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首页> 外文期刊>Sensors and Actuators >Controlling solubility of polymeric anions in supramolecular assemblies with poly(aniline) for microsensors and actuators in human tissue
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Controlling solubility of polymeric anions in supramolecular assemblies with poly(aniline) for microsensors and actuators in human tissue

机译:用聚苯胺控制超分子组装物中聚合阴离子的溶解度,用于人体组织中的微传感器和致动器

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The supramolecular assembly of poly(aniline) and poly(vinylsulfonate) (PAni/PVS) represents a particularly suitable catalytic material for oxidation of Vitamin C in sensor applications. PAni/PVS assemblies were prepared on platinum at increasing deoxygenation levels (LD → MD → HD) and in two thickness sizes of 2 μm (thick) and 200 nm (thin). Thick HD disks with diameters of 500 μm and 2 μm were stable over 90 min in a stirred buffer solution at pH 7 containing 300 μM Vitamin C. Stirring stability was lost after storage in air, but not after storage under argon. In MD disks PVS was partly lost after 3 h exposure to unstirred neutral buffer solution. Loss could be significantly reduced by oxidative enforcement with ferulic acid (F), a precursor of plant lignin. Application of elliptical F-PAni/PVS microelectrodes with diameters of 20 μm x 30 μm in brain parenchyma of rats showed surprisingly weak influence of intraperitoneal Vitamin C injections on the brain tissue level of Vitamin C. After 3 h of tissue exposure poly(aniline) redox activity in acidic solution decreased slightly. Factors which caused enhanced PVS solubility are discussed in detail.
机译:聚(苯胺)和聚(乙烯基磺酸盐)(PAni / PVS)的超分子组装代表了一种特别适合在传感器应用中氧化维生素C的催化材料。在铂上以增加的脱氧水平(LD→MD→HD)制备PAni / PVS组件,厚度为2μm(厚)和200 nm(薄)。在包含300μM维生素C的pH 7的搅拌缓冲溶液中,直径为500μm和2μm的厚HD盘在90分钟内稳定。在空气中储存后,但在氩气中储存后,搅拌稳定性丧失。在MD盘中,暴露于未搅拌的中性缓冲液3小时后,PVS部分丢失。通过使用植物木质素的前体阿魏酸(F)的氧化作用,可以大大减少损失。在大鼠脑实质中使用直径为20μmx 30μm的椭圆形F-PAni / PVS微电极,其腹膜内注射维生素C对维生素C的脑组织水平的影响出乎意料地微弱。组织暴露3小时后,聚苯胺酸性溶液中的氧化还原活性略有下降。详细讨论了导致PVS溶解度提高的因素。

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