2,132
Views
132
CrossRef citations to date
0
Altmetric
feature articles

Nanoscale Surface Modification Techniques for Pool Boiling Enhancement—A Critical Review and Future Directions

&
Pages 827-842 | Published online: 23 May 2011

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (10)

Sergey Khmel, Evgeniy Baranov, Victor Vladimirov, Alexey Safonov & Evgeny Chinnov. (2022) Experimental Study of Pool Boiling on Heaters with Nanomodified Surfaces under Saturation. Heat Transfer Engineering 43:20, pages 1724-1742.
Read now
Hesam Moghadasi, Hamidreza Fathalizadeh, Ali Mehdikhani & Hamid Saffari. (2022) Surface Modification Utilizing Photolithography Process for Pool Boiling Enhancement: An Experimental Study. Heat Transfer Engineering 43:12, pages 1008-1024.
Read now
Alexey I. Safonov, Denis V. Kuznetsov & Anton S. Surtaev. (2021) Fabrication of Hydrophobic Coated Tubes for Boiling Heat Transfer Enhancement. Heat Transfer Engineering 42:16, pages 1390-1403.
Read now
Fatemeh Rajabzadeh Dareh, Masoud Haghshenasfard, Mohsen Nasr Esfahany & Hamid Reza Salimi Jazi. (2019) An experimental investigation of pool boiling characteristics of alumina-water nanofluid over micro-/nanostructured surfaces. Heat Transfer Engineering 40:20, pages 1691-1708.
Read now
Vishal V. Nirgude & Santosh K. Sahu. (2019) Enhancement in nucleate pool boiling heat transfer on nano-second laser processed copper surfaces. Experimental Heat Transfer 32:6, pages 566-583.
Read now
Amir Mirza Gheitaghy, Hamid Saffari & Guo Qi Zhang. (2019) Effect of Nanostructured Microporous Surfaces on Pool Boiling Augmentation. Heat Transfer Engineering 40:9-10, pages 762-771.
Read now
Xin Kong, Jinjia Wei, Yueping Deng & Yonghai Zhang. (2018) A Study on Enhancement of Boiling Heat Transfer by Mixed-Wettability Surface. Heat Transfer Engineering 39:17-18, pages 1552-1561.
Read now
Shoji Mori, Suazlan Mt Aznam, Ryuta Yanagisawa & Kunito Okuyama. (2016) CHF enhancement by honeycomb porous plate in saturated pool boiling of nanofluid. Journal of Nuclear Science and Technology 53:7, pages 1028-1035.
Read now
Matthew McCarthy, Konstantinos Gerasopoulos, Shalabh C. Maroo & A. John Hart. (2014) Materials, Fabrication, and Manufacturing of Micro/Nanostructured Surfaces for Phase-Change Heat Transfer Enhancement. Nanoscale and Microscale Thermophysical Engineering 18:3, pages 288-310.
Read now
Yunhyeok Im, Carter Dietz, Seung S. Lee & Yogendra Joshi. (2012) Flower-Like CuO Nanostructures for Enhanced Boiling. Nanoscale and Microscale Thermophysical Engineering 16:3, pages 145-153.
Read now

Articles from other publishers (122)

Xingchi Jiang, Syed Waqar Ali Shah, Gong Chen & Shangzhen Xie. (2024) Extraordinary boiling enhancement by hybrid dividing zones of micro-nano structures. International Communications in Heat and Mass Transfer 153, pages 107345.
Crossref
Dae Hyeon Kyeong, Haunmin Lee, Jaemin Lee, Jiheon Kim, Jeongwoo Lee, Dowon Noh & Wonjoon Choi. (2023) Enhanced temperature-responsive functions of thermal metamaterials by interface engineering. International Journal of Heat and Mass Transfer 215, pages 124509.
Crossref
Seunghwan Lee, Yeonsu Kim, Hyungson Ki & Jaeseon Lee. (2023) Pool-boiling enhancement on periodic micro/nano ripple-structured surfaces fabricated by femtosecond laser. International Communications in Heat and Mass Transfer 148, pages 107072.
Crossref
Amatya Bharadwaj & Rahul Dev Misra. (2023) Study of pool boiling on hydrophilic surfaces developed using electric discharge coating technique. Applied Thermal Engineering 234, pages 121267.
Crossref
Samyabrata Chatterjee, Paras, Han Hu & Monojit Chakraborty. (2023) A Review of Nano and Microscale Heat Transfer: An Experimental and Molecular Dynamics Perspective. Processes 11:9, pages 2769.
Crossref
Avinash Upadhyay, Brijesh Kumar, Nirbhay Kumar & Rishi Raj. (2023) Simultaneous enhancement of critical heat flux and heat transfer coefficient via in-situ deposition of ionic liquids during pool boiling. International Journal of Heat and Mass Transfer 208, pages 124066.
Crossref
ZhiMing Xu, XiaoLiang Wang, HongPeng Jiang, ZhiRong Zhang, DeBin Shan, Bin Guo, YunFeng Qiu & Jie Xu. (2023) Enhancement in boiling heat transfer performance using reduced graphene oxide coating with controllable components and porous structures. Science China Technological Sciences 66:7, pages 2080-2092.
Crossref
Satish G. Kandlikar. (2023) Intrinsic Heat Transfer Enhancement Mechanisms in Boiling With Nanoscale Surface Features. ASME Journal of Heat and Mass Transfer 145:6.
Crossref
Seyed Hasan Musavi, Hamed Adibi & Seyed Mehdi Rezaei. (2022) An experimental study on bubble dynamics and pool boiling heat transfer of grinding/laser-structured surface. Heat and Mass Transfer 59:4, pages 681-698.
Crossref
Chanwoo Park, Seongpil An, Taegun Kim, Yong-Il Kim, Ali Aldalbahi, Mohamed El-Newehy & Sam S. Yoon. (2023) Pool boiling enhancement via biphilic surface comprising superhydrophilic TiO2 and superhydrophobic Teflon arrays. International Journal of Heat and Mass Transfer 202, pages 123675.
Crossref
Cong Wang, Yalong Kong, Zhigang Liu, Lin Guo & Yawei Yang. (2023) A Novel Pressure-Controlled Molecular Dynamics Simulation Method for Nanoscale Boiling Heat Transfer. Energies 16:5, pages 2131.
Crossref
Sarathy K. Gopalakrishnan, Matthias A. Trujillo-Torres, Cheng Xu & Kirk J. Ziegler. (2022) Large-Scale Transfer of Anodic Aluminum Oxide Honeycomb Patterns onto Low-Surface-Energy Polymers. ACS Applied Engineering Materials 1:1, pages 616-627.
Crossref
William A. Bevan, Gisuk Hwang & Kyosung Choo. (2023) BOILING ENHANCEMENT USING WATER JET IMPINGEMENT ON POROUS MEDIA COLUMNAR POST SURFACE. BOILING ENHANCEMENT USING WATER JET IMPINGEMENT ON POROUS MEDIA COLUMNAR POST SURFACE.
Reda A. Khalaf-Allah, Salwa M. Mohamed, Esraa Saeed & Mohamed Tolan. (2023) Augmentation of water pool boiling heat transfer using heating surfaces fabricated by multi passive techniques. Applied Thermal Engineering 219, pages 119693.
Crossref
Amatya Bharadwaj & Rahul Dev Misra. (2023) Experimental pool boiling heat transfer analysis with Zn-Cu micro-structured surfaces developed by electric discharge coating technique. Applied Thermal Engineering 219, pages 119451.
Crossref
Gyanesh Kumar & Umesh Madanan. 2023. 435 582 .
Madhabi Madhusmita Bhanjadeo, Ashok Kumar Nayak & Nihar Ranjan Singh. 2023. Agricultural and Environmental Nanotechnology. Agricultural and Environmental Nanotechnology 251 286 .
Prasad Kangude & Atul Srivastava. (2022) On the Coupled Thermal and Hydrodynamic Interaction of Adjacently Located Vapor Bubbles on Highly Wetting Surfaces. Langmuir 38:45, pages 13647-13658.
Crossref
Amatya Bharadwaj & Rahul Dev Misra. (2022) Experimental analysis of pool boiling heat transfer on surfaces fabricated by electric discharge coating. International Communications in Heat and Mass Transfer 138, pages 106397.
Crossref
A. Bharadwaj & R. D. Misra. (2022) A Theoretical Model to Predict Pool Boiling Critical Heat Flux for Micro/Nano-Structured Surfaces. Journal of Heat Transfer 144:10.
Crossref
Matic Može, Armin Hadžić, Matevž Zupančič & Iztok Golobič. (2022) Boiling heat transfer enhancement on titanium through nucleation-promoting morphology and tailored wettability. International Journal of Heat and Mass Transfer 195, pages 123161.
Crossref
Masood Shamsaiee, Shahriyar Ghazanfari Holagh, Mohammad Ali Abdous & Hamid Saffari. (2022) Experimental investigation of surface finishing technique impact on subcooled flow boiling heat transfer enhancement: sandpapering and sandblasting. Heat and Mass Transfer 58:10, pages 1785-1810.
Crossref
Prasad Kangude & Atul Srivastava. (2022) Experiments to understand bubble base evaporation mechanisms and heat transfer on nano-coated surfaces of varying wettability under nucleate pool boiling regime. International Journal of Multiphase Flow 152, pages 104098.
Crossref
Lin Shi, Chengzhi Hu, Changli Yi, Jizu Lyu, Minli Bai & Dawei Tang. (2022) A study of interface evolution-triggering different nucleate boiling heat transfer phenomenon on the structured surfaces. International Journal of Heat and Mass Transfer 190, pages 122754.
Crossref
Satish G. Kandlikar. (2022) Microscale to Macroscale—Extending Microscale Enhancement Techniques to Large-Scale Boiling Equipment. Journal of Heat Transfer 144:5.
Crossref
Munonyedi Egbo, Mohammad Borumand, Yahya Nasersharifi & Gisuk Hwang. (2022) Review: Surface orientation effects on Pool-boiling with plain and enhanced surfaces. Applied Thermal Engineering 204, pages 117927.
Crossref
V Yu Vladimirov & S Ya Khmel. (2021) Effect of the distance between the micro/nanostructures on pool boiling heat transfer with water on a copper heater. Journal of Physics: Conference Series 2119:1, pages 012081.
Crossref
Shoukat Alim Khan & Sami G. Al-Ghamdi. (2021) Synthesis of graphene oxide nanofluid based micro-nano scale surfaces for high-performance nucleate boiling thermal management systems. Case Studies in Thermal Engineering 28, pages 101436.
Crossref
Matic Može, Viktor Vajc, Matevž Zupančič & Iztok Golobič. (2021) Hydrophilic and Hydrophobic Nanostructured Copper Surfaces for Efficient Pool Boiling Heat Transfer with Water, Water/Butanol Mixtures and Novec 649. Nanomaterials 11:12, pages 3216.
Crossref
Yuting Jia, Jianwei Huang, Jingtao Wang & Hongwei Li. (2021) Heat Transfer and Fluid Flow Characteristics of Microchannel with Oval-Shaped Micro Pin Fins. Entropy 23:11, pages 1482.
Crossref
Biao Shen, Takeshi Hamazaki, Kohei Kamiya, Sumitomo Hidaka, Koji Takahashi, Yasuyuki Takata, Junji Nunomura, Akihiro Fukatsu & Yoichiro Betsuki. (2021) Persistent reduction of boiling incipience of ethanol on biphilic porous textured surfaces. International Journal of Multiphase Flow 142, pages 103739.
Crossref
Y. Yu, Q. Li, Y. Qiu & R. Z. Huang. (2021) Bubble dynamics and dry spot formation during boiling on a hierarchical structured surface: A lattice Boltzmann study. Physics of Fluids 33:8, pages 083306.
Crossref
Uzair Sajjad, Ali Sadeghianjahromi, Hafiz Muhammad Ali & Chi-Chuan Wang. (2021) Enhanced pool boiling of dielectric and highly wetting liquids – A review on surface engineering. Applied Thermal Engineering 195, pages 117074.
Crossref
Matic Može, Viktor Vajc, Matevž Zupančič, Radek Šulc & Iztok Golobič. (2021) Pool Boiling Performance of Water and Self-Rewetting Fluids on Hybrid Functionalized Aluminum Surfaces. Processes 9:6, pages 1058.
Crossref
Kok K. Lay, Kiing S. Wong, Fang S. Lim, Yew M. Hung & Ming K. Tan. (2021) Graphene-mediated electrospray cooling for discrete heat sources in microslits. International Journal of Thermal Sciences 164, pages 106882.
Crossref
Vasyl Moraru, Boris Bondarenko, Sergey Sydorenko & Dmytro Komysh. (2021) Emergency cooling of superheated surfaces by nanofluids additives in the event of a water boiling crisis. International Journal of Heat and Mass Transfer 169, pages 120932.
Crossref
Ashwini Kumar, Aruna Kumar Behura, Dipen Kumar Rajak, Ravinder Kumar, Mohammad H. Ahmadi, Mohsen Sharifpur & Olusola Bamisile. (2021) Performance of heat transfer mechanism in nucleate pool boiling -a relative approach of contribution to various heat transfer components. Case Studies in Thermal Engineering 24, pages 100827.
Crossref
Chanwoo Park, Taegun Kim, Yong-Il Kim, Ali Aldalbahi, Mohammad Rafe Hatshan, Segonpil An & Sam S. Yoon. (2021) Pool boiling enhancement using hierarchically structured ZnO nanowires grown via electrospraying and chemical bath deposition. Applied Thermal Engineering 187, pages 116553.
Crossref
Amatya Bharadwaj & Rahul Dev Misra. 2021. Recent Advances in Mechanical Engineering. Recent Advances in Mechanical Engineering 283 293 .
Matevž Zupančič & Peter Gregorčič. 2021. Materials with Extreme Wetting Properties. Materials with Extreme Wetting Properties 245 303 .
Hong-Xia Chen, Yuan Sun, Lin-Han Li & Xiao-Dong Wang. (2020) Bubble dynamics and heat transfer performance on micro-pillars structured surfaces with various pillars heights. International Journal of Heat and Mass Transfer 163, pages 120502.
Crossref
Ravi Kumar Cheedarala & Jung Il Song. (2020) Face-centred cubic CuO nanocrystals for enhanced pool-boiling critical heat flux and higher thermal conductivities. International Journal of Heat and Mass Transfer 162, pages 120391.
Crossref
Uzair Sajjad, Ali Sadeghianjahromi, Hafiz Muhammad Ali & Chi-Chuan Wang. (2020) Enhanced pool boiling of dielectric and highly wetting liquids - a review on enhancement mechanisms. International Communications in Heat and Mass Transfer 119, pages 104950.
Crossref
Hesam Moghadasi, Navid Malekian, Hamid Saffari, Amir Mirza Gheitaghy & Guo Qi Zhang. (2020) Recent Advances in the Critical Heat Flux Amelioration of Pool Boiling Surfaces Using Metal Oxide Nanoparticle Deposition. Energies 13:15, pages 4026.
Crossref
G. Righetti, M. Calati, L. Doretti, K. Hooman & S. Mancin. (2020) Water Pool boiling on Aluminum Metal Foams. Journal of Physics: Conference Series 1599:1, pages 012012.
Crossref
Longyan Zhang, Jinliang Xu, Guangling Liu & Junpeng Lei. (2020) Nucleate boiling on nanostructured surfaces using molecular dynamics simulations. International Journal of Thermal Sciences 152, pages 106325.
Crossref
G. Udaya Kumar, Sivan Suresh, C.S. Sujith Kumar, Seunghyun Back, Bongchul Kang & Hee Joon Lee. (2020) A review on the role of laser textured surfaces on boiling heat transfer. Applied Thermal Engineering 174, pages 115274.
Crossref
Simiao Fan & Fei Duan. (2020) A review of two-phase submerged boiling in thermal management of electronic cooling. International Journal of Heat and Mass Transfer 150, pages 119324.
Crossref
雪 孙. (2020) Enhancement of Metal Boiling Heat Transfer Performance on Micro-Nano Structure Surface Prepared by Femtosecond Laser. Applied Physics 10:02, pages 153-160.
Crossref
Zhi Qiang He, Dan Dan Chen, Min Wang, Chao Xiong Li, Xiang Ying Chen & Zhong Jie Zhang. (2020) Sulfur modification of carbon materials as well as the redox additive of Na2S for largely improving capacitive performance of supercapacitors. Journal of Electroanalytical Chemistry 856, pages 113678.
Crossref
Vishwa Krishna Rajan, Vasudevan Chandramouli, Seetharaman Seshadri & Venkatesan Muniyandi. (2019) Electrohydrodynamic Effects on Single Bubble Growth and Departure under Microgravity Conditions: a Numerical Investigation. Microgravity Science and Technology 31:6, pages 805-819.
Crossref
Xiaojing Ma & Ping Cheng. (2019) Dry spot dynamics and wet area fractions in pool boiling on micro-pillar and micro-cavity hydrophilic heaters: A 3D lattice Boltzmann phase-change study. International Journal of Heat and Mass Transfer 141, pages 407-418.
Crossref
Nahid P. Khiabani, Zahra Fakhroueian, Alireza Bahramian & Hamid Vatanparast. (2019) Crystal growth of magnesium oxide nanocompounds for wetting alteration of carbonate surfaces. Chemical Papers 73:10, pages 2513-2524.
Crossref
Noriyuki Unno & Jun Taniguchi. (2019) 3D nanofabrication using controlled-acceleration-voltage electron beam lithography with nanoimprinting technology. Advanced Optical Technologies 8:3-4, pages 253-266.
Crossref
Y. Lv, M. Y. Liu, L. F. Hui, A. N. Pavlenko, A. S. Surtaev & V. S. Serdyukov. (2019) Heat Transfer and Fouling Rate at Boiling on Superhydrophobic Surface with TiO2 Nanotube-Array Structure. Journal of Engineering Thermophysics 28:2, pages 163-176.
Crossref
Longyan Zhang, Jinliang Xu & Junpeng Lei. (2019) Molecular dynamic simulation of bubble nucleation in a nanochannel with a groove. AIP Advances 9:3.
Crossref
Paul R. Jones, Chihpin Chuang, Tao Sun, Tom Y. Zhao, Kamel Fezzaa, Juan C. Takase, Dileep Singh & Neelesh A. Patankar. (2019) High-speed X-ray imaging of the Leidenfrost collapse. Scientific Reports 9:1.
Crossref
Gangtao Liang & Issam Mudawar. (2019) Review of pool boiling enhancement by surface modification. International Journal of Heat and Mass Transfer 128, pages 892-933.
Crossref
G. Udaya Kumar, S. Suresh, M.R. Thansekhar & Deepkumar Halpati. (2018) Role of inter-nanowire distance in metal nanowires on pool boiling heat transfer characteristics. Journal of Colloid and Interface Science 532, pages 218-230.
Crossref
Seunghyeon Lee, Jaemin Lee, Hayoung Hwang, Taehan Yeo, Howon Lee & Wonjoon Choi. (2018) Layer-by-layer assembled carbon nanotube-polyethyleneimine coatings inside copper-sintered heat pipes for enhanced thermal performance. Carbon 140, pages 521-532.
Crossref
Rongfu Wen, Xuehu Ma, Yung-Cheng Lee & Ronggui Yang. (2018) Liquid-Vapor Phase-Change Heat Transfer on Functionalized Nanowired Surfaces and Beyond. Joule 2:11, pages 2307-2347.
Crossref
El Ghassem KNEITA, Takuro HONDA, Keiji KASAMURA, Yuta NAKASHIMA, Yasushi KOITO & Yoshitaka NAKANISHI. (2018) Enhancement of Heat Transfer in Subcooled Pool Boiling by Nano-textured Surface. Enhancement of Heat Transfer in Subcooled Pool Boiling by Nano-textured Surface.
Hong Seok Jo, Min-Woo Kim, Tae Gun Kim, Seongpil An, Hyun-Goo Park, Jong-Gun Lee, Scott C. James, Jeehoon Choi & Sam S. Yoon. (2018) Supersonically spray-coated copper meshes as textured surfaces for pool boiling. International Journal of Thermal Sciences 132, pages 26-33.
Crossref
Bin Liu, Zhen Cao, Yonghai Zhang, Zan Wu, AnhDuc Pham, Wenjun Wang, Zhaoxuan Yan, Jinjia Wei & Bengt Sundén. (2018) Pool boiling heat transfer of N-pentane on micro/nanostructured surfaces. International Journal of Thermal Sciences 130, pages 386-394.
Crossref
Corey Kruse, Mike Lucis, Jeff E. Shield, Troy Anderson, Craig Zuhlke, Dennis Alexander, George Gogos & Sidy Ndao. (2018) Effects of Femtosecond Laser Surface Processed Nanoparticle Layers on Pool Boiling Heat Transfer Performance. Journal of Thermal Science and Engineering Applications 10:3.
Crossref
M.H. Taheri, M. Mohammadpourfard, A.K. Sadaghiani & A. Kosar. (2018) Wettability alterations and magnetic field effects on the nucleation of magnetic nanofluids: A molecular dynamics simulation. Journal of Molecular Liquids 260, pages 209-220.
Crossref
Yahya Nasersharifi, Massoud Kaviany & Gisuk Hwang. (2018) Pool-boiling enhancement using multilevel modulated wick. Applied Thermal Engineering 137, pages 268-276.
Crossref
Peter Gregorčič, Matevž Zupančič & Iztok Golobič. (2018) Scalable Surface Microstructuring by a Fiber Laser for Controlled Nucleate Boiling Performance of High- and Low-Surface-Tension Fluids. Scientific Reports 8:1.
Crossref
G. J. Gouws, B. Sherson, A. Sinnathambi, R. Babu & C.P. Moore. (2018) Influence of Structure and Wettability of Porous Silver Surfaces on Enhancing Phase Change Heat Transfer. Influence of Structure and Wettability of Porous Silver Surfaces on Enhancing Phase Change Heat Transfer.
Prasad Kangude, Dhairya Bhatt & Atul Srivastava. (2018) Experiments on the effects of nanoparticles on subcooled nucleate pool boiling. Physics of Fluids 30:5.
Crossref
Shoji Mori, Naru Maruoka & Kunito Okuyama. (2018) Critical heat flux enhancement by a two-layer structured honeycomb porous plate in a saturated pool boiling of water. International Journal of Heat and Mass Transfer 118, pages 429-438.
Crossref
Vishal V. Nirgude & Santosh K. Sahu. (2017) Enhancement of nucleate boiling heat transfer using structured surfaces. Chemical Engineering and Processing: Process Intensification 122, pages 222-234.
Crossref
Yan Lv. (2017) WITHDRAWN: Heat transfer and fouling behaviors of super hydrophobic nanotube-array coating on titanium substrate in pool boiling. Arabian Journal of Chemistry.
Crossref
Abdolali Khalili Sadaghiani, Ahmad Reza Motezakker, Alsan Volkan Özpınar, Gözde Özaydın İnce & Ali Koşar. (2017) Pool Boiling Heat Transfer Characteristics of Inclined pHEMA-Coated Surfaces. Journal of Heat Transfer 139:11.
Crossref
L Doretti, G A Longo, S Mancin, G Righetti & J A Weibel. (2017) Nanoparticle Deposition During Cu-Water Nanofluid Pool Boiling. Journal of Physics: Conference Series 923, pages 012004.
Crossref
Ryan Holguin, Krishna Kota, Stephen Wootton, Ruey-Hung Chen & Sean Ross. (2017) Enhanced boiling heat transfer on binary surfaces. International Journal of Heat and Mass Transfer 114, pages 1105-1113.
Crossref
C. Marcel, A. Clausse, C. Frankiewicz, A. Betz & D. Attinger. (2017) Numerical investigation into the effect of surface wettability in pool boiling heat transfer with a stochastic-automata model. International Journal of Heat and Mass Transfer 111, pages 657-665.
Crossref
Matevž Zupančič, Matic Može, Peter Gregorčič, Anže Sitar & Iztok Golobič. (2017) Evaluation of enhanced nucleate boiling performance through wall-temperature distributions on PDMS-silica coated and non-coated laser textured stainless steel surfaces. International Journal of Heat and Mass Transfer 111, pages 419-428.
Crossref
Hong Hu, Cheng Xu, Yang Zhao, Kirk J. Ziegler & J. N. Chung. (2017) Boiling and quenching heat transfer advancement by nanoscale surface modification. Scientific Reports 7:1.
Crossref
Seyed Mohammad Sajadi, Peyman Irajizad, Varun Kashyap, Nazanin Farokhnia & Hadi Ghasemi. (2017) Surfaces for high heat dissipation with no Leidenfrost limit. Applied Physics Letters 111:2.
Crossref
I. A. Popov, A. V. Shchelchkov, Yu. F. Gortyshov & N. N. Zubkov. (2017) Heat transfer enhancement and critical heat fluxes in boiling of microfinned surfaces. High Temperature 55:4, pages 524-534.
Crossref
Mehrdad Karimzadehkhouei, Mostafa Shojaeian, Kürşat Şendur, M. Pınar Mengüç & Ali Koşar. (2017) The effect of nanoparticle type and nanoparticle mass fraction on heat transfer enhancement in pool boiling. International Journal of Heat and Mass Transfer 109, pages 157-166.
Crossref
Dong Il Shim, Geehong Choi, Namkyu Lee, Taehwan Kim, Beom Seok Kim & Hyung Hee Cho. (2017) Enhancement of Pool Boiling Heat Transfer Using Aligned Silicon Nanowire Arrays. ACS Applied Materials & Interfaces 9:20, pages 17595-17602.
Crossref
Kok Keong Lay, Brian Mun Yew Cheong, Wei Li Tong, Ming Kwang Tan & Yew Mun Hung. (2017) Effective micro-spray cooling for light-emitting diode with graphene nanoporous layers. Nanotechnology 28:16, pages 164003.
Crossref
Hong Seok Jo, Seongpil An, Hyun Goo Park, Min-Woo Kim, Salem S. Al-Deyab, Scott C. James, Jeehoon Choi & Sam S. Yoon. (2017) Enhancement of critical heat flux and superheat through controlled wettability of cuprous-oxide fractal-like nanotextured surfaces in pool boiling. International Journal of Heat and Mass Transfer 107, pages 105-111.
Crossref
Matevž Zupančič, Matic Može, Peter Gregorčič & Iztok Golobič. (2017) Nanosecond laser texturing of uniformly and non-uniformly wettable micro structured metal surfaces for enhanced boiling heat transfer. Applied Surface Science 399, pages 480-490.
Crossref
Andrea Prosperetti. (2017) Vapor Bubbles. Annual Review of Fluid Mechanics 49:1, pages 221-248.
Crossref
. 2017. Boiling. Boiling 145 368 .
Paul R. Jones, Ashley R. Elliott & Neelesh A. Patankar. (2016) Sustaining Superheated Liquid within Hydrophilic Surface Texture. Langmuir 32:48, pages 12947-12953.
Crossref
An Zou, Dhirendra P. Singh & Shalabh C. Maroo. (2016) Early Evaporation of Microlayer for Boiling Heat Transfer Enhancement. Langmuir 32:42, pages 10808-10814.
Crossref
Seunghyeon Lee, Gwang Hyeok Seo, Sanghyeok Lee, Uiju Jeong, Sang Jun Lee, Sung Joong Kim & Wonjoon Choi. (2016) Layer-by-layer carbon nanotube coatings for enhanced pool boiling heat transfer on metal surfaces. Carbon 107, pages 607-618.
Crossref
Li-Wu Fan, Jia-Qi Li, Liang Zhang, Zi-Tao Yu & Ke-Fa Cen. (2016) Pool boiling heat transfer on a nanoscale roughness-enhanced superhydrophilic surface for accelerated quenching in water. Applied Thermal Engineering 109, pages 630-639.
Crossref
Mohsin Ali Badshah, Jonghyun Ju, Dongin Hong, Hyungjun Jang, Seok-min Kim & Jun Su Park. (2016) Fabrication and characterization of glancing angle deposited nanostructured surfaces for enhanced boiling heat transfer. Journal of Vacuum Science & Technology B, Nanotechnology and Microelectronics: Materials, Processing, Measurement, and Phenomena 34:5.
Crossref
Shuai Gong, Ping Cheng & Xiaojun Quan. (2016) Two-dimensional mesoscale simulations of saturated pool boiling from rough surfaces. Part I: Bubble nucleation in a single cavity at low superheats. International Journal of Heat and Mass Transfer 100, pages 927-937.
Crossref
Shuai Gong & Ping Cheng. (2016) Two-dimensional mesoscale simulations of saturated pool boiling from rough surfaces. Part II: Bubble interactions above multi-cavities. International Journal of Heat and Mass Transfer 100, pages 938-948.
Crossref
A. V. Shchelchkov, I. A. Popov & N. N. Zubkov. (2016) Boiling of a Liquid on Microstructured Surfaces Under Free-Convection Conditions. Journal of Engineering Physics and Thermophysics 89:5, pages 1152-1160.
Crossref
Iztok Golobič & Matevž Zupančič. (2016) Wall-temperature distributions of nucleate pool boiling surfaces vs. boiling curves: A new approach. International Journal of Heat and Mass Transfer 99, pages 541-547.
Crossref
B. I. Bondarenko, V. N. Moraru, S. V. Sidorenko & D. V. Komysh. (2016) Nanofluids for power engineering: Emergency cooling of overheated heat transfer surfaces. Technical Physics Letters 42:7, pages 677-681.
Crossref
Chang-Ho Choi, Michele David, Zhongwei Gao, Alvin Chang, Marshall Allen, Hailei Wang & Chih-hung Chang. (2016) Large-scale Generation of Patterned Bubble Arrays on Printed Bi-functional Boiling Surfaces. Scientific Reports 6:1.
Crossref
Xiaohui She, Timothy A. Shedd, Brett Lindeman, Yonggao Yin & Xiaosong Zhang. (2016) Bubble formation on solid surface with a cavity based on molecular dynamics simulation. International Journal of Heat and Mass Transfer 95, pages 278-287.
Crossref
An Zou, Ashish Chanana, Amit Agrawal, Peter C. WaynerJr.Jr. & Shalabh C. Maroo. (2016) Steady State Vapor Bubble in Pool Boiling. Scientific Reports 6:1.
Crossref
C. Kruse, A. Tsubaki, C. Zuhlke, T. Anderson, D. Alexander, G. Gogos & S. Ndao. (2016) Secondary pool boiling effects. Applied Physics Letters 108:5.
Crossref
Mostafa Shojaeian, Meltem Sezen & Ali Koşar. (2016) Pool boiling heat transfer characteristics of non-Newtonian Xanthan gum solutions. Experimental Thermal and Fluid Science 70, pages 77-84.
Crossref
Keisuke Nagato, Shumpei Miyazaki, Shuhei Yamada & Masayuki Nakao. (2016) Nano/microcomposite surface fabricated by chemical treatment/microembossing for control of bubbles in boiling heat transfer. CIRP Annals 65:1, pages 511-514.
Crossref
G J Gouws & N Shortt. (2015) Microstructured silver surfaces produced by freeze casting for enhanced phase change heat transfer. Journal of Physics: Conference Series 660, pages 012045.
Crossref
Biao Tang, Rui Zhou, Longsheng Lu & Guofu Zhou. (2015) Augmented boiling heat transfer on a copper nanoporous surface and the stability of nano-porosity in a hydrothermal environment. International Journal of Heat and Mass Transfer 90, pages 979-985.
Crossref
Mostafa Shojaeian & Ali Koşar. (2015) Pool boiling and flow boiling on micro- and nanostructured surfaces. Experimental Thermal and Fluid Science 63, pages 45-73.
Crossref
Longfei Hui, Mingyan Liu, Yongwei Cai & Yan Lv. (2015) Fouling Resistance on Chemically Etched Hydrophobic Surfaces in Nucleate Pool Boiling. Chemical Engineering & Technology 38:3, pages 416-422.
Crossref
Md Mahamudur Rahman, Emre Ölçeroğlu & Matthew McCarthy. (2014) Role of Wickability on the Critical Heat Flux of Structured Superhydrophilic Surfaces. Langmuir 30:37, pages 11225-11234.
Crossref
Yuri B. Melnichenko, N. V. Lavrik, E. Popov, J. Bahadur, L. He, I. I. Kravchenko, G. Smith, V. Pipich & N. K. Szekely. (2014) Cavitation on Deterministically Nanostructured Surfaces in Contact with an Aqueous Phase: A Small-Angle Neutron Scattering Study. Langmuir 30:33, pages 9985-9990.
Crossref
Lining Dong, Xiaojun Quan & Ping Cheng. (2014) An experimental investigation of enhanced pool boiling heat transfer from surfaces with micro/nano-structures. International Journal of Heat and Mass Transfer 71, pages 189-196.
Crossref
Md Mahamudur Rahman, Emre Ölçeroğlu & Matthew McCarthy. (2014) Scalable Nanomanufacturing of Virus‐templated Coatings for Enhanced Boiling. Advanced Materials Interfaces 1:2.
Crossref
Daniel Attinger, Christophe Frankiewicz, Amy R. Betz, Thomas M. Schutzius, Ranjan Ganguly, Arindam Das, Chang-Jin Kim & Constantine M. Megaridis. (2014) Surface engineering for phase change heat transfer: A review. MRS Energy & Sustainability 1:1.
Crossref
An Zou & Shalabh C. Maroo. (2013) Critical height of micro/nano structures for pool boiling heat transfer enhancement. Applied Physics Letters 103:22, pages 221602.
Crossref
Hyuk-min Kwon, James C. Bird & Kripa K. Varanasi. (2013) Increasing Leidenfrost point using micro-nano hierarchical surface structures. Applied Physics Letters 103:20.
Crossref
Shalabh C. Maroo & J. N. Chung. (2013) Fundamental Roles of Nonevaporating Film and Ultrahigh Heat Flux Associated With Nanoscale Meniscus Evaporation in Nucleate Boiling. Journal of Heat Transfer 135:6.
Crossref
Shalabh C. Maroo & J. N. Chung. (2013) A Possible Role of Nanostructured Ridges on Boiling Heat Transfer Enhancement. Journal of Heat Transfer 135:4.
Crossref
Zhonghua Yao, Yen-Wen Lu & Satish G Kandlikar. (2012) Fabrication of nanowires on orthogonal surfaces of microchannels and their effect on pool boiling. Journal of Micromechanics and Microengineering 22:11, pages 115005.
Crossref
Yong Tang, Biao Tang, Jianbo Qing, Qing Li & Longsheng Lu. (2012) Nanoporous metallic surface: Facile fabrication and enhancement of boiling heat transfer. Applied Surface Science 258:22, pages 8747-8751.
Crossref
Z. Yao, Y-W. Lu & S. G. Kandlikar. (2012) Micro/nano hierarchical structure in microchannel heat sink for boiling enhancement. Micro/nano hierarchical structure in microchannel heat sink for boiling enhancement.
Z. Yao, Y.-W. Lu & S.G. Kandlikar. (2011) Effects of nanowire height on pool boiling performance of water on silicon chips. International Journal of Thermal Sciences 50:11, pages 2084-2090.
Crossref
Chanwoo Park, Seongpil An, Taegun Kim, Yong-Il Kim, Ali Aldalbahi, Mohamed El-Newehy & Sam S. Yoon. (2022) Pool Boiling Enhancement Via Biphilic Surface Comprising Superhydrophilic Tio2 and Superhydrophobic Teflon Arrays. SSRN Electronic Journal.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.