SANDEEP KUMAR MONDAL

@iit.it

Postdoctoral Researcher
Italian Institute of Technology

SANDEEP KUMAR MONDAL

EDUCATION

PhD from Indian Institute of Science Bengaluru, India
207

Scholar Citations

8

Scholar h-index

7

Scholar i10-index

RECENT SCHOLAR PUBLICATIONS

  • Large‐scale, reliable fabrication of indium oxide nanowire transistors on paper using a combination of high throughput solution processing techniques
    MH Pazhaya Puthanveettil, JR Pradhan, SK Mondal, S Dasgupta
    Small Methods 9 (8), 2500235 , 2025
    2025
    Citations: 10
  • Inkjet-printed transistors and circuits with two-dimensional semiconductors
    SK Mondal
    Indian Institute of Science Bengaluru , 2025
    2025
  • High power printed transistors and methods thereof
    Subho Dasgupta, Nehru Devabharathi, Sandeep Kumar Mondal
    IN Patent 201,941,006,505 , 2025
    2025
  • Inkjet-printed p -type tellurene and n -type MoS 2 transistors for CMOS electronics
    SK Mondal, L Prakasan, S Dasgupta
    2D Materials 12 (1), 015001 , 2025
    2025
    Citations: 6
  • Screen-Printed Microsupercapacitors on Paper With Additive-Free 1T MoS 2 Ink for Sustainable Energy Solutions
    SC Amarakonda, SK Mondal, VK Mariappan, PPM Hadhi, S Dasgupta
    IEEE Journal on Flexible Electronics 3 (7), 356-361 , 2024
    2024
    Citations: 7
  • Inkjet-Printed, High-Performance MoS 2 Transistors and Unipolar Logic Electronics
    SK Mondal, L Prakasan, N Kolluru, JR Pradhan, S Dasgupta
    ACS Applied Materials & Interfaces 16 (32), 42392-42405 , 2024
    2024
    Citations: 8
  • Super flexible and high mobility inorganic/organic composite semiconductors for printed electronics on polymer substrates
    M Divya, N Cherukupally, SK Gogoi, JR Pradhan, SK Mondal, M Jain, ...
    Advanced Materials Technologies 8 (16), 2300256 , 2023
    2023
    Citations: 13
  • Printed and Room Temperature Processed Nanoparticulate VO 2 Thin Films Toward Memristive Device Applications
    A Varanasi, N Devabharathi, M Divya, SK Mondal, S Dasgupta
    IEEE Journal on Flexible Electronics 2 (5), 414-420 , 2023
    2023
    Citations: 7
  • Inkjet-printed WS2 and MoSe2 transistors with edge-FET architecture and near-vertical electronic transport
    SK Mondal, S Dasgupta
    2022 IEEE International Conference on Emerging Electronics (ICEE), 1-4 , 2022
    2022
    Citations: 1
  • Inkjet-printed MoS
    SK Mondal, A Biswas, JR Pradhan, S Dasgupta
    Small Methods 5 (12) , 2021
    2021
    Citations: 5
  • Inkjet‐Printed MoS 2 Transistors with Predominantly Intraflake Transport
    SK Mondal, A Biswas, JR Pradhan, S Dasgupta
    Small Methods 5 (12), 2100634 , 2021
    2021
    Citations: 52
  • Fully Printed Vertical Transport Edge FETs for High Power Oxide Electronics
    N Devabharathi, SK Mondal, JR Pradhan, S Dasgupta
    2020 4th IEEE Electron Devices Technology & Manufacturing Conference (EDTM), 1-4 , 2020
    2020
  • Effect of semiconductor surface homogeneity and interface quality on electrical performance of inkjet-printed oxide field-effect transistors
    SK Mondal, N Devabharathi, S Dasgupta
    Nanotechnology 30 (43), 435201 , 2019
    2019
    Citations: 12
  • Concurrent Subthermionic and Strong Thermionic Transport in Inkjet‐Printed Indium Zinc Oxide/Silver Hybrid‐Channel Field‐Effect Transistors
    SK Behera, N Devabharathi, JR Pradhan, SK Mondal, S Dasgupta
    Advanced Electronic Materials 5 (10), 1900401 , 2019
    2019
    Citations: 14
  • Low‐Temperature Processing of Printed Field‐Effect Transistors from Sublimating‐Stabilizer Derived Oxide Nanodispersions
    M Divya, S Sethuraman, N Devabharathi, SK Mondal, S Dasgupta
    Advanced Electronic Materials 5 (7), 1800764 , 2019
    2019
    Citations: 6
  • Inkjet-printed co-continuous mesoporous oxides for high-current power transistors
    N Devabharathi, SK Mondal, S Dasgupta
    Nanoscale 11 (29), 13731-13740 , 2019
    2019
    Citations: 20
  • High-performance all-printed amorphous oxide FETS and logics with electronically compatible electrode/channel interface
    BK Sharma, A Stoesser, SK Mondal, SK Garlapati, MH Fawey, ...
    ACS applied materials & interfaces 10 (26), 22408-22418 , 2018
    2018
    Citations: 46

MOST CITED SCHOLAR PUBLICATIONS

  • Inkjet‐Printed MoS 2 Transistors with Predominantly Intraflake Transport
    SK Mondal, A Biswas, JR Pradhan, S Dasgupta
    Small Methods 5 (12), 2100634 , 2021
    2021
    Citations: 52
  • High-performance all-printed amorphous oxide FETS and logics with electronically compatible electrode/channel interface
    BK Sharma, A Stoesser, SK Mondal, SK Garlapati, MH Fawey, ...
    ACS applied materials & interfaces 10 (26), 22408-22418 , 2018
    2018
    Citations: 46
  • Inkjet-printed co-continuous mesoporous oxides for high-current power transistors
    N Devabharathi, SK Mondal, S Dasgupta
    Nanoscale 11 (29), 13731-13740 , 2019
    2019
    Citations: 20
  • Concurrent Subthermionic and Strong Thermionic Transport in Inkjet‐Printed Indium Zinc Oxide/Silver Hybrid‐Channel Field‐Effect Transistors
    SK Behera, N Devabharathi, JR Pradhan, SK Mondal, S Dasgupta
    Advanced Electronic Materials 5 (10), 1900401 , 2019
    2019
    Citations: 14
  • Super flexible and high mobility inorganic/organic composite semiconductors for printed electronics on polymer substrates
    M Divya, N Cherukupally, SK Gogoi, JR Pradhan, SK Mondal, M Jain, ...
    Advanced Materials Technologies 8 (16), 2300256 , 2023
    2023
    Citations: 13
  • Effect of semiconductor surface homogeneity and interface quality on electrical performance of inkjet-printed oxide field-effect transistors
    SK Mondal, N Devabharathi, S Dasgupta
    Nanotechnology 30 (43), 435201 , 2019
    2019
    Citations: 12
  • Large‐scale, reliable fabrication of indium oxide nanowire transistors on paper using a combination of high throughput solution processing techniques
    MH Pazhaya Puthanveettil, JR Pradhan, SK Mondal, S Dasgupta
    Small Methods 9 (8), 2500235 , 2025
    2025
    Citations: 10
  • Inkjet-Printed, High-Performance MoS 2 Transistors and Unipolar Logic Electronics
    SK Mondal, L Prakasan, N Kolluru, JR Pradhan, S Dasgupta
    ACS Applied Materials & Interfaces 16 (32), 42392-42405 , 2024
    2024
    Citations: 8
  • Screen-Printed Microsupercapacitors on Paper With Additive-Free 1T MoS 2 Ink for Sustainable Energy Solutions
    SC Amarakonda, SK Mondal, VK Mariappan, PPM Hadhi, S Dasgupta
    IEEE Journal on Flexible Electronics 3 (7), 356-361 , 2024
    2024
    Citations: 7
  • Printed and Room Temperature Processed Nanoparticulate VO 2 Thin Films Toward Memristive Device Applications
    A Varanasi, N Devabharathi, M Divya, SK Mondal, S Dasgupta
    IEEE Journal on Flexible Electronics 2 (5), 414-420 , 2023
    2023
    Citations: 7
  • Inkjet-printed p -type tellurene and n -type MoS 2 transistors for CMOS electronics
    SK Mondal, L Prakasan, S Dasgupta
    2D Materials 12 (1), 015001 , 2025
    2025
    Citations: 6
  • Low‐Temperature Processing of Printed Field‐Effect Transistors from Sublimating‐Stabilizer Derived Oxide Nanodispersions
    M Divya, S Sethuraman, N Devabharathi, SK Mondal, S Dasgupta
    Advanced Electronic Materials 5 (7), 1800764 , 2019
    2019
    Citations: 6
  • Inkjet-printed MoS
    SK Mondal, A Biswas, JR Pradhan, S Dasgupta
    Small Methods 5 (12) , 2021
    2021
    Citations: 5
  • Inkjet-printed WS2 and MoSe2 transistors with edge-FET architecture and near-vertical electronic transport
    SK Mondal, S Dasgupta
    2022 IEEE International Conference on Emerging Electronics (ICEE), 1-4 , 2022
    2022
    Citations: 1
  • Inkjet-printed transistors and circuits with two-dimensional semiconductors
    SK Mondal
    Indian Institute of Science Bengaluru , 2025
    2025
  • High power printed transistors and methods thereof
    Subho Dasgupta, Nehru Devabharathi, Sandeep Kumar Mondal
    IN Patent 201,941,006,505 , 2025
    2025
  • Fully Printed Vertical Transport Edge FETs for High Power Oxide Electronics
    N Devabharathi, SK Mondal, JR Pradhan, S Dasgupta
    2020 4th IEEE Electron Devices Technology & Manufacturing Conference (EDTM), 1-4 , 2020
    2020