AK
Anil Kumar
Helmholtz-Zentrum Berlin für Materialien und Energie, Indian Institute of Technology Roorkee, University of Notre Dame
About
Nanotechnology – Synthesis of Colloidal Metal and Semiconductors, and Carbonaceous Nanomaterials employing greener protocols; Study of their Physicochemical Properties and Energy Related Applications.
Kinetic analysis of early events in: thermal, photochemical and radiation-induced reactions, specifically in nonmaterial(s).
Employment
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Helmholtz-Zentrum Berlin für Materialien und Energie Guest Scientist1986 - 1988
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Indian Institute of Technology Roorkee Teaching and Research; Ex-Professor and Emeritus Fellow1983 - 2022
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University of Notre Dame Research Associate1979 - 1982
Education
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Indian Institute of Technology Roorkee M.Sc., Ph.D.; Former Professor
Projects & Funding
Projects & funding information is unavailable.
Publications (84)
- A One-Pot Synthesis Method of Heteroatom(s)-Doped Porous Reduced Graphene Oxide as Electrode Material by the Reduction of Graphene Oxide for the Fabrication of High Voltage Aqueous Symmetric Supercapacitor Save
- Heteroatom(S) (N, S, P) Co‐Doped Reduced Graphene Oxide‐Based Binder‐Free Novel Energy Storage Electrode Material for High Energy Density Supercapacitor Save
- An Ultrafast Resistive Type Humidity Sensor Based on Nanohybrids. Save
- In-situ synthesis of N, S co-doped electrode material by an environmentally benign method towards designing of high voltage (3.0 V) binder-free sustainable aqueous symmetric supercapacitor Save
- Flexible humidity-tolerant γ-Fe2O3-rGO-based nanohybrids for energy efficient selective NO2 gas sensing Save
- One-Pot In Situ Synthesis of Mn3O4/N-rGO Nanohybrids for the Fabrication of High Cell Voltage Aqueous Symmetric Supercapacitors: An Analysis of Redox Activity of Mn3O4 toward Stabilizing the High Potential Window in Salt-in-Water and Water-in-Salt Electr… Save
- A Method for Synthesis of Nitrogen-Doped Reduced Graphene Oxide (N-rGO) for High-Performance Supercapacitor. Save
- Nucleotide(s)-mediated simultaneous N, P co-doped reduced graphene oxide (N, P-rGO) porous nanohybrids as high-performance electrode materials for designing sustainable binder-free high-voltage (2.8 V) aqueous symmetric supercapacitors and electrochemica… Save
- Ultrafast resistive-type γ-Fe2O3–rGO nanohybrid-based humidity sensor – a respiratory monitoring tool Save
- “Water-In-Salt” Electrolyte-Based High-Voltage (2.7 V) Sustainable Symmetric Supercapacitor with Superb Electrochemical Performance—An Analysis of the Role of Electrolytic Ions in Extending the Cell Voltage Save