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Deposition of fluorescent NIPAM-based nanoparticles on solid surfaces: quantitative analysis and the factors affecting it

机译:固体表面上基于荧光NIPAM的纳米颗粒的沉积:定量分析及其影响因素

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摘要

Recently, responsive surfaces have attracted attention due to their potential applications. Reported research have studied the deposition of environmentally responsive particles on different surfaces, qualitatively tested their response to environmental conditions and studied their possible applications. In this work, novel fluorescent temperature-sensitive nanoparticles were synthesized using a surfactant free emulsion polymerization technique: poly(N-isopropylacrylamide-co-5% vinyl cinnamate) (p(NIPAM)5%VC). The new particles were characterized using dynamic light scattering and fluorescence spectroscopy. A novel sensitive method for the quantitative analysis of p(NIPAM) 5% VC using fluorescence spectroscopy was developed to determine the concentration of nanoparticle dispersions. This was further used to quantitatively determine the mass of nanoparticles deposited per unit area of glass pre-treated with acid, glass pre-treated with base, quartz, stainless steel, gold and teflon at 25 °C and 60 °C. Factors affecting the adsorption/desorption of the nanoparticles were studied, including the effect of substrate surface charge, surface roughness (using atomic force microscopy, AFM), hydrophilicity/hydrophobicity and the temperature at which the adsorption/desorption experiments were carried out. The results show that the effect of surface charge is the most significant, followed by that of surface roughness and temperature. Meanwhile, the influence of the hydrophobicity/hydrophilicity of the surface on the adsorption/desorption of nanoparticles appears to be far less significant than the previously mentioned factors.
机译:近来,响应性表面由于其潜在的应用而引起了关注。报道的研究已经研究了环境响应性颗粒在不同表面上的沉积,定性测试了其对环境条件的响应并研究了其可能的应用。在这项工作中,使用无表面活性剂的乳液聚合技术合成了新型的荧光温度敏感纳米粒子:聚(N-异丙基丙烯酰胺-co-5%肉桂酸乙烯酯)(p(NIPAM)5%VC)。使用动态光散射和荧光光谱对新颗粒进行表征。开发了一种新颖的灵敏的方法,用于定量分析p(NIPAM)5%VC,使用荧光光谱法确定纳米颗粒分散液的浓度。这进一步用于定量确定在25°C和60°C下用酸预处理的玻璃,用碱,石英,不锈钢,金和特氟隆预处理的玻璃的每单位面积沉积的纳米颗粒的质量。研究了影响纳米颗粒吸附/解吸的因素,包括基材表面电荷,表面粗糙度(使用原子力显微镜,AFM),亲水性/疏水性和进行吸附/解吸实验的温度的影响。结果表明,表面电荷的影响最大,其次是表面粗糙度和温度。同时,表面的疏水性/亲水性对纳米颗粒的吸附/解吸的影响似乎远小于前述因素。

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