MP
Manish Pandey
Indian Institute of Technology Bhilai, Nara Institute of Science and Technology(NAIST), Kyushu Institute of Technology, Indian Institute of Technology Patna, Japan Society for the Promotion of Science
Employment
-
Indian Institute of Technology Bhilai Assistant Professor2024 - Present
-
Nara Institute of Science and Technology(NAIST) Assistant Professor2020 - 2024
-
Japan Society for the Promotion of Science JSPS Postdoctoral Fellow2020 - 2020
-
Nara Institute of Science and Technology Post-doctoral Researcher2019 - 2020
-
Kyushu Institute of Technology Post-doctoral Researcher2017 - 2019
Education
-
Kyushu Institute of Technology Doctor of Philosophy2014 - 2017
-
Indian Institute of Technology Patna Master of Technology2012 - 2014
Projects & Funding
Projects & funding information is unavailable.
Publications (45)
- Facile J-aggregate formation in the friction-transferred oriented thin-films of non-regiocontrolled poly(3-hexylthiophene) Save
- Factors Influencing the Orientation of Carbon Nanotubes in Flexible and Lightweight Composite Ribbons during Direct Ink Writing Save
- Influence of Polyoxyethylene Stearyl Ether and Subsequent Annealing on n-Type Doping of CNT Yarns for Flexible Thermoelectric Generators Save
- High Responsivity in Near-Infrared Phototransistor With Oriented Polymer Semiconductors Save
- Carbon Nanotube Yarns Tailored Using Dispersants and Surfactants for Flexible and Wearable Thermoelectric Generators Save
- Role of Second Polymer Donor in Polymer–Fullerene Ternary Blend Solar Cells Evaluated by Photoconductive Atomic Force Microscopy Save
- High-Density, Nonvolatile, Flexible Multilevel Organic Memristor Using Multilayered Polymer Semiconductors Save
- Roles of Blend Morphology and Energy Level Alignment in Determining Open‐Circuit Voltage and Fill Factor of Ternary All‐Polymer Solar Cells Save
- High field-effect mobility in oriented thin films of D-A type semiconducting polymers by engineering stable interfacial system Save
- Unidirectionally Aligned Donor–Acceptor Semiconducting Polymers in Floating Films for High‐Performance Unipolar n‐Channel Organic Transistors Save