AM
Ashish Mathur
University of Petroleum and Energy Studies, Amity University, University of Ulster at Jordanstown, Amity Institute of Nano Technology, DBS College
Employment
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University of Petroleum and Energy Studies Associate Dean (R&D)2025 - Present
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University of Petroleum and Energy Studies Professor2023 - Present
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University of Petroleum and Energy Studies Senior Associate Professor2022 - 2023
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University of Petroleum and Energy Studies Associate Professor2020 - 2022
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Amity University Assistant Professor2013 - 2020
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University of Ulster at Jordanstown Research Assistant2010 - 2012
Education
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University of Ulster at Jordanstown PhD2007 - 2011
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Amity Institute of Nano Technology M.Tech2005 - 2007
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DBS College M.Sc2005 - 2007
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DAV College B.Sc2000 - 2003
Projects & Funding
Projects & funding information is unavailable.
Publications (150)
- Two-Dimensional Nanomaterials in Adsorptive Water Remediation: Progress, Mechanisms, and Future Directions Save
- Point-of-care detection of luteinizing hormone using a flexible Pd-Ti3C2Tx MXene-based electrochemical biosensor for women's health applications Save
- Polymer Micro-Milling for Cost-Effective Microfluidic and Biosensor Chip Fabrication: A Review Save
- A Low-Cost Paper-Based Electrochemical Aptasensor for HER-2 Detection Using Ti3C2Tx MXene Save
- EDTA-mediated crosslinking of guar gum: a sustainable platform for transdermal curcumin delivery Save
- Development of flexible paper-based electrochemical device using Nb-MXene for point-of-care detection of cTnI Save
- Mechanistic Insights into Heterogeneous Electron Transfer Kinetics of Ti3C2Tx and V2CTx MXene-Based Nanoelectrodes: An Electrochemical and DFT Correlation Save
- Vanadium MXene-Modified Disposable Screen-Printed Electrodes for Highly Sensitive Glucose Sensing Save
- High-Performance Paper-Based DNA-Conjugated Ti3C2T x Bionanoelectrode for Rapid Point-of-Care Detection of HPV-16 Save
- Exploiting the Electrostatic Binding of Ruthenium Hexamine Molecular Redox Nanowires onto DNA/OGCN Biohybrid Electrodes toward the Electrochemical Detection of COVID-19 Save