1 |
Heat transfer study on flowing liquid film of SiO2-water nanofluid with surfactant confined by metallic foam Zhang YS, Chen W International Journal of Energy Research, 45(4), 6015, 2021 |
2 |
In situ extract nucleate sites for the growth of free-standing carbon nitride films on various substrates Li HL, Huang HN, Wang ZY, Zheng ZK, Wang P, Liu YY, Zhang XY, Qin XY, Dai Y, Li YJ, Zou HL, Huang BB Catalysis Today, 340, 92, 2020 |
3 |
Design, synthesis, and characterization of hybrid micro-nano surface coatings for enhanced heat transfer applications Khan SA, Sezer N, Koc M International Journal of Energy Research, 44(15), 12525, 2020 |
4 |
Effects of different magnetic fields on the boiling heat transfer coefficient of the NiO/deionized water nanofluid, an experimental investigation Rostami S, Raki E, Abdollahi A, Goldanlou AS Powder Technology, 376, 398, 2020 |
5 |
Performance evaluation of self-cooling concentrating photovoltaics systems using nucleate boiling heat transfer Khan SA, Bicer Y, Al-Ghamdi SG, Koc M Renewable Energy, 160, 1081, 2020 |
6 |
Surface chemistry and morphology transition induced by critical heat flux incipience on laser-textured copper surfaces Moze M, Zupancic M, Hacvar M, Golobic I, Gregorcic P Applied Surface Science, 490, 220, 2019 |
7 |
Evaporative Crystallization of Dibenzoylmethanato Boron Difluoride Probed by Time-resolved Quartz Crystal Microbalance Responses with Fluorescence Changes Ito F, Saigusa M, Kanayama N Chemistry Letters, 48(10), 1199, 2019 |
8 |
Design, synthesis and nucleate boiling performance assessment of hybrid micro-nano porous surfaces for thermal management of concentrated photovoltaics (CPV) Khan SA, Sezer N, Ismail S, Koc M Energy Conversion and Management, 195, 1056, 2019 |
9 |
The effect of oxide layer in case of novel coolant spray at very high initial surface temperature Pati AR, Mohapatra SS Experimental Heat Transfer, 32(2), 116, 2019 |
10 |
Enhancement in nucleate pool boiling heat transfer on nano-second laser processed copper surfaces Nirgude VV, Sahu SK Experimental Heat Transfer, 32(6), 566, 2019 |