Origami lithium-ion batteries Z Song, T Ma, R Tang, Q Cheng, X Wang, D Krishnaraju, R Panat, ... Nature communications 5 (1), 3140, 2014 | 582 | 2014 |
Sensing of COVID‐19 Antibodies in Seconds via Aerosol Jet Nanoprinted Reduced‐Graphene‐Oxide‐Coated 3D Electrodes MA Ali, C Hu, S Jahan, B Yuan, MS Saleh, E Ju, SJ Gao, RP Panat Advanced Materials 33 (7), 2006647, 2021 | 296 | 2021 |
Three-dimensional microarchitected materials and devices using nanoparticle assembly by pointwise spatial printing MS Saleh, C Hu, R Panat Science advances 3 (3), e1601986, 2017 | 179 | 2017 |
3D printed hierarchically-porous microlattice electrode materials for exceptionally high specific capacity and areal capacity lithium ion batteries MS Saleh, J Li, J Park, R Panat Additive Manufacturing 23, 70-78, 2018 | 161 | 2018 |
A hybrid three-dimensionally structured electrode for lithium-ion batteries via 3D printing J Li, MC Leu, R Panat, J Park Materials & Design 119, 417-424, 2017 | 144 | 2017 |
Bond coat surface rumpling in thermal barrier coatings R Panat, S Zhang, KJ Hsia Acta Materialia 51 (1), 239-249, 2003 | 110 | 2003 |
Aerosol Based Direct-Write Micro-Additive Fabrication Method for Sub-mm 3-D Metal-Dielectric Structures MT Rahman, L Renaud, M Renn, D Heo, R Panat Journal of Micromechanics and Microengineering 25 (10), 107002, 2015 | 109 | 2015 |
3-D printed adjustable microelectrode arrays for electrochemical sensing and biosensing H Yang, MT Rahman, D Du, R Panat, Y Lin Sensors and Actuators B: Chemical 230, 600-606, 2016 | 101 | 2016 |
Microscale Additive Manufacturing and Modeling of Interdigitated Capacitive Touch Sensors MT Rahman, A Rahimi, S Gupta, R Panat Sensors and Actuators A: Physical 248, 93-104, 2016 | 87 | 2016 |
Recent Advances in 3D Printing of Biomedical Sensing Devices MA Ali, C Hu, EA Yttri, R Panat Advanced Functional Materials 32, 2107671, 2022 | 82 | 2022 |
Evolution of surface waviness in thin films via volume and surface diffusion R Panat, KJ Hsia, DG Cahill Journal of applied physics 97 (1), 2005 | 76 | 2005 |
Structure, electrical characteristics, and high-temperature stability of aerosol jet printed silver nanoparticle films MT Rahman, J McCloy, CV Ramana, R Panat Journal of Applied Physics 120 (7), 2016 | 73 | 2016 |
The application of Lean Six Sigma to the configuration control in Intel’s manufacturing R&D environment R Panat*, V Dimitrova, T Selvy Selvamuniandy, K Ishiko, D Sun International Journal of Lean Six Sigma 5 (4), 444-459, 2014 | 61 | 2014 |
3D printed high performance strain sensors for high temperature applications MT Rahman, R Moser, HM Zbib, CV Ramana, R Panat Journal of Applied Physics 123 (2), 2018 | 53 | 2018 |
High Performance Flexible Temperature Sensors via Nanoparticle Printing MT Rahman, CY Cheng, B Karagoz, M Renn, M Schrandt, AJ Gellman, ... ACS Applied Nano Materials 2 (5), 3280-3291, 2019 | 51 | 2019 |
CMU Array: A 3D nanoprinted, fully customizable high-density microelectrode array platform MS Saleh, SM Ritchie, MA Nicholas, HL Gordon, C Hu, S Jahan, B Yuan, ... Science Advances 8 (40), eabj4853, 2022 | 50* | 2022 |
Influence of surface morphology on the adhesion strength of epoxy–aluminum interfaces S Zhang, R Panat, KJ Hsia Journal of Adhesion Science and Technology 17 (12), 1685-1711, 2003 | 48 | 2003 |
Breaking the barrier to biomolecule limit-of-detection via 3D printed multi-length-scale graphene-coated electrodes MA Ali, C Hu, B Yuan, S Jahan, MS Saleh, Z Guo, AJ Gellman, R Panat Nature Communications 12 (1), 7077-1 to 7077-16, 2021 | 38 | 2021 |
Ultrafast Fabrication of Thermoelectric Films by Pulsed Light Sintering of Colloidal Nanoparticles on Flexible and Rigid Substrates R Danaei, T Varghese, M Ahmadzadeh, J McCloy, C Hollar, MS Saleh, ... Advanced Engineering Materials, 1800800-1, 1800800-6, 2019 | 38 | 2019 |
Embedded capacitors in the next generation processor Y Min, R Olmedo, M Hill, K Radhakrishnan, K Aygun, M Kabiri-Badr, ... 2013 IEEE 63rd electronic components and technology conference, 1225-1229, 2013 | 36 | 2013 |