Vidwan-ID : 98305



  • Dr Chandan Upadhyay

  • Associate Professor
  • Indian Institute of Technology BHU, Varanasi
Publications 2000 - 2024

Publications

  • 119
    Journal Articles
  • 1
    Book Chapter
  • 6
    Conference
    Proceedings
  • 1
    Misc
  • 1
    Review
  • 1
    Short Survey
  • 3
    Projects
  • 2
  • 58

Citations / H-Index

1355 Citations
19 h-index
1632 Citations

Altmetrics

22
22
43
257
22

Google Scholar

Co-author Network


Expertise

Condensed Matter Physics

Research interests include Multiferroics, Magnetism, Multifunctional Materials and Quantum Materials.

Personal Information

Dr Chandan Upadhyay

Male
School of Materials Science and Technology, Indian Institute of Technology (BHU), Varanasi
VARANASI, Uttar Pradesh, India - 221005


Experience

  • Associate Professor

    School of Materials Science and Technology

    Indian Institute of Technology BHU, Varanasi

  • Assistant Professor

    School of Materials Science and Technology

    Indian Institute of Technology BHU, Varanasi

  • Post-Doctoral Fellow

    IFF –Soft matter division

    Forschungszentrum, Jülich

  • Post-Doctoral Fellow

    , Institut für Anorganische und Analytische Chemie

    Johannes Gutenberg-Universität

  • Post-Doctoral Fellow

    Laboratory of Chemical Physics and Microbiology for Environment

    University of Henri Poincaré


Qualification

  • Ph.D.

    Indian Institute of Technology, Kanpur

  • M.Sc

    Banaras Hindu University


Honours and Awards

1999

Junior Research Fellow

CSIR, India

1999

Junior Research Fellow

CSIR, India

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Doctoral Theses Guided

2022

Role of Chemical Pressure on the Magnetic and Electronic Properties of Magnetically Frustrated Holmium Titanates and Germanates

Manjari Shukla, Indian Institute of Technology (BHU), Varanasi

2021

Studies on superparamagnetic silver coated magnetite core shell nanostructures for multimodal applications

Pinki Singh, Indian Institute of Technology BHU, Varanasi

2019

Development of novel interfacial technique for formation of guided assembly of functional conducting polymers & nanocomposite for device applications

Richa Mishra, Indian Institute of Technology BHU, Varanasi

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2022

Role of Chemical Pressure on the Magnetic and Electronic Properties of Magnetically Frustrated Holmium Titanates and Germanates

Manjari Shukla, Indian Institute of Technology (BHU), Varanasi

2021

Studies on superparamagnetic silver coated magnetite core shell nanostructures for multimodal applications

Pinki Singh, Indian Institute of Technology BHU, Varanasi

2019

Development of novel interfacial technique for formation of guided assembly of functional conducting polymers & nanocomposite for device applications

Richa Mishra, Indian Institute of Technology BHU, Varanasi

2019

Study of Dielectric and Magnetic Properties of Magnetically Frustrated R2Ti2O7 (R= Ho, Dy) and Their Doped Derivatives

Pramod Yadav, Indian Institute of Technology BHU, Varanasi

2018

Structural and Magnetic studies on Nano-structured (1-x)BiFeO3-xPbTiO3 Multiferroic solid solution

P K Harijan, Indian Institute of Technology BHU, Varanasi

2014

Self assembly of poly (3, 3’’’-dialkylquaterthiophene) through facile techniques and its device application

Rajiv Pandey, Indian Institute of Technology BHU, Varanasi

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Membership In Professional Bodies

2021

Materials Research Society of India (MRSI)

Life

2021

Materials Research Society of India (MRSI)

Life

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Membership In Committees

2019

Curriculum Review Committee

Chairman

2015

Postgraduate Curriculum Review Committee

Member

2013

Undergraduate Curriculum Review Committee

Member

2019

Curriculum Review Committee

Chairman

2015

Postgraduate Curriculum Review Committee

Member

2013

Undergraduate Curriculum Review Committee

Member

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Research Projects

Study of relaxation mechanism of magnetic nanoparticles

Funding Agency : Indian Institute of Technology (BHU), Varanasi

DNA Based Molecular Electronics

Funding Agency : Department of Biotechnology

Synthesis of Ni-Zn, Co-Zn and Ni-Co-Zn ferrites and studies effect of shape, size and composition on their microwave properties

Funding Agency : DLJ, Jodhpur, DRDO

Study of relaxation mechanism of magnetic nanoparticles

Funding Agency : Indian Institute of Technology (BHU), Varanasi

DNA Based Molecular Electronics

Funding Agency : Department of Biotechnology

Synthesis of Ni-Zn, Co-Zn and Ni-Co-Zn ferrites and studies effect of shape, size and composition on their microwave properties

Funding Agency : DLJ, Jodhpur, DRDO

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Patents





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