Tapas Goswami
UPES, University of Petroleum and Energy Studies, Indian Institute of Technology Kanpur Department of Chemistry, BML Munjal University
About
Dr. Tapas Goswami is working as Senior Associate Professor at UPES. Goswami’s research spans from physical chemistry, materials science to laser spectroscopy. Currently his primary research interests lie in the development of light harvesting materials, fluorescent nano-sensors and hetero-nanostructures for a wide range of applications. Dr. Goswami obtained a PhD degree in Physical Chemistry (Laser Spectroscopy) at IIT Kanpur in 2010 where he designed and constructed a state of the art, supersonic molecular beam chamber with Time-of-Flight mass spectrometer for coherent control of molecular fragmentation. From 2010-13, he was a Postdoctoral Research associate at Stanford University, USA and Michigan State University, USA. His research at MSU was on the control of photochemistry using shaped ultrafast laser pulses. Moreover, his research at Stanford University concentrates on the understanding of the reaction dynamics of some neutral chemical reactions.
Employment
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UPES Senior Associate Professor2024 - Present
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UPES Associate Professor2022 - 2024
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University of Petroleum and Energy Studies Asst. Prof.2017 - 2022
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University of Petroleum and Energy Studies Assistant Professor (Selection Grade)2017 - 2022
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BML Munjal University Asst. Prof.2014 - 2017
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Michigan State University Post-doc2011 - 2013
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Stanford University Post-doc2010 - 2011
Education
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Indian Institute of Technology Kanpur Department of Chemistry Ph.D.2005 - 2010
Projects & Funding
Projects & funding information is unavailable.
Publications (46)
- Fluorogenic probes based on 2,2′-thiobis(ethylamine) binding motifs: Selective analyte detection and emerging opportunities Save
- Facile development of NIR-active upconverting nanoparticles decorated over MoS2 nanosheets for antibiotic degradation Save
- Ultrasensitive electroanalytical sensing platform using aptamer-conjugated V2CTx MXene for the detection of the HER-2 biomarker Save
- MOF-derived Fe-doped δ-MnO2 nanoflowers as oxidase mimics: chromogenic sensing of Hg(<scp>ii</scp>) and hydroquinone in aqueous media Save
- Design principles for metal–organic receptors targeting optical recognition of Pd(<scp>ii</scp>) in environmental matrices Save
- A dual-functional AIE luminogen for sensitive nitro explosive detection and efficient photolabeling Save
- Selective Turn‐On Luminescent Recognition of Perchlorate Ion Using Pyridyl‐Benzimidazole–Based Probe Save
- High-Performance Paper-Based DNA-Conjugated Ti3C2T x Bionanoelectrode for Rapid Point-of-Care Detection of HPV-16 Save
- Aptamer-enhanced ultrasensitive electrochemical detection of HER-2 in breast cancer diagnosis using ZnO tetrapod-K4PTC nanohybrids Save
- Rapid reduction of nitrophenols using reusable magnetic h-BN/Ni-NiO nanocomposites Save