Nanowires for enhanced boiling heat transfer R Chen, MC Lu, V Srinivasan, Z Wang, HH Cho, A Majumdar Nano letters 9 (2), 548-553, 2009 | 828 | 2009 |
Critical heat flux of pool boiling on Si nanowire array-coated surfaces MC Lu, R Chen, V Srinivasan, VP Carey, A Majumdar International Journal of Heat and Mass Transfer, 2011 | 224 | 2011 |
Enhanced Heat Transfer in Biporous Wicks in the Thin Liquid Film Evaporation and Boiling Regimes D Ćoso, V Srinivasan, MC Lu, JY Chang, A Majumdar | 194 | 2012 |
Evaporation-induced cavitation in nanofluidic channels C Duan, R Karnik, MC Lu, A Majumdar Proceedings of the National Academy of Sciences 109 (10), 3688-3693, 2012 | 149 | 2012 |
Specific heat capacity of molten salt-based alumina nanofluid MC Lu, CH Huang Nanoscale research letters 8, 1-7, 2013 | 141 | 2013 |
Design of passive mixers utilizing microfluidic self-circulation in the mixing chamber YC Chung, YL Hsu, CP Jen, MC Lu, YC Lin Lab on a Chip 4 (1), 70-77, 2004 | 122 | 2004 |
Spatial Control of Heterogeneous Nucleation on the Superhydrophobic Nanowire Array CW Lo, CC Wang, MC Lu Advanced Functional Materials 24 (9), 1211-1217, 2013 | 119 | 2013 |
Ultrafast diameter-dependent water evaporation from nanopores Y Li, H Chen, S Xiao, MA Alibakhshi, CW Lo, MC Lu, C Duan ACS nano 13 (3), 3363-3372, 2019 | 89 | 2019 |
Enhancing Condensation Heat Transfer on Three-Dimensional Hybrid Surfaces CW Lo, YC Chu, MH Yen, MC Lu Joule, 2019 | 88 | 2019 |
Effect of the inlet location on the performance of parallel-channel cold-plate MC Lu, CC Wang IEEE Transactions on components and packaging technologies 29 (1), 30-38, 2006 | 84 | 2006 |
Superhydrophobic Si Nanowires for Enhanced Condensation Heat Transfer MC Lu, CC Lin, CW Lo, CW Huang, CC Wang International Journal of Heat and Mass Transfer 111, 614-623, 2017 | 79 | 2017 |
A mechanical-electrokinetic battery using a nano-porous membrane MC Lu, S Satyanarayana, R Karnik, A Majumdar, CC Wang Journal of Micromechanics and Microengineering 16 (4), 667, 2006 | 76 | 2006 |
Scale Effect on Dropwise Condensation on Superhydrophobic Surfaces CW Lo, CC Wang, MC Lu ACS applied materials & interfaces, 2014 | 74 | 2014 |
Investigation of the two-phase convective boiling of HFO-1234yf in a 3.9 mm diameter tube MC Lu, JR Tong, CC Wang International Journal of Heat and Mass Transfer 65, 545-551, 2013 | 68 | 2013 |
A solar-thermal energy harvesting scheme: enhanced heat capacity of molten HITEC salt mixed with Sn/SiO x core–shell nanoparticles CC Lai, WC Chang, WL Hu, ZM Wang, MC Lu, YL Chueh Nanoscale 6 (9), 4555-4559, 2014 | 67 | 2014 |
Molecular scale aspects of liquid contact on a solid surface S Maruyama, T Kimura, MC Lu Thermal Science and Engineering 10 (6), 23-29, 2002 | 64 | 2002 |
Fluid filling into micro-fabricated reservoirs FG Tseng, ID Yang, KH Lin, KT Ma, MC Lu, YT Tseng, CC Chieng Sensors and Actuators A: Physical 97, 131-138, 2002 | 62 | 2002 |
Control of ice formation CW Lo, V Sahoo, MC Lu ACS nano 11 (3), 2665-2674, 2017 | 60 | 2017 |
A modified hydrodynamic model for pool boiling CHF considering the effects of heater size and nucleation site density MC Lu, CH Huang, CT Huang, YC Chen International Journal of Thermal Sciences 91, 133-141, 2015 | 60 | 2015 |
Enhanced thermal conductivity of nanofluids diagnosis by molecular dynamics simulations KL Teng, PY Hsiao, SW Hung, CC Chieng, MS Liu, MC Lu Journal of nanoscience and nanotechnology 8 (7), 3710-3718, 2008 | 51 | 2008 |