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Electrochemical Boron-Doped Diamond Film Microcells Micromachined with Femtosecond Laser: Application to the Determination of Water Framework Directive Metals

机译:飞秒激光微加工的电化学掺杂硼的金刚石薄膜微电池:在测定水骨架金属中的应用

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摘要

Planar electrochemical microcells were micromachined in a microcrystalline boron-doped diamond (BDD) thin layer using a femtosecond laser (Photo 1). The electrochemical performances of the new laser-machined BDD microcell were assessed by differential pulse anodic stripping voltammetry (DPASV) determinations, at nM level, of the four heavy metal ions of the European Water Framework Directive (WFD): Cd(II), Ni(II), Pb(II), Hg(II). The results are compared with those of previously published BDD electrodes [1]. The calculated detection limits are 0.4 nM, 6.8 nM and 5.5 nm 2.3 nM, and the linearities go up to 35nM, 97nM, 48nM and 5nM for respectively Cd(II), Ni(II) Pb(II) and Hg(II). The detection limits meet with the environmental quality standard of the WFD for three of the four metals. It was shown that the four heavy metals could be detected simultaneously, in the concentration ratio usually measured in sewage or runoff waters.
机译:使用飞秒激光在微晶掺硼金刚石(BDD)薄层中对平面电化学微电池进行微加工(照片1)。通过差分脉冲阳极溶出伏安法(DPASV)测定欧洲水框架指令(WFD)中的四种重金属离子:Cd(II),Ni,评估了新型激光加工BDD微电池的电化学性能。 (II),Pb(II),Hg(II)。将结果与以前发布的BDD电极进行了比较[1]。计算出的检出限为0.4 nM,6.8 nM和5.5 nm 2.3 nM,对于Cd(II),Ni(II)Pb(II)和Hg(II)的线性分别达到35nM,97nM,48nM和5nM。对于四种金属中的三种,检出限符合WFD的环境质量标准。结果表明,可以同时检测到四种重金属,其浓度比通常是在污水或径流水中测得的。

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