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CaCO_3颗粒模板法制备聚合物超亲水/超疏水表面
引用本文:郑建勇,冯杰,钟明强. CaCO_3颗粒模板法制备聚合物超亲水/超疏水表面[J]. 高分子学报, 2010, 0(10): 1186-1192. DOI: 10.3724/SP.J.1105.2010.09377
作者姓名:郑建勇  冯杰  钟明强
作者单位:浙江工业大学化学工程与材料学院,杭州,310014
基金项目:浙江省"钱江人才"计划
摘    要:以碳酸钙(CaCO3)颗粒层为模板,运用简单的热压和酸蚀刻相结合的方法制备聚合物超亲水/超疏水表面.首先在玻璃基底上均匀铺撒一层CaCO3颗粒,以此作为模板,通过热压线性低密度聚乙烯(LLDPE)使CaCO3颗粒均匀镶嵌在聚合物表面,获得了超亲水性质;进一步经酸蚀得到了具有微米和亚微米多孔结构的表面,其水滴静态接触角(WCA)可达(152.7±0.8)°,滚动角小于3°,具备超疏水性质.表面浸润性能和耐水压冲击性能研究表明该超疏水表面具有良好的稳定性和持久性.用同样工艺微模塑/酸蚀刻其它疏水性聚合物,得到类似结果.

关 键 词:CaCO3颗粒  模板法  聚合物  超疏水  超亲水
收稿时间:2009-11-05

FABRICATING POLYMER SUPERHYDROPHILIC/SUPERHYDROPHOBIC SURFACES BY REPLICA-MOLDING METHOD USING CaCO3 PARTICLES AS TEMPLATE
ZHENG Jianyong,FENG Jie,ZHONG Mingqiang. FABRICATING POLYMER SUPERHYDROPHILIC/SUPERHYDROPHOBIC SURFACES BY REPLICA-MOLDING METHOD USING CaCO3 PARTICLES AS TEMPLATE[J]. Acta Polymerica Sinica, 2010, 0(10): 1186-1192. DOI: 10.3724/SP.J.1105.2010.09377
Authors:ZHENG Jianyong  FENG Jie  ZHONG Mingqiang
Affiliation:Department of Materials Science & Engineering, Zhejiang University of Technology, Hangzhou310014
Abstract:uperhydrophobic surface with lotus leaf effect has many practical and potential applications in different fields.Although attempts to produce artificial superhydrophobic films have always been intensively performed in recent years,however,a simple and economical procedure to mass-produce superhydrophobic surfaces is still in nead.In this paper,a novel replica-molding method using CaCO3 particles as template,was developed to fabricate bionic superhydrophobic polymer films.Briefly,CaCO3 particle suspension was first cast onto a glass substrate and then was dried towards forming a thin layer of particles.Then linear low-density polyethylene(LLDPE) was thermally pressed onto such a CaCO3 particles template.After being cooled,peeled off from the substrate and rinsed with flowing water,the LLDPE film with superhydrophilic surface was obtained.Then this superhydrophilic LLDPE surface was further etched in 20 wt% HCl solution for 10 min.After washing and drying,the LLDPE film with superhydrophobic surface was obtained,with water contact angle(WCA) up to(152.7 ± 0.8)° and sliding angle less than 3°.Moreover,such superhydrophobicity was confirmed stable under water jet at high pressure and durable in warm water(lower than 50℃).SEM imaging showed that such superhydrophobicity was attributed to the typical micro-and nanometer scale porous surface structure.Other types of polymers such as LDPE,HDPE,polypropylene(PP),polystyrene(PS) and polyurethane(PU) had also been replica molded using the similar process.All formed superhydrophobic and micro-and nano-porous surfaces except for PU,which only formed normal hydrophobic and microporous surface.Because CaCO3 microparticle is low-cost and can be easily covered onto the surface of the rolling mold,which is generally used in flow-casting process in manufacturing plastic films,superhydrophobic plastic films could be thus produced cost-effectively in large scale.
Keywords:CaCO3 particle  Replica molding  Polymer  Superhydrophobic  Superhydrophilic
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