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混合价态金属氧化物纳米粒子作为电化学半电池:用 CeO(2-x)纳米粒子替代参比电极的 Ag/AgCl。

Mixed-valence metal oxide nanoparticles as electrochemical half-cells: substituting the Ag/AgCl of reference electrodes by CeO(2-x) nanoparticles.

机构信息

Department of Chemical Engineering, Indian Institute of Technology, Kanpur, UP India-208016.

出版信息

J Am Chem Soc. 2012 Dec 26;134(51):20783-7. doi: 10.1021/ja3103549. Epub 2012 Dec 6.

Abstract

Cations of mixed valence at surfaces of metal oxide nanoparticles constitute electrochemical half-cells, with potentials intermediate between those of the dissolved cations and those in the solid. When only cations at surfaces of the particles are electrochemically active, the ratio of electrochemically active/all cations is ~0.1 for 15 nm diameter CeO(2-x) particles. CeO(2-x) nanoparticle-loaded hydrogel films on printed carbon and on sputtered gold constitute reference electrodes having a redox potential similar to that of Ag/AgCl in physiological (0.14 M) saline solutions. In vitro the characteristics of potentially subcutaneously implantable glucose monitoring sensors made with CeO(2-x) nanoparticle reference electrodes are undistinguishable from those of sensors made with Ag/AgCl reference electrodes. Cerium is 900 times more abundant than silver, and commercially produced CeO(2-x) nanoparticle solutions are available at prices well below those of the Ag/AgCl pastes used in the annual manufacture of ~10(9) reference electrodes of glucose monitoring strips for diabetes management.

摘要

金属氧化物纳米粒子表面的混合价态阳离子构成电化学半电池,其电势介于溶解阳离子和固态阳离子之间。当只有粒子表面的阳离子具有电化学活性时,对于 15nm 直径的 CeO(2-x) 粒子,电化学活性/总阳离子的比例约为 0.1。在印刷碳和溅射金上负载有 CeO(2-x)纳米粒子的水凝胶薄膜构成了参比电极,其氧化还原电势类似于生理盐溶液(0.14M)中 Ag/AgCl 的电势。在体外,使用 CeO(2-x)纳米粒子参比电极制造的潜在可皮下植入葡萄糖监测传感器的特性与使用 Ag/AgCl 参比电极制造的传感器无法区分。铈的丰度比银高 900 倍,并且商业生产的 CeO(2-x)纳米粒子溶液的价格远低于用于每年制造约 10(9)个葡萄糖监测条的用于糖尿病管理的 Ag/AgCl 糊剂的价格。

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