Department of Chemistry, University of Warwick, Coventry, UK.
Anal Chem. 2011 Jul 15;83(14):5804-8. doi: 10.1021/ac2010247. Epub 2011 Jun 17.
The development of the first all-diamond hydrodynamic flow device for electroanalytical applications is described. Here alternate layers of intrinsic (insulating), conducting (heavily boron doped), and intrinsic polycrystalline diamond are grown to create a sandwich structure. By laser cutting a hole through the material, it is possible to produce a tubular flow ring electrode of a characteristic length defined by the thickness of the conducting layer (for these studies ∼90 μm). The inside of the tube can be polished to 17 ± 10 nm surface roughness using a diamond impregnanted wire resulting in a coplanar, smooth, all-diamond surface. The steady-state limiting current versus volume flow rate characteristics for the one electron oxidation of FcTMA(+) are in agreement with those expected for laminar flow in a tubular electrode geometry. For dopamine detection, it is shown that the combination of the reduced fouling properties of boron doped diamond, coupled with the flow geometry design where the products of electrolysis are washed away downstream of the electrode, completely eradicates fouling during electrolysis. This paves the way for incorporation of this flow design into online electroanalytical detection systems. Finally, the all diamond tubular flow electrode system described here provides a platform for future developments including the development of ultrathin ring electrodes, multiple apertures for increased current response, and multiple, individually addressable ring electrodes incorporated into the same flow tube.
本文描述了首个用于电分析应用的全金刚石流体动力学流动装置的开发。在这里,交替生长的本征(绝缘)、导电(高掺硼)和本征多晶金刚石层被用来制造三明治结构。通过激光在材料上切一个孔,可以制作出具有特征长度的管状流动环电极,其长度由导电层的厚度决定(在这些研究中约为 90μm)。通过使用金刚石浸渍丝对内管进行抛光,可以将内管的表面粗糙度降低到 17±10nm,从而得到共面、光滑的全金刚石表面。FcTMA(+)的单电子氧化的稳态极限电流与体积流速特性与管状电极几何形状中的层流一致。对于多巴胺检测,结果表明,掺硼金刚石的低污染特性与流动几何设计的结合,其中产物在电极下游被冲走,完全消除了电解过程中的污染。这为将这种流动设计纳入在线电分析检测系统铺平了道路。最后,本文描述的全金刚石管状流动电极系统为未来的发展提供了一个平台,包括开发超薄环形电极、增加电流响应的多个孔以及将多个可单独寻址的环形电极集成到同一个流动管中。