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Superhydrophobic Porous Surfaces: Dissolved Oxygen Sensing

机译:超疏水多孔表面:溶解氧传感

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Porous polymer films are necessary for dissolved gas sensor applications that combine high sensitivity with selectivity. This report describes a greatly enhanced dissolved oxygen sensor system consisting of amphiphilic acrylamide-based polymers: poly(N-(1H, 1H-pentadecafluorooctyl)-methacrylamide) (pC7F15MAA) and poly(N-dodecylacrylamide-co-5- [4-(2-methacryloyloxyethoxy-carbonyl)phenyl]-10,15,20-triphenylporphinato platinum(II)) (p(DDA/PtTPP)). The nanoparticle formation capability ensures both superhydrophobicity with a water contact angle greater than 160 degrees and gas permeability so that molecular oxygen enters the film from water. The film was prepared by casting a mixed solution of pC7F15MAA and p(DDA/PtTPP) with AK-225 and acetic acid onto a solid substrate. The film has a porous structure comprising nanoparticle assemblies with diameters of several hundred nanometers. The film shows exceptional performance as the oxygen sensitivity reaches 126: the intensity ratio at two oxygen concentrations (I-0/I-40) respectively corresponding to dissolved oxygen concentration 0 and 40 (mg L-1). Understanding and controlling porous nanostructures are expected to provide opportunities for making selective penetration/separation of molecules occurring at the superhydrophobic surface.
机译:多孔聚合物薄膜对于溶解气体传感器应用是必不可少的,该应用将高灵敏度与选择性结合在一起。该报告描述了一种大大增强的溶解氧传感器系统,该系统由两亲的基于丙烯酰胺的聚合物组成:聚(N-(1H,1H-十五氟辛基)-甲基丙烯酰胺)(pC7F15MAA)和聚(N-十二烷基丙烯酰胺-co-5- [4-( 2-甲基丙烯酰氧基乙氧基-羰基)苯基] -10,15,20-三苯基卟啉成铂(II))(p(DDA / PtTPP))。纳米粒子的形成能力确保了与水接触角大于160度的超疏水性和透气性,从而使分子氧从水进入薄膜。通过将pC7F15MAA和p(DDA / PtTPP)与AK-225和乙酸的混合溶液流延到固体基质上来制备薄膜。该膜具有多孔结构,该多孔结构包括直径为几百纳米的纳米颗粒组件。该膜在氧气敏感性达到126时表现出非凡的性能:在两个氧气浓度(I-0 / I-40)下的强度比分别对应于溶解氧浓度0和40(mg L-1)。期望理解和控制多孔纳米结构将提供机会,使超疏水表面上发生的分子选择性渗透/分离。

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