Heinz P, Brétagnol F, Mannelli I, Sirghi L, Valsesia A, Ceccone G, Gilliland D, Landfester K, Rauscher H, Rossi F
Institute for Health and Consumer Protection, Directorate General Joint Research Centre, European Commission, Via E. Fermi, 21027 Ispra (VA), Italy.
Langmuir. 2008 Jun 17;24(12):6166-75. doi: 10.1021/la800575f. Epub 2008 May 17.
Thermoresponsive polymer layers offer the possibility of preparing smart surfaces with properties that are switchable through a phase transition, usually close to the lower critical solution temperature of the polymer. In particular, poly( N-isopropylacrylamide) (pNIPAM) has gained a great deal of attention because it has such a phase transition in a physiologically interesting temperature range. We have prepared ultrathin thermoresponsive coatings by grafting pNIPAM on a plasma-CVD-deposited, poly(ethylene oxide)-like polymer substrate that was activated in an Ar plasma discharge to initiate the grafting. The presence and integrity of pNIPAM was verified by XPS and ToF-SIMS, and a dramatic change in the wettability during the phase transition was identified by temperature-dependent contact angle measurements. The transition from the hydrated to the collapsed conformation was analyzed by temperature-dependent QCM measurements and by AFM. An unusual, reversible behavior of the viscoelastic properties was seen directly at the phase transition from the swollen to the collapsed state. The phase transition leads to a switching from protein repulsion to a state that allows the adsorption of proteins.
热响应性聚合物层提供了制备智能表面的可能性,这些表面的性质可通过相变来切换,相变通常接近聚合物的较低临界溶液温度。特别是聚(N-异丙基丙烯酰胺)(pNIPAM)受到了广泛关注,因为它在生理上感兴趣的温度范围内具有这样的相变。我们通过将pNIPAM接枝到在氩等离子体放电中活化以引发接枝的等离子体化学气相沉积的聚环氧乙烷类聚合物基底上,制备了超薄热响应涂层。通过XPS和飞行时间二次离子质谱(ToF-SIMS)验证了pNIPAM的存在和完整性,并通过温度依赖性接触角测量确定了相变过程中润湿性的显著变化。通过温度依赖性石英晶体微天平(QCM)测量和原子力显微镜(AFM)分析了从水合构象到塌陷构象的转变。在从肿胀状态到塌陷状态的相变过程中,直接观察到了粘弹性性质的一种不寻常的可逆行为。相变导致从蛋白质排斥转变为允许蛋白质吸附的状态。