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Growth and Structure of ZnO Nanorods on a Sub-Micrometer Glass Pipette and Their Application as Intracellular Potentiometric Selective Ion Sensors

机译:亚微米玻璃移液器上ZnO纳米棒的生长,结构及其在细胞内电位选择性离子传感器中的应用

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This paper presents the growth and structure of ZnO nanorods on a sub-micrometer glass pipette and their application as an intracellular selective ion sensor. Highly oriented, vertical and aligned ZnO nanorods were grown on the tip of a borosilicate glass capillary (0.7 µm in diameter) by the low temperature aqueous chemical growth (ACG) technique. The relatively large surface-to-volume ratio of ZnO nanorods makes them attractive for electrochemical sensing. Transmission electron microscopy studies show that ZnO nanorods are single crystals and grow along the crystal’s c-axis. The ZnO nanorods were functionalized with a polymeric membrane for selective intracellular measurements of Na+. The membrane-coated ZnO nanorods exhibited a Na+-dependent electrochemical potential difference versus an Ag/AgCl reference micro-electrode within a wide concentration range from 0.5 mM to 100 mM. The fabrication of functionalized ZnO nanorods paves the way to sense a wide range of biochemical species at the intracellular level.
机译:本文介绍了亚微米玻璃移液器上ZnO纳米棒的生长和结构及其在细胞内选择性离子传感器中的应用。通过低温水性化学生长(ACG)技术,在硼硅酸盐玻璃毛细管(直径为0.7 µm)的尖端上生长高度取向,垂直和对齐的ZnO纳米棒。 ZnO纳米棒的相对较大的体积比使它们对于电化学传感具有吸引力。透射电子显微镜研究表明,ZnO纳米棒是单晶,并沿晶体的c轴生长。 ZnO纳米棒用聚合物膜功能化,用于选择性细胞内测量Na + 。在0.5 mM至100 mM的宽浓度范围内,与Ag / AgCl参比微电极相比,膜包覆的ZnO纳米棒表现出Na + 依赖的电化学电势差。功能化ZnO纳米棒的制造为在细胞内水平上感应广泛的生化物质铺平了道路。

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