.org/10.1063/1.5080523. 2019.

Teaching

βœ” 2017 : (Jan - May) - PH3520 Quantum Physics / PH5120 Physics Lab II (PG); (Jul - Nov) - PH5050 Mathematical Physics II

βœ” 2018 : (Jan - May) - PH1020 Physics II; (Jul - Nov) - PH1010 Physics I

βœ” 2019 : (Jan - May) - EP3220 Solid State Physics ; (Jul - Nov) - ID5190 - Project I / ID5191 - Project II / PH5050 - Mathematical Physics II / PH5330 - Laboratory for Synthesis and characterization of Functional Materials

βœ” 2020 : (Jan - May) - EP3220 Solid State Physics / ID5192 - Project III / PH5350 - Laboratory for Physical Property Measurement and Transducer / Sensor Element Characteristics of Func; (Jul - Nov) - PH5011 Science and Technology of Solid state

βœ” 2021 : (Jan - May) - PH5810 Introduction to Softmatter Physics ; (Jul - Nov) - PH5011 Science and Technology of Solid state

βœ” 2022 : (Jan - May) - PH5350 Laboratory for Physical Property Measurement and Transducer / Sensor Element Characteristics of Func / PH5810 Introduction to Softmatter Physics / PH6999 Special Topics in Physics ; (Jul - Nov) - ID5191 Project II / PH5011 Science and Technology of Solid state

βœ” 2023 : (Jan - May) - EP3220 Solid State Physics