首页> 外文期刊>Lab on a chip >Nanoporous platinum solid-state reference electrode with layer-by-layer polyelectrolyte junction for pH sensing chipt
【24h】

Nanoporous platinum solid-state reference electrode with layer-by-layer polyelectrolyte junction for pH sensing chipt

机译:具有用于pH传感芯片的逐层聚电解质结的纳米多孔铂固态参比电极

获取原文
获取原文并翻译 | 示例
           

摘要

A novel solid-state reference electrode was developed by combining nanoporous Pt with polyelectrolyte junction. The polyelectrolyte junction was formed in the microchannel connecting the nanoporous Pt and the sample solution, and had layer-by-layer structure of oppositely charged polyelectrolytes. The layer-by-layer polyelectrolyte junction effectively blocked the mass transport of ions and maintains constant pH environments on the surface of the nanoporous Pt. The assembly of the polyelectrolyte junction and the nanoporous Pt, which produced reportedly a stable open-circuit potential in response to constant pH, exhibited outstanding performance as a solid-state reference electrode (e.g., excellent reproducibility of ±4 mV (n = 5), good long term stability of ±1 mV (for 50 h), and independence of solution environments like pH and ionic strength). A working principle of the solid-state reference electrode with layer-by-layer polyelectrolyte junction was suggested in terms of the roles of each layer and the effect of the neighboring layer. As a demonstrative application of the solid-state reference electrode, a miniaturized chip-type solid-state pH sensor comprised of two nanoporous Pt electrodes and a micro-patterned layer-by-layer polyelectrolyte junction was developed. The solid-state pH sensing chip showed reliable pH responses without liquid junction and successfully worked in a variety of buffers, beverages, and biological samples, showing its potential utility for practical applications. In addition, the solid-state pH sensing chip was integrated in a microfluidic system to be utilized for pH monitoring in microfluidic flow.
机译:纳米多孔铂与聚电解质结相结合,开发出一种新型的固态参比电极。在连接纳米孔Pt和样品溶液的微通道中形成聚电解质结,并具有带相反电荷的聚电解质的逐层结构。逐层聚电解质结有效地阻止了离子的质量传输,并在纳米多孔Pt的表面上保持了恒定的pH环境。据报道,在恒定的pH值下,聚电解质结和纳米孔Pt的组装产生了稳定的开路电势,作为固态参比电极表现出出色的性能(例如,出色的重现性±4 mV(n = 5)) ,±1 mV(50小时)的良好长期稳定性,以及溶液环境(如pH值和离子强度)的独立性。根据每一层的作用和相邻层的作用,提出了具有逐层聚电解质结的固态参比电极的工作原理。作为固态参比电极的示范应用,开发了由两个纳米多孔Pt电极和微图案逐层聚电解质结组成的小型芯片型固态pH传感器。固态pH传感芯片显示出可靠的pH响应,没有液体连接,并成功用于各种缓冲液,饮料和生物样品,显示出其在实际应用中的潜在用途。此外,固态pH传感芯片集成在微流体系统中,可用于微流体流动中的pH监测。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号