Theoretical analysis of droplet transition from Cassie to Wenzel state

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摘要 WhetherdropletstransitfromtheCassietotheWenzelstate(C–W)onatexturedsurfaceisthetouchstonethatthesuperhydrophobicityofthesurfaceisstillmaintained.However,theC–Wtransitionmechanism,especiallythespontaneoustransitionofsmalldroplets,isstillnotverycleartodate.TheinterfacefreeenergygradientofasmalldropletisfirstlyproposedandderivedasthedrivingforceforitsC–Wevolutioninthisstudybasedontheenergyandgradientanalysis.ThenthephysicalandmathematicalmodeloftheC–WtransitionisfoundaftertheC–Wdrivingforceortransitionpressure,theresistance,andtheparametersofthemeniscusbeneaththedropletareformulated.Theresultsshowthatthemicro/nanostructuralparameterssignificantlyaffecttheC–Wdrivingforceandresistance.Thesmallerthepillardiameterandpitch,theminortheC–Wtransitionpressure,andthelargertheresistance.Consequently,theC–Wtransitionisdifficulttobecompletedforthedropletsonnano-texturedsurfaces.Meanwhileifthepostsaretooshort,thefrontofthecurvedliquid–airinterfacebelowthedropletwilltouchthestructuralsubstrateeasilyeventhoughthethreephasecontactline(TPCL)hasnotdepinned.Whenthepostsarehighenough,theTPCLbeneaththedropmustmovefirstlybeforethemeniscuscanreachthesubstrate.Asaresult,thedropletonatexturedsurfacewithshortpillarsiseasytocompleteitsC–Wevolution.Ontheotherhand,thesmallerthedroplet,theeasiertheC–Wshift,sincethetransitionpressurebecomeslarger,whichwellexplainswhyanevaporatingdropwillcollapsespontaneouslyfromcompositetoWenzelstate.Besides,bothintrinsicandadvancingcontactanglesaffecttheC–Wtransitionaswell.Thegreaterthetwoangles,thehardertheC–Wtransition.Intheend,theC–Wtransitionparametersandthecriticalconditionsmeasuredinliteraturesarecalculatedandcompared,andthecalculationsaccordwellwiththeexperimentalresults.
机构地区 不详
出处 《中国物理B:英文版》 2015年11期
出版日期 2015年11月21日(中国期刊网平台首次上网日期,不代表论文的发表时间)
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