[1]WANG B,LIANG W,GUO Z,et al.Biomimetic super-lyophobic and super -lyophilic materials applied for oil water separation:a new strategy beyond nature[J].Chemical Society Reviews, 2015, 44(1):336-361 [2]WANG G, GUO Z, LIU W.Interfacial effects of superhydrophobic plant surfaces:a review[J].Journal of Bionic Engineering, 2014, 11(3):325-345 [3]DONG Y,LI J,SHI L,et al.Underwater superoleophobicgraphene oxide coated meshes for the separation of oil andwater[J].Chemical Communications, 2014, 50(42):5586-5589 [4]WANG H,GUO Z.Design of underwater superoleophobic TiO2 coatings with additional photo-induced self-cleaningproperties by one-step route bio-inspired from fish scales[J].Applied Physics Letters, 2014, 104(18):183703-183707 [5]HENG X,XIANG M,LU Z,et al.Branched ZnO wire structures for water collection inspired by cacti[J].AcsApplied Materials & Interfaces, 2014, 6(11):8032-8041 [6]SUN T,FENG L,GAO X,et al. Bioinspired surfaces withspecial wettability[J]. Accounts of Chemical Research..8[J].,, 2005, :38644-652.- [7]王晓俊.蛾翅膀表面疏水性能研究及仿生材料的制备 [D].长春:吉林大学, 2012. [8]BARTHLOTT W,NEINHUIS C.Purity of the sacred lotus, or escape from contamination in biological surfaces[J].Planta, 1997, 202(1):1-8 [9]HAOP,LV C,ZHANG X.Freezing of sessile water dropletson surfaces with various roughness and wettability[J].Applied Physics Letters, 2014, 104(16):161609-161614 [10]WEN M,WANG L,ZHANG M,et al.Antifogging and icing-delay properties of composite micro -and manostructured surfaces[J].ACS Applied Materials & Interfaces, 2014, 6(6):3963-3968 [11]刘啸成,戴礼兴.自清洁材料的现状与发展[J].中国石油和化工标准与质量, 2017, 37(17):84-85 [12] BHUSHAN B,JUNG Y C,NOSONOVSKY M.Lotus effect: surfaces with roughness-induced superhydrophobicity,self-cleaning,and low adhesion[M]. Berlin:Springer Handbook of Nanotechnology,2010. [13]RENTSCHLER I.Die wasserbenetzbarkeit von blattober-flchen und ihre submikroskopische wachsstruktur[J].Planta, 1971, 96(2):119-135 [14]HOLLOWAY P J.Surface factors affecting the wetting ofleaves[J].Pest Management Science, 1970, 1(4):156-163 [15]ENSIKAT H J,DITSCHE-KURU P,NEINHUIS C,et al.Superhydrophobicity in perfection:the outstanding properties ofthe lotus leaf[J].Beilstein Journal of Nanotechnology, 2011, 2(1):152-161 [16]BARTHLOTT W,NEINHUIS C,JETTER R,et al.Waterlily,poppy,or sycamore:on the systematic position of nelumbo[J].Flora, 1996, 191(2):169-174 [17]ENSIKAT H J,BOESE M,MADER W,et al.Crystallinity of plant epicuticular waxes:electron and X-ray diffraction studies[J].Chemistry & Physics of Lipids, 2006, 144(1):45-59 [18]NEINHUIS C,BARTHLOTT W.Characterization and distribution of water-repellent,self-cleaning plant surfaces[J].Annals of Botany, 1997, 79(6):667-677 [19]张拓,韩卿,陈光照.改善废水污泥基外墙涂料透水性的研究[J].涂料工业, 2018, 48(5):46-51 [20]ENSIKAT H J,SCHULTE A J,KOCH K,et al.Droplets on superhydrophobic surfaces:visualization of the contact area by cryo-scanning electron microscopy[J].Langmuir the AcsJournal of Surfaces & Colloids, 2009, 25(22):13077-13083 [21]NISHINO T,MEGURO M,NAKAMAE K,et al.The lowest surface free energy based on CF3 alignment[J].Langmuir, 1999, 15(13):4321-4323 [22]张雪芬 .基于 sol-gel电化学技术的超疏水表面及其在金属防护中的应用 [D].杭州:浙江大学, 2017. [23]LEE Y,JU K Y,LEE J K.Stable biomimetic superhydrophobicsurfaces fabricated by polymer replication method fromhierarchically structured surfaces of Al templates[J].Langmuir, 2010, 26(17):14103-14110 [24]HEREK,KO T J,SHIN B,et al.Superhydrophobic transparent surface of nanostructured poly(methyl methacrylate)enhanced by a hydrolysis reaction[J].Plasma Processes & Polymers, 2013, 10(5):481-488 [25]LU Y,SONG J,LIU X,et al.Preparation of superoleophobic andsuperhydrophobic titanium surfaces via an environmentallyfriendly electrochemical etching method[J].Acs SustainableChemistry & Engineering, 2013, 1(1):102-109 [26]SAS I,GORGA R E,JOINES J A,et al.Literature review on superhydrophobic self-cleaning surfaces produced byelectrospinning[J].Journal of Polymer Science Part B PolymerPhysics, 2012, 50(12):824-845 [27]REZAEI S,MANOUCHERI I,MORADIAN R,et al.One-step chemical vapor deposition and modification of silicananoparticles at the lowest possible temperature and superhydrophobic surface fabrication[J].Chemical EngineeringJournal, 2014, 252(5):11-16 [28]曲爱兰,文秀芳,皮丕辉,等.疏水性耐玷污涂料[J].化工进展, 2006, 25(11):1261-1265 [29]PILOTEK S,SCHMIDT H K.Wettability of microstructuredhydrophobic sol-gel coatings[J].Journal of Sol-Gel Scienceand Technology, 2003, 26(1):789-792 [30]粟常红,陈庆民.仿荷叶表面研究进展[J].化学通报, 2008, 71(1):24-31 [31]MA M,HILL R M.Superhydrophobic surfaces[J].CurrentOpinion in Colloid & Interface Science, 2006, 11(4):193-202 [32]ZHANG X,SHI F,NIU J,et al.Superhydrophobic surfaces: from structural control to functional application[J].Journalof Materials Chemistry, 2008, 18(6):621-633 [33]万家瑰,毕凤琴.仿生超疏水涂层的制备及其性能[J].材料保护, 2010, 43(7):61-62 [34]HU J,ZHOU S,SUN Y,et al.Fabrication,properties and applications of janus particles[J].Chemical Society Reviews, 2012, 41(11):4356-4378 [35]WALTHER A,MULLER A H.Janus particles:synthesis, self -assembly,physical properties,and applications[J].Chemical Reviews, 2013, 113(7):5194-5261 [36]LIANG F,ZHANG C,YANG Z.Rational design andsynthesis of janus composites[J].Advanced Materials, 2014, 26(40):6944-6949 [37] SHAN J,STEVE G.Janus particle synthesis,self assembly and applications[M]. London:Royal Society of Chemistry, 2012. [38]SYNYTSKA A,KHANUM R,IONOV L,et al.Water-repellent textile via decorating fibers with amphiphilicjanus particles[J].Acs Applied Materials & Interfaces, 2011, 3(4):1216-1220 [39]YANG H,LIANG F,CHEN Y,et al.Lotus leaf inspired robust superhydrophobic coating from strawberry-like Janus particles[J].Npg Asia Materials, 2015, 7(4):e176-e182 [40]YANG F,GUO Z.Characterization of micro-morphologyand wettability of lotus leaf,waterlily leaf and biomimeticZnO surface[J].Journal of Bionic Engineering, 2015, 12(1):88-97 [41]ZHANG J,LIU Y,WEI Z,et al.Mechanism for wettabilityalteration of ZnO nanorod arrays via thermal annealing invacuum and air[J].Applied Surface Science, 2013, 265(2):363-368 [42]TIAN D,ZHANG X,TIAN Y,et al.Photo-induced water-oil separation based on switchable superhydrophobicity-superhydrophilicity and underwater superoleophobicity ofthe aligned ZnO nanorod array-coated mesh films[J].Journal ofMaterials Chemistry, 2012, 22(37):19652-19657 [43]LLEGHUSI O J,SONG H,CHAKRABARTI R.Biocom-patibility and conductometric property of sol-gel derivedZnO PVP nanocomposite biosensor film[J].Journal of Bionic Engineering, 2010, 7(7):S30-S35 [44]左桂福,徐建,李品一,等.梯度涂覆工艺制备仿荷叶超疏水涂料[J].化工新型材料, 2015, 43(12):222-224 [45]YANG C,WANG F J,LI W,et al.Anti-icing properties ofsuperhydrophobic ZnOPDMS composite coating[J].AppliedPhysics A, 2016, 122(1):1-10 [46]WANG F J,LI C Q,TAN Z S,et al. PVDF surfaces with stable superhydrophobicity[J].[J].Surface and Coatings Technology, 2013, 222:55-61 [47]NILSSON M A,DANIELLO R J,ROTHSTEIN J P.A novel and inexpensive technique for creating superhydrophobicsurfaces using teflon and sandpaper[J].Journal of Physics DApplied Physics, 2010, 43(4):045301- [48]王文弘,高永盛,林静,等.氟化聚氨酯 纳米 复合超疏水涂层的制备[J].聚氨酯工业, 2018, 33(4):7-10 [49]宋美慧,唐亚丽,卢立新,等.蜡质超疏水涂层的制备及其防粘附应用[J].功能材料, 2018, 49(12):12195-12199 [50]高硕洪,刘敏,张小锋,等.新型陶瓷基复合超疏水涂层的制备及其性能[J].材料导报, 2018, 32(10):3510-3516 [51]张拓 .造纸污泥制备建筑外墙涂料的研究 [D].西安:陕西科技大学, 2018. [52]张茹,韩卿,钱威威,等.造纸污泥的表面改性及其作用机理的初步研究[J].中国造纸, 2014, 33(1):15-19
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