1、单击此处编辑母版文本样式,第二级,第三级,第四级,第五级,.,*,单击此处编辑母版标题样式,单击此处编辑母版标题样式,单击此处编辑母版文本样式,第二级,第三级,第四级,第五级,*,.,*,LOGO,单击此处编辑母版文本样式,第二级,第三级,第四级,第五级,单击此处编辑母版标题样式,.,*,单击此处编辑母版文本样式,第二级,第三级,第四级,第五级,单击此处编辑母版标题样式,.,*,单击此处编辑母版文本样式,第二级,第三级,第四级,第五级,单击此处编辑母版标题样式,.,*,Supperrepellent material,1,.,1 Wettability,Youngs equation:,co
2、s,=,(,SV,SL,)/,LV,Hydrophobic:,90,;,Hydrophilic,:,90.,Wettability is a fundamental property of material surfaces,2,.,Water contact angle(WCA)larger than,150,and extremely low WCA hysteresis or sliding angle,less than,10,.,Superhydrophobicity,3,.,Sliding angle,mg(sin,)/=(,cos,a-cos,r),a Advancing con
3、tact angle,r Receding contact angle,m-The quality of water drop,,,g-Acceleration of gravity,,,-Diameter of water drop,,,-Surface Energy of water drop,。,m,,,g,,,,,are constant,,,then,:,sin,cos,a cos,r,.,4,.,A wide spectrum of applications,5,.,soy,sauce,6,.,7,.,8,.,Water collector in the desert,9,.,10
4、Antifouling coating,The undesirable accumulation of microorganisms,plants,and animals on artificial surfaces immersed in sea water.,High frictional resistance and fuel consumption,due to generated roughness,Deterioration of the coating so that corrosion,discolouration,and alteration of the electr
5、ical conductivity of the material are favoured.,11,.,Low surface energy coating,for mitigating marine biological fouling,Antifouling coating,12,.,Drag reduction,13,.,14,.,Self-cleaningmaterials,15,.,Antifrost,16,.,Antifogging surfaces,17,.,局部放大,Oilwater separation,18,.,Supperrepellent,material innat
6、ure,19,.,出淤泥而不染,,濯清涟而不妖。,-,宋,.,周敦颐,爱莲说,20,.,超疏水的荷叶和表面结构(,a),球形的水滴滴在荷叶表面(,b),荷叶表面大面积的微结构(,c),荷叶表面单个乳突(,d,)荷叶表面的纳米结构,Lotus effect,21,.,Cicadas wings,蝉翼表面由规则排列的纳米柱状结构组成纳米柱的直径大约在,80 nm,,纳米柱的间距大约在,180 nm,规则排列纳米突起所构建的粗糙度使其表面稳定吸附了一层空气膜,诱导了其超疏水的性质,从而确保了自清洁功能。,22,.,Butterfly wings,23,.,24,.,2,、,The theoretic
7、s of Supperrepellent material,Wettability,Cassie model,Wenzel model,Youngs equation,25,.,For smooth,flat,uniform solid surface,the relationship between contact angle and surface energy can be described by Yongs equation,(Thomas Young,1805),:,cos,=,(,SV,SL,)/,LV,Interfacial tension:,SV,、,SL,、,LV,Yong
8、s equation,26,.,Hydrophobic surface,The surface free energy of materials is related to the species and the concentration of the functional surface groups,27,.,Functional surface,H,ydrophilic,groups:,OH,、,CHO,、,COOH,、,NH,2,Hydrophobic groups,:,C,n,H,2n+1,、,CH=CH,2,、,C,6,H,5,、,X,、,NO,2,CF,3,28,.,Fluor
9、inated polymer,CH,2,(36 dyn cm,-1,)CH,3,(30 dyncm,-1,)CF,2,(23 dyn cm,-1,)CF,3,(15 dyn cm,-1,),The,reason,of choosing fluorosilicone,Low surface energy and high surface-active of CF,3,group,Improves the adhesion and compatibility,29,.,self-assembly,30,.,For,smooth,flat,uniform solid surface,the high
10、est,contact angle is only,119,。,31,.,Real solid surface with concave-convex structure,Wenzel,model,Cassie,model,32,.,Cos,*,=,=,r,COS,Wenzel,model,:,33,.,Cos,*,=,=,r,COS,Providing,=110,,,if,r0.53,,,*,will be larger than,150,Wenzel,model,34,.,Cassie,model,35,.,Cos,=fcos,+(1-f)cos180,=fcos,+f-1,Area fr
11、action f=,a,/,(,a,+,b,),lets assume that,=110,,,if,f,is less than,0.2,will be larger than,150.,Cassie,model,Providing CA between liqiud and air is,180,36,.,PAN Nano fiber material,37,.,38,.,Self-cleaning effect,Dirt,39,.,40,.,Roughening a hydrophobic material,Fabrication,3,、,The fabrication of,Suppe
12、rrepellent surface,Modifying a rough surface,s chemical components,41,.,Turning a Surface Super-Repellent Even to Completely Wetting Liquids,Tingyi“Leo”Liu,et al.,Science,vol.346,pp.1096-1100,2014.,42,.,Template method,43,.,Etching,44,.,McCarthy,等在聚四氟乙烯,(PTFE),存在下,用射频等离子体刻蚀聚丙烯,(PP),制备出粗糙表面。表面与水的前进角,
13、/,后退角可达,A,/,R,=172/169,。,利用射频等离子体刻蚀法在不同刻蚀时间得到的聚丙烯扫描电子形貌图,:,(a)0 min,(b)30 min,(c)60 min,(d)90 min,(e)120 min,(f)180 min,45,.,Chen,等利用纳米球刻蚀的方法首先得到了排列整齐的单层聚苯乙烯,(PS),纳米珠阵列,再用氧等离子体处理以进一步减小纳米珠的尺寸从而得到粗糙表面。在其表面覆盖,20nm,厚的金膜并用十八硫醇,(ODT),进行修饰可以增强其疏水性。通过调整,PS,纳米珠的直径,(440-190 nm),可以控制表面接触角的大小,(132-168),。,氧等离子体处
14、理后的超疏水,PS,纳米珠阵列表面,46,.,47,.,Chemical vapor,deposition,江雷等利用化学气相沉积法,(,CVD,),在石英基底上制备了各种图案结构的阵列碳纳米管膜,结果表明,水在这些膜表面的接触角都大于,160,滚动角都小于,5,纳米结构与微米结构在表面的阶层排列被认为是产生这种高接触角、低滚动角的原因。,48,.,4 Research plan,In order to fabricate superhydrophobic or superhydrophilic surfaces based on sub-micron structures,I think m
15、y research in UW can be divided into three stages.,49,.,Firstly,the fabrication of artificial structured surface.,Several artificial structured surfaces have been disgined.,If thesenanopillar and mushroom shaped nanopillars array with piece of 10 mm10 mm can be prepared by electroplate copper or nic
16、kel nanopillars?,50,.,51,.,Secondly,modify its components by surface fluorination.,52,.,Lastly,the fabrication of hierarchical structures.If the property of above structured surface after surface fluorination can not meet superhydrophobic or superhydrophilic requirement,I will increase surface rough
17、ness by preparing hierarchical structures on above artificial structured surface.,53,.,54,.,Some questions,Experiment rig and severalapparatus and devices,including electric-heated thermostatic water bath,spin coating,ovenand so on.,Forcharacterization,SEM,contact angle meter andXPSare also needed.,55,.,Thank You!,56,.,






