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首页> 外文期刊>Radiation Physics and Chemistry >Surface modification of microfluidic channels by UV-mediated graft polymerization of non-fouling and 'smart' polymers
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Surface modification of microfluidic channels by UV-mediated graft polymerization of non-fouling and 'smart' polymers

机译:紫外线介导的防污和“智能”聚合物的接枝聚合,对微流体通道进行表面修饰

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摘要

Microfluidic channels prepared from polydimethylsiloxane (PDMS) have been modified by UV-mediated graft polymerization of temperature-responsive polymers (poly[N-isopropyl acrylamide] or pNIPAAm),temperature- and pH-responsive copolymers (P[NIPAAm-co-acrylic acid (AAc)]),and a non-fouling hydrogel (polyethyleneglycol diacrylate,or PEGDA).This was done by presorbing a photo sensitizer (PS) within the PDMS channel surface regions,contacting the different monomer solutions with the PS-containing surface under nitrogen,and irradiating with UV.The pNIPAAm-grafted surface was hydrophilic below its lower critical solution temperature (LCST),resisting non-specific adsorption,while it was hydrophobic above its LCST,now binding pNIPAAm-coated nanoparticles.Combined temperature- and pH-responsive surfaces were also prepared by UV radiation grafting a monomer mixture of pNIPAAm with AAc.The surfaces have been characterized by advancing water contact angle measurements.These smart microfluidic channels should be useful for many applications such as affinity separations and diagnostic assays.
机译:由聚二甲基硅氧烷(PDMS)制备的微流体通道已通过紫外线介导的温度响应性聚合物(聚[N-异丙基丙烯酰胺]或pNIPAAm),温度响应和pH响应共聚物(P [NIPAAm-丙烯酸共聚)改性(AAc)])和不结垢的水凝胶(聚乙二醇二丙烯酸酯或PEGDA)。这是通过在PDMS通道表面区域内预吸附光敏剂(PS),使不同的单体溶液与下方含PS的表面接触来完成的pNIPAAm接枝的表面在其较低的临界溶液温度(LCST)以下是亲水性的,可抵抗非特异性吸附,而在LCST之上则是疏水的,现已与pNIPAAm包覆的纳米颗粒结合在一起。还通过将pNIPAAm单体混合物与AAc进行紫外线辐射接枝制备了具有响应性的表面,并通过先进的水接触角测量来表征这些表面。 nels应该对许多应用有用,例如亲和分离和诊断分析。

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