An optimized graphene oxide self-assembly surface for significantly enhanced boiling heat transfer
Zhou, W.; Mao, L.; Hu, X.; He, Y.
Carbon 150: 168-178
2019
ISSN/ISBN: 0008-6223 DOI: 10.1016/j.carbon.2019.04.119
Accession: 081751759
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References
Choi, G.; Yun, M.; Hsu, W.-T.; Shim, D.I.; Lee, D.; Kim, B.S.; Cho, H.H. 2022: Enhanced boiling heat transfer by nucleation patterning with self-assembly of reduced graphene oxide coating International Journal of Heat and Mass Transfer 197: 123329Alimoradi, H.; Shams, M.; Ashgriz, N. 2023: Enhancement in the pool boiling heat transfer of copper surface by applying electrophoretic deposited graphene oxide coatings International Journal of Multiphase Flow 159: 104350
Tong, W.; Zhang, Y.; Zhang, Q.; Luan, X.; Duan, Y.; Pan, S.; Lv, F.; An, Q. 2015: Achieving significantly enhanced dielectric performance of reduced graphene oxide/polymer composite by covalent modification of graphene oxide surface Carbon 94: 590-598
Ye, F.; Wang, Y.; Yang, Y.; Jin, R.; Jiang, J.; Xu, J.; Tao, H.; Lin, J. 2025: An internal/external dual heat transfer mode constructed by femtosecond-laser direct writing for enhancing water boiling in graphene oxide surface Applied Thermal Engineering 263: 125343
Ahn, H.Seon.; Kim, J.Man.; Kim, T.; Park, S.Cheong.; Kim, J.Min.; Park, Y.; Yu, D.In.; Hwang, K.Won.; Jo, H.; Park, H.Sun.; Kim, H.; Kim, M.Hwan. 2014: Enhanced heat transfer is dependent on thickness of graphene films: the heat dissipation during boiling Scientific Reports 4: 6276
Huang, X.; Chen, Z.; Gui, N.; Gong, H.; Yang, X.; Tu, J.; Jiang, S. 2022: Review of graphene enhanced boiling heat transfer Qinghua Daxue Xuebao/Journal of Tsinghua University 62(10): 1681-1690
Zhang, G.; Liu, Z.; Li, Y.; Gou, Y. 2014: Visualization study of boiling and condensation co-existing phase change heat transfer in a small and closed space with a boiling surface of enhanced structures International Journal of Heat and Mass Transfer 79: 916-924
Su, C-Yuan.; Yang, C-Yuh.; Jhang, B-Wei.; Hsieh, Y-Ling.; Sin, Y-Yu.; Huang, C-Chun. 2020: Pool Boiling Heat Transfer Enhanced by Fluorinated Graphene as Atomic Layered Modifiers Acs Applied Materials and Interfaces 12(9): 10233-10239
Li, X.; Bai, Y.; Wang, M.; Wang, G.; Ma, Y.; Li, L.; Xiao, B.; Zheng, J. 2019: Self-assembly encapsulation of Si in N-doped reduced graphene oxide for use as a lithium ion battery anode with significantly enhanced electrochemical performance Sustainable Energy-Fuels 3(6): 1427-1438
Kamatchi, R. 2017: Experimental investigations on nucleate boiling heat transfer of aqua based reduced graphene oxide nanofluids Heat and Mass Transfer 54(2): 437-451
Chyu, M.C.; Mghamis, A.M. 1992: Enhanced pool boiling heat transfer with surface attachment Experimental Heat Transfer 5(1): 51-63
Xu, P.; Li, Q.; Xuan, Y. 2015: Enhanced boiling heat transfer on composite porous surface International Journal of Heat and Mass Transfer 80: 107-114
Yim, K.; Lee, J.; Naccarato, B.; Kim, K.J. 2019: Surface wettability effect on nucleate pool boiling heat transfer with titanium oxide (Ti O2) coated heating surface International Journal of Heat and Mass Transfer 133: 352-358
Piasecka, M. 2014: Flow Boiling Heat Transfer in A Minichannel with Enhanced Heating Surface Heat Transfer Engineering 35(9-12): 903-912
Honda, H.; Wei, J.J. 2004: Enhanced boiling heat transfer from electronic components by use of surface microstructures Experimental Thermal and Fluid Science 28(2-3): 159-169
Chakraborty, P.; Ma, T.; Cao, L.; Wang, Y. 2019: Significantly enhanced convective heat transfer through surface modification in nanochannels International Journal of Heat and Mass Transfer 136: 702-708
Gajghate, S.S.; Barathula, S.; Das, S.; Saha, B.B.; Bhaumik, S. 2019: Experimental investigation and optimization of pool boiling heat transfer enhancement over graphene-coated copper surface Journal of Thermal Analysis and Calorimetry 140(3): 1393-1411
Kim, T.; Kim, J.M.; Kim, J.H.; Park, S.C.; Ahn, H.S. 2017: Orientation effects on bubble dynamics and nucleate pool boiling heat transfer of graphene-modified surface International Journal of Heat and Mass Transfer 108: 1393-1405
Zhang, X.; Yang, Z.; Wang, Y. 2025: Enhanced flow boiling heat transfer study on EDM-modified aluminum surface Applied Thermal Engineering 274: 126642
Chen, T 2013: An experimental investigation of nucleate boiling heat transfer from an enhanced cylindrical surface Applied Thermal Engineering 59(1-2): 355-361