Hydrogen sensing based on nanoporous silica-embedded ultra dense ZnO nanobundles A Gupta, SS Pandey, M Nayak, A Maity, SB Majumder, S Bhattacharya RSC Advances 4 (15), 7476-7482, 2014 | 63 | 2014 |
Self‐Destructing Secured Microchips by On‐Chip Triggered Energetic and Corrosive Attacks for Transient Electronics SS Pandey, N Banerjee, Y Xie, CH Mastrangelo Advanced Materials Technologies 3 (7), 1800044, 2018 | 39 | 2018 |
High aspect ZnO nanostructures based hydrogen sensing A Gupta, SS Pandey, S Bhattacharya Recent Trends in Applied Physics and Material Science: RAM 2013 1536 (1 …, 2013 | 38 | 2013 |
Integrated sorting, concentration and real time PCR based detection system for sensitive detection of microorganisms M Nayak, D Singh, H Singh, R Kant, A Gupta, SS Pandey, S Mandal, ... Scientific Reports 3 (1), 3266, 2013 | 34 | 2013 |
Passive vibration damping using polymer pads with microchannel arrays RK Singh, R Kant, SS Pandey, M Asfer, B Bhattacharya, PK Panigrahi, ... Journal of microelectromechanical systems 22 (3), 695-707, 2013 | 22 | 2013 |
Analysis and control of friction-induced oscillations in a continuous system A Saha, SS Pandey, B Bhattacharya, P Wahi Journal of Vibration and Control 18 (3), 467-480, 2012 | 22 | 2012 |
An exothermal energy release layer for microchip transience SS Pandey, CH Mastrangelo SENSORS, 2013 IEEE, 1-4, 2013 | 15 | 2013 |
Amplified chemomechanical comb gas sensor R Likhite, SS Pandey, A Banerjee, H Kim, CH Mastrangelo 2016 IEEE SENSORS, 1-3, 2016 | 10 | 2016 |
A monolithically integrated multi-sensor platform N Banerjee, A Banerjee, N Hasan, SS Pandey, BP Gogoi, ... IEEE Sensors Journal 16 (24), 8854-8860, 2016 | 9 | 2016 |
Microplasma traveling wave terahertz amplifier M Tabib-Azar, OC Fawole, SS Pandey, CH Mastrangelo IEEE Transactions on Electron Devices 64 (9), 3877-3884, 2017 | 8 | 2017 |
High-sensitivity parametrically amplified chemo-mechanical vapor sensors SS Pandey, N Banerjee, A Banerjee, N Hasan, H Kim, CH Mastrangelo 2015 IEEE SENSORS, 1-4, 2015 | 8 | 2015 |
Towards transient electronics through heat triggered shattering of off-the-shelf electronic chips S Pandey, C Mastrangelo Micromachines 13 (2), 242, 2022 | 5 | 2022 |
MEMS stiction supression with sacrificial polystyrene nanoparticles A Banerjee, SS Pandey, CH Mastrangelo SENSORS, 2017 IEEE, 1-3, 2017 | 5 | 2017 |
A milli-volt triggered MEMS paddle switch A Banerjee, SS Pandey, N Banerjee, N Hasan, CH Mastrangelo 2015 IEEE SENSORS, 1-4, 2015 | 5 | 2015 |
Low-voltage microfluidic actuator driven by tension modification. N Hasan, F Khan, S Pandey, A Banerjee, H Kim, CH Mastrangelo US Patent App. 16/629,294, 2020 | 2 | 2020 |
Encroachment and line of sight blocking in micro-cavity sealing N Banerjee, A Banerjee, SS Pandey, BP Gogoi, CH Mastrangelo 2015 IEEE SENSORS, 1-3, 2015 | 2 | 2015 |
Pressure sensing in microfluidic environments with low-leakage microballoons N Banerjee, Y Xie, SS Pandey, CH Mastrangelo 18th International Conference on Miniaturized Systems for Chemistry and Life …, 2014 | 2 | 2014 |
Low-cost high-speed in-plane stroboscopic micro-motion analyzer SS Pandey, A Banerjee, MU Karkhanis, CH Mastrangelo Micromachines 8 (12), 351, 2017 | 1 | 2017 |
Towards Transient Electronics through Heat Triggered Shattering of Off-the-Shelf Electronic Chips. Micromachines 2022, 13, 242 S Pandey, C Mastrangelo s Note: MDPI stays neu-tral with regard to jurisdictional claims in …, 2022 | | 2022 |
Transience Mechanisms for Secured Transient Electronics SS Pandey The University of Utah, 2018 | | 2018 |