Departments of Chemistry and ‡Physics, University of Warwick , Coventry CV4 7AL, United Kingdom.
Anal Chem. 2016 Jan 5;88(1):974-80. doi: 10.1021/acs.analchem.5b03732. Epub 2015 Dec 18.
The development of a voltammetric boron doped diamond (BDD) pH sensor is described. To obtain pH sensitivity, laser micromachining (ablation) is utilized to introduce controlled regions of sp(2) carbon into a high quality polycrystalline BDD electrode. The resulting sp(2) carbon is activated to produce electrochemically reducible quinone groups using a high temperature acid treatment, followed by anodic polarization. Once activated, no further treatment is required. The quinone groups show a linear (R(2) = 0.999) and Nernstian (59 mV/(pH unit)) pH-dependent reductive current-voltage response over a large analyzable pH range, from pH 2 to pH 12. Using the laser approach, it is possible to optimize sp(2) coverage on the BDD surface, such that a measurable pH response is recorded, while minimizing background currents arising from oxygen reduction reactions on sp(2) carbon in the potential region of interest. This enables the sensor to be used in aerated solutions, boding well for in situ analysis. The voltammetric response of the electrode is not compromised by the presence of excess metal ions such as Pb(2+), Cd(2+), Cu(2+), and Zn(2+). Furthermore, the pH sensor is stable over a 3 month period (the current time period of testing), can be stored in air between measurements, requires no reactivation of the surface between measurements, and can be reproducibly fabricated using the proposed approach. The efficacy of this pH sensor in a real-world sample is demonstrated with pH measurements in U.K. seawater.
本文描述了一种电化学硼掺杂金刚石(BDD)pH 传感器的研制。为了获得 pH 敏感性,采用激光微加工(烧蚀)在高质量多晶 BDD 电极中引入了受控的 sp2 碳区域。通过高温酸处理将生成的 sp2 碳激活,生成电化学还原的醌基团,然后进行阳极极化。一旦被激活,就无需再进行处理。醌基团在较大的可分析 pH 范围内(pH 2 至 pH 12)表现出线性(R2 = 0.999)和能斯特(59 mV/(pH 单位))的 pH 依赖性还原电流-电压响应。采用激光方法,可以优化 BDD 表面的 sp2 覆盖率,从而记录可测量的 pH 响应,同时最小化在感兴趣的电位区域中 sp2 碳上的氧还原反应产生的背景电流。这使得传感器能够在充气溶液中使用,非常适合原位分析。电极的伏安响应不受过量金属离子(如 Pb2+、Cd2+、Cu2+和 Zn2+)的存在影响。此外,该 pH 传感器在 3 个月的时间内(测试的当前时间段)保持稳定,可以在测量之间储存在空气中,在测量之间无需对表面进行再激活,并且可以使用提出的方法可重复地制造。该 pH 传感器在实际样品中的有效性通过在英国海水中进行 pH 测量得到了证明。