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Electro‐/Photo‐Thermal Promoted Anti‐Icing Materials: A New Strategy Combined with Passive Anti‐Icing and Active De‐Icing

Advanced materials interfaces, v.9 no.16, 2022년, pp.2200275 -   

He, Zhiwei (Center for Advanced Optoelectronic Materials Anti‐) ,  Xie, Hangming (Icing Materials (AIM) Laboratory College of Materials and Environmental Engineering Hangzhou Dianzi University Hangzhou 310018 China) ,  Jamil, Muhammad Imran (School of Electronics and Information Hangzhou Dianzi University Hangzhou 310018 China) ,  Li, Tong (Zhejiang Provincial Key Laboratory of Advanced Chemical Engineering Manufacture Technology College of Chemical and Biochemical Engineering Zhejiang University Hangzhou 310027 China) ,  Zhang, Qinghua (Ningbo Institute of Materials Technology & Engineering Chinese Academy of Sciences Ningbo 315201 China)

Abstract AI-Helper 아이콘AI-Helper

AbstractIce accretion on exposed surfaces is unavoidable as time elapses and temperature lowers sufficiently in nature, causing detrimental impacts on the normal performance of devices and facilities. To mitigate icing problems, both active de‐icing and passive anti‐icing materials (AI...

참고문헌 (148)

  1. Rashid, Taimur, Khawaja, Hassan Abbas, Edvardsen, Kåre. Review of marine icing and anti-/de-icing systems. Proceedings of the Institute of Marine Engineering, Science, and Technology. Part A, Journal of marine engineering and technology, vol.15, no.2, 79-87.

  2. Ryerson, Charles C.. Ice protection of offshore platforms. Cold regions science and technology, vol.65, no.1, 97-110.

  3. Laforte, J.L., Allaire, M.A., Laflamme, J.. State-of-the-art on power line de-icing. Atmospheric research, vol.46, no.1, 143-158.

  4. Poots, G., Gent, R. W., Dart, N. P., Cansdale, J. T.. Aircraft icing. Philosophical transactions. Series A, Mathematical, physical, and engineering sciences, vol.358, no.1776, 2873-2911.

  5. Parent, Olivier, Ilinca, Adrian. Anti-icing and de-icing techniques for wind turbines: Critical review. Cold regions science and technology, vol.65, no.1, 88-96.

  6. 10.3354/cr015185 

  7. Tobiasson, W., Buska, J., Greatorex, A.. Ventilating attics to minimize icings at eaves. Energy and buildings, vol.21, no.3, 229-234.

  8. Fillion, R.M., Riahi, A.R., Edrisy, A.. A review of icing prevention in photovoltaic devices by surface engineering. Renewable & sustainable energy reviews, vol.32, 797-809.

  9. He, Zhiwei, Zhuo, Yizhi, Zhang, Zhiliang, He, Jianying. Design of Icephobic Surfaces by Lowering Ice Adhesion Strength: A Mini Review. Coatings, vol.11, no.11, 1343-.

  10. Ozbay, S., Erbil, H.. Ice accretion by spraying supercooled droplets is not dependent on wettability and surface free energy of substrates. Colloids and surfaces. A, Physicochemical and engineering aspects, vol.504, 210-218.

  11. Petrenko, Victor F., Sullivan, Charles R., Kozlyuk, Valeri, Petrenko, Fedor V., Veerasamy, Victor. Pulse electro-thermal de-icer (PETD). Cold regions science and technology, vol.65, no.1, 70-78.

  12. Wu, Shuwang, Du, Yingjie, Alsaid, Yousif, Wu, Dong, Hua, Mutian, Yan, Yichen, Yao, Bowen, Ma, Yanfei, Zhu, Xinyuan, He, Ximin. Superhydrophobic photothermal icephobic surfaces based on candle soot. Proceedings of the National Academy of Sciences of the United States of America, vol.117, no.21, 11240-11246.

  13. He, Zhiwei, Xiao, Senbo, Gao, Huajian, He, Jianying, Zhang, Zhiliang. Multiscale crack initiator promoted super-low ice adhesion surfaces. Soft matter, vol.13, no.37, 6562-6568.

  14. He, Zhiwei, Jamil, Muhammad Imran, Li, Tong, Zhang, Qinghua. Enhanced Surface Icephobicity on an Elastic Substrate. Langmuir : the ACS journal of surfaces and colloids, vol.38, no.1, 18-35.

  15. He, Z., Zhang, Z., He, J.. CuO/Cu based superhydrophobic and self-cleaning surfaces. Scripta materialia, vol.118, 60-64.

  16. Erbil, H. Yildirim. Practical Applications of Superhydrophobic Materials and Coatings: Problems and Perspectives. Langmuir : the ACS journal of surfaces and colloids, vol.36, no.10, 2493-2509.

  17. He, Zhiwei, Zhuo, Yizhi, Wang, Feng, He, Jianying, Zhang, Zhiliang. Understanding the role of hollow sub-surface structures in reducing ice adhesion strength. Soft matter, vol.15, no.13, 2905-2910.

  18. He, Zhiwei, He, Jianying, Zhang, Zhiliang. Selective growth of metallic nanostructures on microstructured copper substrate in solution. CrystEngComm, vol.17, no.38, 7262-7269.

  19. Wong, Tak-Sing, Kang, Sung Hoon, Tang, Sindy K. Y., Smythe, Elizabeth J., Hatton, Benjamin D., Grinthal, Alison, Aizenberg, Joanna. Bioinspired self-repairing slippery surfaces with pressure-stable omniphobicity. Nature, vol.477, no.7365, 443-447.

  20. Chen, Jing, Luo, Zhiqiang, Fan, Qinrui, Lv, Jianyong, Wang, Jianjun. Anti‐Ice Coating Inspired by Ice Skating. Small, vol.10, no.22, 4693-4699.

  21. He, Zhiwei, Zhuo, Yizhi, Wang, Feng, He, Jianying, Zhang, Zhiliang. Design and preparation of icephobic PDMS-based coatings by introducing an aqueous lubricating layer and macro-crack initiators at the ice-substrate interface. Progress in organic coatings, vol.147, 105737-.

  22. Chernyy, Sergey, Järn, Mikael, Shimizu, Kyoko, Swerin, Agne, Pedersen, Steen Uttrup, Daasbjerg, Kim, Makkonen, Lasse, Claesson, Per, Iruthayaraj, Joseph. Superhydrophilic Polyelectrolyte Brush Layers with Imparted Anti-Icing Properties: Effect of Counter ions. ACS applied materials & interfaces, vol.6, no.9, 6487-6496.

  23. Golovin, Kevin, Kobaku, Sai P. R., Lee, Duck Hyun, DiLoreto, Edward T., Mabry, Joseph M., Tuteja, Anish. Designing durable icephobic surfaces. Science advances, vol.2, no.3, e1501496-.

  24. Li, Tong, Ibáñez-Ibáñez, Pablo F., Håkonsen, Verner, Wu, Jianyang, Xu, Ke, Zhuo, Yizhi, Luo, Sihai, He, Jianying, Zhang, Zhiliang. Self-Deicing Electrolyte Hydrogel Surfaces with Pa-level Ice Adhesion and Durable Antifreezing/Antifrost Performance. ACS applied materials & interfaces, vol.12, no.31, 35572-35578.

  25. Zhuo, Yizhi, Xiao, Senbo, Håkonsen, Verner, He, Jianying, Zhang, Zhiliang. Anti-icing Ionogel Surfaces: Inhibiting Ice Nucleation, Growth, and Adhesion. Acs materials letters, vol.2, 616-623.

  26. He, Zhiwei, Zhuo, Yizhi, He, Jianying, Zhang, Zhiliang. Design and preparation of sandwich-like polydimethylsiloxane (PDMS) sponges with super-low ice adhesion. Soft matter, vol.14, no.23, 4846-4851.

  27. He, Zhiwei, Vågenes, Elisabeth T., Delabahan, Chrisrosemarie, He, Jianying, Zhang, Zhiliang. Room Temperature Characteristics of Polymer-Based Low Ice Adhesion Surfaces. Scientific reports, vol.7, 42181-.

  28. Golovin, Kevin, Dhyani, Abhishek, Thouless, M. D., Tuteja, Anish. Low-interfacial toughness materials for effective large-scale deicing. Science, vol.364, no.6438, 371-375.

  29. Li, X., Zhao, Y., Li, H., Yuan, X.. Preparation and icephobic properties of polymethyltrifluoropropylsiloxane-polyacrylate block copolymers. Applied surface science, vol.316, 222-231.

  30. Dou, Renmei, Chen, Jing, Zhang, Yifan, Wang, Xupeng, Cui, Dapeng, Song, Yanlin, Jiang, Lei, Wang, Jianjun. Anti-icing Coating with an Aqueous Lubricating Layer. ACS applied materials & interfaces, vol.6, no.10, 6998-7003.

  31. Rykaczewski, Konrad, Anand, Sushant, Subramanyam, Srinivas Bengaluru, Varanasi, Kripa K.. Mechanism of Frost Formation on Lubricant-Impregnated Surfaces. Langmuir : the ACS journal of surfaces and colloids, vol.29, no.17, 5230-5238.

  32. Dash, Susmita, de Ruiter, Jolet, Varanasi, Kripa K.. Photothermal trap utilizing solar illumination for ice mitigation. Science advances, vol.4, no.8, eaat0127-.

  33. Huang, Xiao, Tepylo, Nick, Pommier-Budinger, Valérie, Budinger, Marc, Bonaccurso, Elmar, Villedieu, Philippe, Bennani, Lokman. A survey of icephobic coatings and their potential use in a hybrid coating/active ice protection system for aerospace applications. Progress in aerospace sciences, vol.105, 74-97.

  34. Borrebæk, Per-Olof A., Jelle, Bjørn Petter, Zhang, Zhiliang. Avoiding snow and ice accretion on building integrated photovoltaics – challenges, strategies, and opportunities. Solar energy materials and solar cells : an international journal devoted to photovoltaic, photothermal, and photochemical solar energy conversion, vol.206, 110306-.

  35. J. Mater. Eng. He Z. 41 49 2021 

  36. Shamshiri, Mohammadreza, Jafari, Reza, Momen, Gelareh. Potential use of smart coatings for icephobic applications: A review. Surface & coatings technology, vol.424, 127656-.

  37. Liu, Yubo, Wu, Yang, Liu, Shujuan, Zhou, Feng. Material Strategies for Ice Accretion Prevention and Easy Removal. Acs materials letters, vol.4, 246-262.

  38. Zhan, Xiaoli, Yan, Yingdi, Zhang, Qinghua, Chen, Fengqiu. A novel superhydrophobic hybrid nanocomposite material prepared by surface-initiated AGET ATRP and its anti-icing properties. Journal of materials chemistry. A, Materials for energy and sustainability, vol.2, no.24, 9390-9399.

  39. Varanasi, Kripa K., Deng, Tao, Smith, J. David, Hsu, Ming, Bhate, Nitin. Frost formation and ice adhesion on superhydrophobic surfaces. Applied physics letters, vol.97, no.23, 234102-.

  40. Nosonovsky, Michael, Hejazi, Vahid. Why Superhydrophobic Surfaces Are Not Always Icephobic. ACS nano, vol.6, no.10, 8488-8491.

  41. Farhadi, S., Farzaneh, M., Kulinich, S.A.. Anti-icing performance of superhydrophobic surfaces. Applied surface science, vol.257, no.14, 6264-6269.

  42. Ezzat, Metwally, Huang, Chun-Jen. Zwitterionic polymer brush coatings with excellent anti-fog and anti-frost properties. RSC advances, vol.6, no.66, 61695-61702.

  43. Boinovich, Ludmila B., Chulkova, Elizaveta V., Emelyanenko, Kirill A., Domantovsky, Alexander G., Emelyanenko, Alexandre M.. The mechanisms of anti-icing properties degradation for slippery liquid-infused porous surfaces under shear stresses. Journal of colloid and interface science, vol.609, 260-268.

  44. Beemer, Darryl L., Wang, Wei, Kota, Arun K.. Durable gels with ultra-low adhesion to ice. Journal of materials chemistry. A, Materials for energy and sustainability, vol.4, no.47, 18253-18258.

  45. Zarasvand, Kamran Alasvand, Mohseni, Majid, Golovin, Kevin. Cohesive zone analysis of cylindrical ice adhesion: Determining whether interfacial toughness or strength controls fracture. Cold regions science and technology, vol.183, 103219-.

  46. Milionis, A., Loth, E., Bayer, I.S.. Recent advances in the mechanical durability of superhydrophobic materials. Advances in colloid and interface science, vol.229, 57-79.

  47. Quan, Yun-Yun, Chen, Zhong, Lai, Yuekun, Huang, Zu-Sheng, Li, Huaqiong. Recent advances in fabricating durable superhydrophobic surfaces: a review in the aspects of structures and materials. Materials chemistry frontiers, vol.5, no.4, 1655-1682.

  48. Liu, Fatang, Sun, Fenghe, Pan, Qinmin. Highly compressible and stretchable superhydrophobic coating inspired by bio-adhesion of marine mussels. Journal of materials chemistry. A, Materials for energy and sustainability, vol.2, no.29, 11365-11371.

  49. Liu, Fatang, Pan, Qinmin. Facile Fabrication of Robust Ice‐Phobic Polyurethane Sponges. Advanced materials interfaces, vol.2, no.15, 1500219-.

  50. Peng, Chaoyi, Chen, Zhuyang, Tiwari, Manish K.. All-organic superhydrophobic coatings with mechanochemical robustness and liquid impalement resistance. Nature materials, vol.17, no.4, 355-360.

  51. Wang, Dehui, Sun, Qiangqiang, Hokkanen, Matti J., Zhang, Chenglin, Lin, Fan-Yen, Liu, Qiang, Zhu, Shun-Peng, Zhou, Tianfeng, Chang, Qing, He, Bo, Zhou, Quan, Chen, Longquan, Wang, Zuankai, Ras, Robin H. A., Deng, Xu. Design of robust superhydrophobic surfaces. Nature, vol.582, no.7810, 55-59.

  52. Boinovich, Ludmila B., Modin, Evgeny B., Sayfutdinova, Adeliya R., Emelyanenko, Kirill A., Vasiliev, Alexander L., Emelyanenko, Alexandre M.. Combination of Functional Nanoengineering and Nanosecond Laser Texturing for Design of Superhydrophobic Aluminum Alloy with Exceptional Mechanical and Chemical Properties. ACS nano, vol.11, no.10, 10113-10123.

  53. Chen, Jing, Dou, Renmei, Cui, Dapeng, Zhang, Qiaolan, Zhang, Yifan, Xu, Fujian, Zhou, Xin, Wang, Jianjun, Song, Yanlin, Jiang, Lei. Robust Prototypical Anti-icing Coatings with a Self-lubricating Liquid Water Layer between Ice and Substrate. ACS applied materials & interfaces, vol.5, no.10, 4026-4030.

  54. Zhao, Lingru, He, Ling, Liang, Junyan, Chen, Ying, Jia, Mengjun, Huang, Jizhong. Facile preparation of a slippery oil-infused polymer surface for robust icephobicity. Progress in organic coatings, vol.148, 105849-.

  55. Wang, Feng, Xiao, Senbo, Zhuo, Yizhi, Ding, Wenwu, He, Jianying, Zhang, Zhiliang. Liquid layer generators for excellent icephobicity at extremely low temperatures. Materials horizons, vol.6, no.10, 2063-2072.

  56. Wang, Feng, Ding, Wenwu, He, Jianying, Zhang, Zhiliang. Phase transition enabled durable anti-icing surfaces and its DIY design. Chemical engineering journal, vol.360, 243-249.

  57. Morelle, Xavier P., Illeperuma, Widusha R., Tian, Kevin, Bai, Ruobing, Suo, Zhigang, Vlassak, Joost J.. Highly Stretchable and Tough Hydrogels below Water Freezing Temperature. Advanced materials, vol.30, no.35, 1801541-.

  58. Zhuo, Yizhi, Håkonsen, Verner, He, Zhiwei, Xiao, Senbo, He, Jianying, Zhang, Zhiliang. Enhancing the Mechanical Durability of Icephobic Surfaces by Introducing Autonomous Self-Healing Function. ACS applied materials & interfaces, vol.10, no.14, 11972-11978.

  59. Mohseni, Majid, Recla, Letícia, Mora, Julio, Gallego, Paloma García, Agüero, Alina, Golovin, Kevin. Quasicrystalline Coatings Exhibit Durable Low Interfacial Toughness with Ice. ACS applied materials & interfaces, vol.13, no.30, 36517-36526.

  60. Boinovich, Ludmila B., Emelyanenko, Alexandre M., Emelyanenko, Kirill A., Modin, Evgeny B.. Modus Operandi of Protective and Anti-icing Mechanisms Underlying the Design of Longstanding Outdoor Icephobic Coatings. ACS nano, vol.13, no.4, 4335-4346.

  61. Golovin, Kevin, Tuteja, Anish. A predictive framework for the design and fabrication of icephobic polymers. Science advances, vol.3, no.9, e1701617-.

  62. Chen, Dayong, Gelenter, Martin D., Hong, Mei, Cohen, Robert E., McKinley, Gareth H.. Icephobic Surfaces Induced by Interfacial Nonfrozen Water. ACS applied materials & interfaces, vol.9, no.4, 4202-4214.

  63. Wang, Lei, Gong, Qihua, Zhan, Shihui, Jiang, Lei, Zheng, Yongmei. Robust Anti‐Icing Performance of a Flexible Superhydrophobic Surface. Advanced materials, vol.28, no.35, 7729-7735.

  64. Erbil, Husnu Yildirim. Improvement of lubricant-infused surfaces for anti-icing applications. Surface innovations, vol.4, no.4, 214-217.

  65. Mitridis, Efstratios, Lambley, Henry, Tröber, Sven, Schutzius, Thomas M., Poulikakos, Dimos. Transparent Photothermal Metasurfaces Amplifying Superhydrophobicity by Absorbing Sunlight. ACS nano, vol.14, no.9, 11712-11721.

  66. Mitridis, Efstratios, Schutzius, Thomas M., Sicher, Alba, Hail, Claudio U., Eghlidi, Hadi, Poulikakos, Dimos. Metasurfaces Leveraging Solar Energy for Icephobicity. ACS nano, vol.12, no.7, 7009-7017.

  67. Wang, Feng, Zhuo, Yizhi, He, Zhiwei, Xiao, Senbo, He, Jianying, Zhang, Zhiliang. Dynamic Anti‐Icing Surfaces (DAIS). Advanced science, vol.8, no.21, 2101163-.

  68. Chu, H., Zhang, Z., Liu, Y., Leng, J.. Self-heating fiber reinforced polymer composite using meso/macropore carbon nanotube paper and its application in deicing. Carbon, vol.66, 154-163.

  69. Sohn, Yoonchul, Kim, Dongouk, Lee, Sangeui, Yin, Mingming, Song, Jae Yong, Hwang, Wootaek, Park, Sunghoon, Kim, Hajin, Ko, Youngchul, Han, Intaek. Anti-frost coatings containing carbon nanotube composite with reliable thermal cyclic property. Journal of materials chemistry. A, Materials for energy and sustainability, vol.2, no.29, 11465-11471.

  70. Wang, Fangxin, Yang, Bin, Zhang, Zhichao, He, Qian, Zhang, Yongchao. Synergistic effect of hybrid fillers on electro-thermal behavior of nanocomposite for active de-icing application. Composites communications, vol.25, 100746-.

  71. Shen, Xiaobin, Liu, Xiaochuan, Lin, Guiping, Bu, Xueqin, Wen, Dongsheng. Effects of anisotropic composite skin on electrothermal anti-icing system. Proceedings of the Institution of Mechanical Engineers. Part G, Journal of aerospace engineering, vol.233, no.14, 5403-5413.

  72. Mohseni, M., Amirfazli, A.. A novel electro-thermal anti-icing system for fiber-reinforced polymer composite airfoils. Cold regions science and technology, vol.87, 47-58.

  73. Li, Zechen, Zhen, Zhen, Chai, Maosheng, Zhao, Xuanliang, Zhong, Yujia, Zhu, Hongwei. Transparent Electrothermal Film Defoggers and Antiicing Coatings based on Wrinkled Graphene. Small, vol.16, no.4, 1905945-.

  74. Raji, Abdul-Rahman O., Varadhachary, Tanvi, Nan, Kewang, Wang, Tuo, Lin, Jian, Ji, Yongsung, Genorio, Bostjan, Zhu, Yu, Kittrell, Carter, Tour, James M.. Composites of Graphene Nanoribbon Stacks and Epoxy for Joule Heating and Deicing of Surfaces. ACS applied materials & interfaces, vol.8, no.5, 3551-3556.

  75. Redondo, O., Prolongo, S.G., Campo, M., Sbarufatti, C., Giglio, M.. Anti-icing and de-icing coatings based Joule's heating of graphene nanoplatelets. Composites science and technology, vol.164, 65-73.

  76. Wang, Zelinlan, Zhu, Yantong, Liu, Xiaolin, Zhao, Zehui, Chen, Jichen, Jing, Xueshan, Chen, Huawei. Temperature self-regulating electrothermal pseudo-slippery surface for anti-icing. Chemical engineering journal, vol.422, 130110-.

  77. Zheng, Yan, Wang, Jie, Liu, Junpeng, Choi, Kwing-So, Hou, Xianghui. Energy saving strategy for the development of icephobic coatings and surfaces. Thin solid films, vol.687, 137458-.

  78. Morita, Katsuaki, Kimura, Shigeo, Sakaue, Hirotaka. Hybrid System Combining Ice-Phobic Coating and Electrothermal Heating for Wing Ice Protection. Aerospace, vol.7, no.8, 102-.

  79. Chen, Fei-Fei, Zhu, Ying-Jie, Xiong, Zhi-Chao, Dong, Li-Ying, Chen, Feng, Lu, Bing-Qiang, Yang, Ri-Long. Hydroxyapatite Nanowire-Based All-Weather Flexible Electrically Conductive Paper with Superhydrophobic and Flame-Retardant Properties. ACS applied materials & interfaces, vol.9, no.45, 39534-39548.

  80. Matsubayashi, Takeshi, Tenjimbayashi, Mizuki, Manabe, Kengo, Komine, Masatsugu, Navarrini, Walter, Shiratori, Seimei. Integrated Anti-Icing Property of Super-Repellency and Electrothermogenesis Exhibited by PEDOT:PSS/Cyanoacrylate Composite Nanoparticles. ACS applied materials & interfaces, vol.8, no.36, 24212-24220.

  81. Zhu, Chunling, Liu, Senyun, Shen, Yizhou, Tao, Jie, Wang, Guanyu, Pan, Lei. Verifying the deicing capacity of superhydrophobic anti-icing surfaces based on wind and thermal fields. Surface & coatings technology, vol.309, 703-708.

  82. Xue, Shijie, Liu, Yihua, Wang, Yu, Xiao, Bing, Shi, Xiaoxin, Yao, Jingchun, Lv, Xianglian, Yuan, Weizheng, He, Yang, Tawfik, Mohammad. Variation in Anti-icing Power of Superhydrophobic Electrothermal Film under Different Temperatures and Wind Speeds. International journal of aerospace engineering, vol.2022, 1-9.

  83. Sun, Yongyang, Sui, Xin, Wang, Yubo, Liang, Wenyan, Wang, Fangxin. Passive Anti-Icing and Active Electrothermal Deicing System Based on an Ultraflexible Carbon Nanowire (CNW)/PDMS Biomimetic Nanocomposite with a Superhydrophobic Microcolumn Surface. Langmuir : the ACS journal of surfaces and colloids, vol.36, no.48, 14483-14494.

  84. Ba, Housseinou, Truong-Phuoc, Lai, Romero, Thierry, Sutter, Christophe, Nhut, Jean-Mario, Schlatter, Guy, Giambastiani, Giuliano, Pham-Huu, Cuong. Lightweight, few-layer graphene composites with improved electro-thermal properties as efficient heating devices for de-icing applications. Carbon, vol.182, 655-668.

  85. Ibrahim, Yehia, Kempers, Roger, Amirfazli, A.. 3D printed electro-thermal anti- or de-icing system for composite panels. Cold regions science and technology, vol.166, 102844-.

  86. Wang, Fangxin, Sun, Yongyang, Liang, Wenyan, He, Hailing, Yang, Bin, Bonsu, Alex Osei. The three-line synergistic icephobicity of conductive CNTs/PDMS nanocomposite with bio-inspired hierarchical surface. Surfaces and interfaces, vol.26, 101424-.

  87. Zeng, XingChang, Yan, ZeXiang, Lu, YuChao, Fu, YongQing, Lv, XiangLian, Yuan, WeiZheng, He, Yang. Reduction of Ice Adhesion Using Surface Acoustic Waves: Nanoscale Vibration and Interface Heating Effects. Langmuir : the ACS journal of surfaces and colloids, vol.37, no.40, 11851-11858.

  88. Chen, Tingkun, Chen, Yiying, Ren, Luquan, Jin, Jingfu, Cong, Qian, Choy, Kwang-Leong. Effects of Discontinuous Thermal Conductivity of a Substrate Surface on Ice Adhesion Strength. Journal of marine science and engineering, vol.9, no.11, 1209-.

  89. Su, Xiaojing, Li, Hongqiang, Lai, Xuejun, Yang, Zhipeng, Chen, Zhonghua, Wu, Wenjian, Zeng, Xingrong. Vacuum-assisted layer-by-layer superhydrophobic carbon nanotube films with electrothermal and photothermal effects for deicing and controllable manipulation. Journal of materials chemistry. A, Materials for energy and sustainability, vol.6, no.35, 16910-16919.

  90. Liu, Yubo, Xu, Rongnian, Luo, Ning, Liu, Yizhe, Wu, Yang, Yu, Bo, Liu, Shujuan, Zhou, Feng. All‐Day Anti‐Icing/De‐Icing Coating by Solar‐Thermal and Electric‐Thermal Effects. Advanced materials technologies, vol.6, no.11, 2100371-.

  91. Wang, Peng, Yao, Tao, Li, Ziqiang, Wei, Weidong, Xie, Qing, Duan, Wei, Han, Huilong. A superhydrophobic/electrothermal synergistically anti-icing strategy based on graphene composite. Composites science and technology, vol.198, 108307-.

  92. Chu, Zhenming, Jiao, Weicheng, Huang, Yifan, Ding, Guomin, Zhong, Xue, Yan, Meiling, Zheng, Yongting, Wang, Rongguo. FDTS‐Modified SiO2/rGO Wrinkled Films with a Micro‐Nanoscale Hierarchical Structure and Anti‐Icing/Deicing Properties under Condensation Condition. Advanced materials interfaces, vol.7, no.1, 1901446-.

  93. Peng, Yongjing, Hu, Jianping, Fan, Zhen, Xie, Pengkang, Wang, Jian, Wang, Peng. A stretchable superhydrophobic coating with electrothermal ability for anti-icing application. Materials research express, vol.8, no.4, 045009-.

  94. Zhao, Zehui, Chen, Huawei, Liu, Xiaolin, Wang, Zelinlan, Zhu, Yantong, Zhou, Yuping. Novel sandwich structural electric heating coating for anti-icing/de-icing on complex surfaces. Surface & coatings technology, vol.404, 126489-.

  95. Zhao, Zehui, Chen, Huawei, Liu, Xiaolin, Liu, Hong, Zhang, Deyuan. Development of high-efficient synthetic electric heating coating for anti-icing/de-icing. Surface & coatings technology, vol.349, 340-346.

  96. Wang, Tuo, Zheng, Yonghao, Raji, Abdul-Rahman O., Li, Yilun, Sikkema, William K. A., Tour, James M.. Passive Anti-Icing and Active Deicing Films. ACS applied materials & interfaces, vol.8, no.22, 14169-14173.

  97. Sun, Yongyang, Wang, Yubo, Sui, Xin, Liang, Wenyan, He, Liang, Wang, Fangxin, Yang, Bin. Biomimetic Multiwalled Carbon Nanotube/Polydimethylsiloxane Nanocomposites with Temperature-Controlled, Hydrophobic, and Icephobic Properties. ACS applied nano materials, vol.4, no.10, 10852-10863.

  98. Hao, Tongtong, Zhu, Zhicheng, Yang, Huige, He, Zhiyuan, Wang, Jianjun. All-Day Anti-Icing/Deicing Film Based on Combined Photo-Electro-Thermal Conversion. ACS applied materials & interfaces, vol.13, no.37, 44948-44955.

  99. Elsharkawy, Mohamed, Tortorella, Domenico, Kapatral, Shreyas, Megaridis, Constantine M.. Combating Frosting with Joule-Heated Liquid-Infused Superhydrophobic Coatings. Langmuir : the ACS journal of surfaces and colloids, vol.32, no.17, 4278-4288.

  100. Liu, Xiaolin, Chen, Huawei, Zhao, Zehui, Yan, Yuying, Zhang, Deyuan. Slippery liquid-infused porous electric heating coating for anti-icing and de-icing applications. Surface & coatings technology, vol.374, 889-896.

  101. Papadopoulos, Periklis, Mammen, Lena, Deng, Xu, Vollmer, Doris, Butt, Hans-Jürgen. How superhydrophobicity breaks down. Proceedings of the National Academy of Sciences of the United States of America, vol.110, no.9, 3254-3258.

  102. Zhang, Zheng, Chen, Bingbin, Lu, Congda, Wu, Helong, Wu, Huaping, Jiang, Shaofei, Chai, Guozhong. A novel thermo-mechanical anti-icing/de-icing system using bi-stable laminate composite structures with superhydrophobic surface. Composite structures, vol.180, 933-943.

  103. Wang, Fangxin, Tay, Tong Earn, Sun, Yongyang, Liang, Wenyan, Yang, Bin. Low-voltage and -surface energy SWCNT/poly(dimethylsiloxane) (PDMS) nanocomposite film: Surface wettability for passive anti-icing and surface-skin heating for active deicing. Composites science and technology, vol.184, 107872-.

  104. Wang, Haipeng, He, Meijin, Liu, Huan, Guan, Yingchun. One-Step Fabrication of Robust Superhydrophobic Steel Surfaces with Mechanical Durability, Thermal Stability, and Anti-icing Function. ACS applied materials & interfaces, vol.11, no.28, 25586-25594.

  105. Han, Lun, Zhao, Xiaoming, Shen, Yuhong. Study of the effect of thermal conductivity on the anti-icing performance of coated fabrics. Textile research journal : publication of Textile Research Institute, Inc. and the Textile Foundation, vol.90, no.17, 2035-2045.

  106. Zheng, Weiwei, Teng, Lin, Lai, Yuekun, Zhu, Tianxue, Li, Shuhui, Wu, Xingwang, Cai, Weilong, Chen, Zhong, Huang, Jianying. Magnetic responsive and flexible composite superhydrophobic photothermal film for passive anti-icing/active deicing. Chemical engineering journal, vol.427, 130922-.

  107. Jamil, Muhammad Imran, Wang, Qiongyan, Ali, Amjad, Hussain, Munir, Aziz, Tariq, Zhan, Xiaoli, Zhang, Qinghua. Slippery Photothermal Trap for Outstanding Deicing Surfaces. Journal of bionic engineering, vol.18, no.3, 548-558.

  108. Yin, Xiangyu, Zhang, Yue, Wang, Daoai, Liu, Zhilu, Liu, Yupeng, Pei, Xiaowei, Yu, Bo, Zhou, Feng. Integration of Self‐Lubrication and Near‐Infrared Photothermogenesis for Excellent Anti‐Icing/Deicing Performance. Advanced functional materials, vol.25, no.27, 4237-4245.

  109. Cheng, Shuman, Guo, Pu, Wang, Xuan, Che, Pengda, Han, Xiao, Jin, Rongyu, Heng, Liping, Jiang, Lei. Photothermal slippery surface showing rapid self-repairing and exceptional anti-icing/deicing property. Chemical engineering journal, vol.431, no.4, 133411-.

  110. 10.1002/admt.2021010322101032 

  111. Guo, Hongshuang, Liu, Min, Xie, Changhai, Zhu, Yingnan, Sui, Xiaojie, Wen, Chiyu, Li, Qingsi, Zhao, Weiqiang, Yang, Jing, Zhang, Lei. A sunlight-responsive and robust anti-icing/deicing coating based on the amphiphilic materials. Chemical engineering journal, vol.402, 126161-.

  112. Liu, Yubo, Wu, Yang, Liu, Yizhe, Xu, Rongnian, Liu, Shujuan, Zhou, Feng. Robust Photothermal Coating Strategy for Efficient Ice Removal. ACS applied materials & interfaces, vol.12, no.41, 46981-46990.

  113. Zhang, Guangfa, Zhang, Qinghua, Cheng, Tiantian, Zhan, Xiaoli, Chen, Fengqiu. Polyols-Infused Slippery Surfaces Based on Magnetic Fe3O4-Functionalized Polymer Hybrids for Enhanced Multifunctional Anti-Icing and Deicing Properties. Langmuir : the ACS journal of surfaces and colloids, vol.34, no.13, 4052-4058.

  114. Wu, Dequan, Ma, Lingwei, Zhang, Fan, Qian, Hongchang, Minhas, Badar, Yang, Yumin, Han, Xiao, Zhang, Dawei. Durable deicing lubricant-infused surface with photothermally switchable hydrophobic/slippery property. Materials & Design, vol.185, 108236-.

  115. Wu, Binrui, Cui, Xin, Jiang, Huayang, Wu, Nan, Peng, Chaoyi, Hu, Zhenfeng, Liang, Xiubing, Yan, Yonggan, Huang, Jun, Li, Diansen. A superhydrophobic coating harvesting mechanical robustness, passive anti-icing and active de-icing performances. Journal of colloid and interface science, vol.590, 301-310.

  116. Yang, Cheng, Li, Ziwei, Huang, Ya, Wang, Kuangyu, Long, Yuanzheng, Guo, Zeliang, Li, Xiaoyan, Wu, Hui. Continuous Roll-to-Roll Production of Carbon Nanoparticles from Candle Soot. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.21, no.7, 3198-3204.

  117. Xu, Jing, Gong, Xiaojing, Ramakrishna, Seeram. Robust photothermal anti-icing/deicing via flexible CMDSP carbon nanotube films. Nanotechnology, vol.33, no.32, 325703-.

  118. Jiang, Guo, Chen, Liang, Zhang, Shuidong, Huang, Hanxiong. Superhydrophobic SiC/CNTs Coatings with Photothermal Deicing and Passive Anti-Icing Properties. ACS applied materials & interfaces, vol.10, no.42, 36505-36511.

  119. Yu, Bo, Sun, Zhengrong, Liu, Yubo, Zhang, Zhizhi, Wu, Yang, Zhou, Feng. Improving Anti-Icing and De-Icing Performances via Thermal-Regulation with Macroporous Xerogel. ACS applied materials & interfaces, vol.13, no.31, 37609-37616.

  120. Cheng, Tiantian, He, Ren, Zhang, Qinghua, Zhan, Xiaoli, Chen, Fengqiu. Magnetic particle-based super-hydrophobic coatings with excellent anti-icing and thermoresponsive deicing performance. Journal of materials chemistry. A, Materials for energy and sustainability, vol.3, no.43, 21637-21646.

  121. Lee, Sang-Hyeon, Kim, Jaeil, Seong, Minho, Kim, Somi, Jang, Hyejin, Park, Hyung Wook, Jeong, Hoon Eui. Magneto-responsive photothermal composite cilia for active anti-icing and de-icing. Composites science and technology, vol.217, 109086-.

  122. Wang, Peng, Wang, Jian, Duan, Wei, Li, Chunyan, Han, Huilong, Xie, Qing. A Superhydrophobic/Electrothermal/Photothermal Synergistically Anti-icing Strategy with Excellent Self-healable and Anti-abrasion Property. Journal of bionic engineering, vol.18, no.5, 1147-1156.

  123. Wang, Qiankun, Chen, Anfu, Gu, Hang, Qin, Guofeng, Zhang, Jingjing, Xu, Jinbao, Jiang, Guo, Liu, Wei, Zhang, Zhengrong, Huang, Hanxiong. Highly interconnected porous PDMS/CNTs sandwich sponges with anti-icing/deicing microstructured surfaces. Journal of materials science, vol.56, no.20, 11723-11735.

  124. Jiang, Guo, Liu, Zhongyang, Hu, Jinhuan. Superhydrophobic and Photothermal PVDF/CNTs Durable Composite Coatings for Passive Anti‐Icing/Active De‐Icing. Advanced materials interfaces, vol.9, no.2, 2101704-.

  125. Zhou, Longpeng, Liu, Aowei, Zhou, Lizao, Li, Yaru, Kang, Jun, Tang, Jian, Han, Yanan, Liu, Hongtao. Facilely Fabricated Self-Lubricated Photothermal Coating with Long-Term Durability and External-Replenishing Property for Anti-Icing/Deicing. ACS applied materials & interfaces, vol.14, no.6, 8537-8548.

  126. Xie, Zhenting, Wang, Hong, Li, Meng, Tian, Ye, Deng, Qiyuan, Chen, Rong, Zhu, Xun, Liao, Qiang. Photothermal trap with multi-scale micro-nano hierarchical structure enhances light absorption and promote photothermal anti-icing/deicing. Chemical engineering journal, vol.435, no.3, 135025-.

  127. Chen, Anfu, Wang, Qiankun, Li, Mingke, Peng, Zhangyuan, Lai, Jindi, Zhang, Jingjing, Xu, Jinbao, Huang, Hanxiong, Lei, Caihong. Combined Approach of Compression Molding and Magnetic Attraction to Micropatterning of Magnetic Polydimethylsiloxane Composite Surfaces with Excellent Anti-Icing/Deicing Performance. ACS applied materials & interfaces, vol.13, no.40, 48153-48162.

  128. Hu, Jinhuan, Jiang, Guo. Superhydrophobic coatings on iodine doped substrate with photothermal deicing and passive anti-icing properties. Surface & coatings technology, vol.402, 126342-.

  129. Xie, Heng, Xu, Wen-hua, Fang, Cong, Wu, Ting. Efficient and economical approach for flexible photothermal icephobic copper mesh with robust superhydrophobicity and active deicing property. Soft matter, vol.17, no.7, 1901-1911.

  130. Xue, Chao-Hua, Li, Hui-Gui, Guo, Xiao-Jing, Ding, Ya-Ru, Liu, Bing-Ying, An, Qiu-Feng, Zhou, Yingtang. Superhydrophobic anti-icing coatings with self-deicing property using melanin nanoparticles from cuttlefish juice. Chemical engineering journal, vol.424, 130553-.

  131. Zhang, Fan, Xu, Di, Zhang, Dawei, Ma, Lingwei, Wang, Jinke, Huang, Yao, Chen, Mindong, Qian, Hongchang, Li, Xiaogang. A durable and photothermal superhydrophobic coating with entwinned CNTs-SiO2 hybrids for anti-icing applications. Chemical engineering journal, vol.423, 130238-.

  132. Zhang, Hongqiang, Zhao, Guanlei, Wu, Shuwang, Alsaid, Yousif, Zhao, Wenzheng, Yan, Xiao, Liu, Lei, Zou, Guisheng, Lv, Jianyong, He, Ximin, He, Zhiyuan, Wang, Jianjun. Solar anti-icing surface with enhanced condensate self-removing at extreme environmental conditions. Proceedings of the National Academy of Sciences of the United States of America, vol.118, no.18, e2100978118-e2100978118.

  133. Ma, Lingwei, Wang, Jinke, Zhao, Fengtong, Wu, Dequan, Huang, Yao, Zhang, Dawei, Zhang, Zhengjun, Fu, Wangyang, Li, Xiaogang, Fan, Yi. Plasmon-mediated photothermal and superhydrophobic TiN-PTFE film for anti-icing/deicing applications. Composites science and technology, vol.181, 107696-.

  134. Ma, Wei, Li, Yang, Chao, Christopher Y.H., Tso, Chi Yan, Huang, Baoling, Li, Weihong, Yao, Shuhuai. Solar-assisted icephobicity down to −60°C with superhydrophobic selective surfaces. Cell reports physical science, vol.2, no.3, 100384-.

  135. CIESC J. Xie Z. 5840 72 2021 

  136. Tao, Feng, Zheng, Jiangen, Wang, Li, Yuan, Yuan, Wan, Fu, Xu, Wenjie, Huang, Zhengyong, Wang, Shuxia, Huang, Yingzhou. Plasmonic photothermal film for defogging and anti-icing/deicing on PTFE. Journal of alloys and compounds, vol.866, 158827-.

  137. Kim, Geun Young, Im, Gwang-Bum, Choe, Hyun-Seok, Park, Jeong-Min, Kim, Jae-Hyuk, Bhang, Suk Ho. Fabrication of Photothermal Film for Deicing Process Based on Gold Nano-Aggregate Encapsulated Yolk-Shell Structure. Science of advanced materials, vol.13, no.8, 1424-1429.

  138. Wu, Chenyang, Geng, Hongya, Tan, Sicong, Lv, Jianyong, Wang, Haiqiao, He, Zhiyuan, Wang, Jianjun. Highly efficient solar anti-icing/deicing via a hierarchical structured surface. Materials horizons, vol.7, no.8, 2097-2104.

  139. Sheng, Siyu, Zhu, Zhicheng, Wang, Zhanhui, Hao, Tongtong, He, Zhiyuan, Wang, Jianjun. Bioinspired solar anti-icing/de-icing surfaces based on phase-change materials. Science China materials, vol.65, no.5, 1369-1376.

  140. Wang, Meng, Yang, Tinghan, Cao, Guoliang, Wang, Xin, Jiang, Zishuai, Wang, Chengyu, Li, Yudong. Simulation-guided construction of solar thermal coating with enhanced light absorption capacity for effective icephobicity. Chemical engineering journal, vol.408, 127316-.

  141. Niu, Wenwen, Chen, George Y., Xu, Haolan, Liu, Xiaokong, Sun, Junqi. Highly Transparent and Self‐Healable Solar Thermal Anti‐/Deicing Surfaces: When Ultrathin MXene Multilayers Marry a Solid Slippery Self‐Cleaning Coating. Advanced materials, vol.34, no.10, 2108232-.

  142. Zhao, Weiran, Xiao, Lin, He, Xuyao, Cui, Zehang, Fang, Jiahao, Zhang, Cai, Li, Xiaohong, Li, Guoqiang, Zhong, Liang, Zhang, Yabin. Moth-eye-inspired texturing surfaces enabled self-cleaning aluminum to achieve photothermal anti-icing. Optics and laser technology, vol.141, 107115-.

  143. Li, Ningbo, Zhang, Yafang, Zhi, Hui, Tang, Jiebin, Shao, Yang, Yang, Liping, Sun, Tianyu, Liu, Hong, Xue, Guobin. Micro/nano-cactus structured aluminium with superhydrophobicity and plasmon-enhanced photothermal trap for icephobicity. Chemical engineering journal, vol.429, 132183-.

  144. Xie, Hua, Wei, Jinfei, Duan, Shuyi, Zhu, Qing, Yang, Yanfei, Chen, Kai, Zhang, Jiaojiao, Li, Lingxiao, Zhang, Junping. Non-fluorinated and durable photothermal superhydrophobic coatings based on attapulgite nanorods for efficient anti-icing and deicing. Chemical engineering journal, vol.428, 132585-.

  145. Xie, Zhenting, Wang, Hong, Geng, Yang, Li, Meng, Deng, Qiyuan, Tian, Ye, Chen, Rong, Zhu, Xun, Liao, Qiang. Carbon-Based Photothermal Superhydrophobic Materials with Hierarchical Structure Enhances the Anti-Icing and Photothermal Deicing Properties. ACS applied materials & interfaces, vol.13, no.40, 48308-48321.

  146. Maghami, Mohammad Reza, Hizam, Hashim, Gomes, Chandima, Radzi, Mohd Amran, Rezadad, Mohammad Ismael, Hajighorbani, Shahrooz. Power loss due to soiling on solar panel: A review. Renewable & sustainable energy reviews, vol.59, 1307-1316.

  147. He, Zhiwei, Wu, Hanqing, Shi, Zhen, Kong, Zhe, Ma, Shiyu, Sun, Yuping, Liu, Xianguo. Facile Preparation of Robust Superhydrophobic/Superoleophilic TiO2-Decorated Polyvinyl Alcohol Sponge for Efficient Oil/Water Separation. ACS omega, vol.7, no.8, 7084-7095.

  148. Hu, Jinhuan, Li, Huili, Liu, Zhongyang, Jiang, Guo. Functionalized superhydrophobic quartz fabric with electro-photo-thermal conversion performance: Designed for low-cost and efficient self-heating deicing. Surface & coatings technology, vol.425, 127646-.

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