Supercapacitors performance evaluation S Zhang, N Pan Advanced Energy Materials 5 (6), 1401401, 2015 | 1482 | 2015 |
Predictions of effective physical properties of complex multiphase materials M Wang, N Pan Materials Science and Engineering: R: Reports 63 (1), 1-30, 2008 | 745 | 2008 |
Mesoscopic predictions of the effective thermal conductivity for microscale random porous media M Wang, J Wang, N Pan, S Chen Physical Review E—Statistical, Nonlinear, and Soft Matter Physics 75 (3 …, 2007 | 663 | 2007 |
Studying the mechanisms of titanium dioxide as ultraviolet‐blocking additive for films and fabrics by an improved scheme H Yang, S Zhu, N Pan Journal of applied polymer science 92 (5), 3201-3210, 2004 | 552 | 2004 |
High power density supercapacitor electrodes of carbon nanotube films by electrophoretic deposition C Du, N Pan Nanotechnology 17 (21), 5314, 2006 | 457 | 2006 |
High power density supercapacitors using locally aligned carbon nanotube electrodes C Du, J Yeh, N Pan Nanotechnology 16 (4), 350, 2005 | 375 | 2005 |
Supercapacitors using carbon nanotubes films by electrophoretic deposition C Du, N Pan Journal of Power Sources 160 (2), 1487-1494, 2006 | 342 | 2006 |
Modeling and prediction of the effective thermal conductivity of random open-cell porous foams M Wang, N Pan International Journal of Heat and Mass Transfer 51 (5-6), 1325-1331, 2008 | 323 | 2008 |
High energy density supercapacitors from lignin derived submicron activated carbon fibers in aqueous electrolytes S Hu, S Zhang, N Pan, YL Hsieh Journal of Power Sources 270, 106-112, 2014 | 277 | 2014 |
Optimization principles for convective heat transfer Q Chen, M Wang, N Pan, ZY Guo Energy 34 (9), 1199-1206, 2009 | 249 | 2009 |
Thermal conductivity enhancement of carbon fiber composites M Wang, Q Kang, N Pan Applied Thermal Engineering 29 (2-3), 418-421, 2009 | 236 | 2009 |
Lattice Boltzmann modeling of the effective thermal conductivity for fibrous materials M Wang, J He, J Yu, N Pan International journal of thermal sciences 46 (9), 848-855, 2007 | 231 | 2007 |
Supercapacitive iontronic nanofabric sensing R Li, Y Si, Z Zhu, Y Guo, Y Zhang, N Pan, G Sun, T Pan Advanced Materials 29 (36), 1700253, 2017 | 224 | 2017 |
KOH modified graphene nanosheets for supercapacitor electrodes Y Li, M Van Zijll, S Chiang, N Pan Journal of Power Sources 196 (14), 6003-6006, 2011 | 222 | 2011 |
Thermo-electro-hydrodynamic model for electrospinning process YQ Wan, Q Guo, N Pan International Journal of Nonlinear Sciences and Numerical Simulation 5 (1), 5-8, 2004 | 203 | 2004 |
Theory of the compression hysteresis of fibrous assemblies GA Carnaby, N Pan Textile Research Journal 59 (5), 275-284, 1989 | 198 | 1989 |
Thermal and moisture transport in fibrous materials N Pan, P Gibson Woodhead Publishing, 2006 | 188 | 2006 |
Vascular mimetics based on microfluidics for imaging the leukocyte–endothelial inflammatory response UY Schaff, MMQ Xing, KK Lin, N Pan, NL Jeon, SI Simon Lab on a Chip 7 (4), 448-456, 2007 | 178 | 2007 |
Enzymatic hydrolysis of cotton, linen, ramie, and viscose rayon fabrics G Buschle-Diller, SH Zeronian, N Pan, MY Yoon Textile Research Journal 64 (5), 270-279, 1994 | 177 | 1994 |
Quantification and evaluation of human tactile sense towards fabrics N Pan International Journal of Design & Nature and Ecodynamics 1 (1), 48-60, 2006 | 170 | 2006 |