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铂电极上电聚合合成聚甘氨酸类薄膜作为固态 pH 测量的传感器。

One-pot electrosynthesis of polyglycine-like thin film on platinum electrodes as transducer for solid state pH measurements.

机构信息

Femto-ST/LOPMD CNRS UMR 6174, 16 route de Gray, 25030 Besancon cedex, France.

出版信息

Talanta. 2010 Jun 30;82(1):417-21. doi: 10.1016/j.talanta.2010.04.008. Epub 2010 Apr 13.

Abstract

The anodic oxidation of concentrated glycine based aqueous electrolyte on smooth platinum electrode leads to a strongly grafted polyglycine-like coating on the surface in an irreversible way. Due to the proton affinity towards amino groups of polyglycine (PG), the electrodeposited thin film was used as receptor for solid potentiometric pH sensor. In order to reach local pH measurement, we developed miniaturized microelectrodes on glass substrate thanks to photolithography process. We used silver chloride on silver as the reference electrode. The couple (silver chloride, PG based platinum electrode) of microelectrodes gives linear potentiometric response vs. pH in the range [2-12], reversibly and with a sensitivity of 52.4 mV/pH (for 1mm electrode size). PG based pH electrode is compared to other organic polymer based pH receptor such as linear polyethylenimine (L-PEI), polyaniline (PANI) and glass membrane.

摘要

在光滑的铂电极上,浓甘氨酸基水性电解液的阳极氧化会导致表面不可逆地强烈接枝类似聚甘氨酸的涂层。由于聚甘氨酸 (PG) 的氨基对质子的亲和力,电沉积的薄膜被用作固态电位 pH 传感器的受体。为了实现局部 pH 测量,我们借助光刻工艺在玻璃基底上开发了微型化的微电极。我们使用氯化银/银作为参比电极。微电极的银/氯化银-聚甘氨酸铂电极对在 [2-12] 范围内的 pH 值呈线性电位响应,具有可逆性和 52.4 mV/pH 的灵敏度(对于 1mm 电极尺寸)。聚甘氨酸基 pH 电极与其他基于有机聚合物的 pH 受体(如线性聚乙烯亚胺 (L-PEI)、聚苯胺 (PANI) 和玻璃膜)进行了比较。

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