Vidwan-ID : 108940

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Honours >3 0.5
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Project worth more than Rs.5,00,000/- 0.5
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No of publications between 15-45 2
No of publications >45 3

Vidwan Score 8.8

88% Complete
77 Articles
2 Books
7 Projects
3 Awards

Dr Debasish Sarkar

Assistant Professor
Malaviya National Institute of Technology Jaipur

Publications

  • 77
    Journal Articles
  • 2
    Book
  • 1
    Conference
    Proceedings
  • 7
    Projects
  • 3
    Awards
  • 2
  • 27

Citations / H-Index

1879 Citations
23 h-index
1784 Citations

Altmetrics

29
10
18
191
9

Google Scholar


Co-author Network


Expertise

Multidisciplinary Physics

Functional nanomaterials, Nanoparticle Synthesis, Growth and Assembly, Nanoscale Electrochemistry, Electrochemical Energy Conversion and Storage Systems

Personal Information

Dr Debasish Sarkar

Male
Malaviya National Institute Of Technology, Jawahar Lal Nehru Marg, Jhalana Gram, Malviya Nagar
Jaipur, Rajasthan, - 302017


Experience

  • Assistant Professor

    Department of Physics

    Malaviya National Institute of Technology Jaipur, Jaipur

  • Inspire Faculty

    Solid State and Structural Chemistry Unit

    Indian Institute of Science, Bangalore, Bangalore

  • Research Associate

    Solid State and Structural Chemistry Unit

    Indian Institute of Science, Bangalore, Bangalore


Qualification

  • Ph.D

    S N Bose National Centre for Basic sciences

  • Master of Science (M. Sc.)

    Jadavpur University

  • Bachelor of Science (B. Sc.)

    University of North Bengal


Honours and Awards

2015

INSPIRE Faculty Award

DST New Delhi

2014

DS Kothari Post-doctoral Fellowship

UGC New Delhi

2009

Gold Medal for the 1st Class 1st position in B. Sc.

University of North Bengal

2015

INSPIRE Faculty Award

DST New Delhi

2014

DS Kothari Post-doctoral Fellowship

UGC New Delhi

2009

Gold Medal for the 1st Class 1st position in B. Sc.

University of North Bengal

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Doctoral Theses Guided

2024

Exploration of Transition Metal Compounds for Aqueous Supercapacitor Applications

MNIT Jaipur,Dr Hem Kanwar Rathore

2024

MOF Derived Transition Metal Compounds as Anode Materials for All-Solid-State Lithium-Ion Batteries

MNIT Jaipur,Dr Yogita Dahiya

2024

Modified Transition Metal Dichalcogenide Electrocatalysts for Enhanced Hydrogen Evolution Reaction

MNIT Jaipur,Dr Priyanka Aggarwal

2024

Exploration of Transition Metal Compounds for Aqueous Supercapacitor Applications

MNIT Jaipur,Dr Hem Kanwar Rathore

2024

MOF Derived Transition Metal Compounds as Anode Materials for All-Solid-State Lithium-Ion Batteries

MNIT Jaipur,Dr Yogita Dahiya

2024

Modified Transition Metal Dichalcogenide Electrocatalysts for Enhanced Hydrogen Evolution Reaction

MNIT Jaipur,Dr Priyanka Aggarwal

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Membership In Professional Bodies

2020

Soft Materials Research Society Jaipur

Life Member

2020

Soft Materials Research Society Jaipur

Life Member

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Research Projects

Nanostructured Carbon Electrodes for High-Voltage Hybrid Ion Supercapacitors

Funding Agency : ISRO Regional Academic Center-Space

Development of High-performance Energy Storage Devices with Earth Abundant Materials

Funding Agency : SERB New Delhi

Nano-architectures of Metal Oxides as Electrode Material for High Performance Ultracapacitors

Funding Agency : DST New Delhi

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Nanostructured Carbon Electrodes for High-Voltage Hybrid Ion Supercapacitors

Funding Agency : ISRO Regional Academic Center-Space

Development of High-performance Energy Storage Devices with Earth Abundant Materials

Funding Agency : SERB New Delhi

Nano-architectures of Metal Oxides as Electrode Material for High Performance Ultracapacitors

Funding Agency : DST New Delhi

Development of Nanostructured Nickel Electrodes for Nickel-Iron Supercapacitors

Funding Agency : TEQIP-3 MNIT Jaipur

X-ray absorption spectroscopy of single atom (Pt and Pt-group) based electrocatalysts

Funding Agency : UGC-DAE CSR, Indore

In-situ and Operando X-ray Absorption Spectroscopy of the MoS2 Electrode to Reveal Its Charge Storage Mechanism in a Supercapacitor Cell

Funding Agency : UGC-DAE CSR Indore

Development of Energy-Dense All-Carbon Lithium-ion Capacitor from Textile Waste derived Carbon Materials

Funding Agency : Ministry of Textiles

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Patents







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Publications (84)