Rajan Saini
Also known as: R. Saini
Rutgers, The State University of New Jersey, Khalsa College Charitable Society, Guru Nanak Dev University
About
Rajan Saini received his Ph.D. degree (2015) at the Department of Physics, Guru Nanak Dev University, India. He is the recipient of the Innovative Research Award for his work on gas sensors in the year 2014. He worked as Assistant Professor at The Department of Physics, Guru Nanak Dev University, and Khalsa Collge Amritsar from 2014-18. He was a postdoctoral associate at the Department of Materials Science, Rutgers, The State University of New Jersey, USA from August 2018 to 2021. Presently, he is working as an Assistant Professor at the Department of Physics, Akal University, Talwandi Sabo, India. His research interests include the application of organic and two-dimensional materials as gas sensors, structural-property relationships of oxides glasses for functional applications.
Employment
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Rutgers, The State University of New Jersey Postdoctoral Associate2018 - 2021
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Khalsa College Charitable Society Assistant Professor2016 - 2018
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Guru Nanak Dev University Assistant Professor2014 - 2016
Education
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Guru Nanak Dev University PhD/Dr.
Projects & Funding
Projects & funding information is unavailable.
Publications (24)
- Structural Origins of High MoO3 Solubility in Peraluminous Borosilicate Glasses Save
- Iron-Induced Structural Rearrangements and Their Impact on Sulfur Solubility in Borosilicate-Based Nuclear Waste Glasses Save
- Hydrothermally synthesized MoSe2/ZnO composite with enhanced hydrogen evolution reaction Save
- Corrosion behavior of Monofrax K‐3 refractory in borosilicate‐based model low activity waste glass melts Save
- Room-temperature highly sensitive and selective NH3 gas sensor using vertically aligned WS2 nanosheets Save
- Correlating Sulfur Solubility with Short-to-Intermediate Range Ordering in the Structure of Borosilicate Glasses Save
- Nanosensors for detecting nutrient losses from soil (as gaseous ammonia and nitrous oxide, and/or soil leachates as nitrate and phosphate) Save
- Ammonia sensing with WS2nanostructures obtained via low-cost probe-sonication method Save
- Flexible and highly sensitive Cl2 sensor based on solution processed phthalocyanine nanowires Save
- Reversible and fast responding ppb level Cl2 sensor based on noncovalent modified carbon nanotubes with Hexadecafluorinated copper phthalocyanine Save