Department of Chemical and Biomolecular Engineering, School of Medicine, Johns Hopkins University, Baltimore, Maryland, USA.
Anal Chem. 2009 Dec 15;81(24):9979-84. doi: 10.1021/ac901744s.
Spatially resolved electrochemical recording of neurochemicals is difficult due to the challenges associated with producing nanometer-scale patternable and integrated sensors. We describe the lithographic fabrication and characterization of patternable gold (Au) nanowire (NW) based sensors for the electrochemical recording of dopamine (DA). We demonstrate a straightforward NW-size-independent approach to align contact pads to NWs. Sensors, with NW widths as small as 30 nm, exhibited considerable insensitivity to scan rates during cyclic voltammetry, a nonlinear increase in oxidation current with increasing NW width, and the selectivity to measure submaximal synaptic concentrations of DA in the presence of interfering ascorbic acid. The electrochemical sensitivity of Au NW electrode sensors was much larger than that of Au thin-film electrodes. In chronoamperometric measurements, the NW sensors were found to be sensitive for submicromolar concentration of DA. Hence, the patternable NW sensors represent an attractive platform for electrochemical sensing and recording.
由于在制作纳米级可图案化和集成传感器方面存在挑战,因此对神经化学物质进行空间分辨电化学记录较为困难。我们描述了用于电化学记录多巴胺(DA)的图案化金(Au)纳米线(NW)传感器的光刻制造和特性。我们展示了一种简单的、与 NW 尺寸无关的方法来将接触垫与 NW 对齐。在循环伏安法中,传感器的 NW 宽度小至 30nm,对扫描速率的不敏感程度相当大,随着 NW 宽度的增加,氧化电流呈非线性增加,并且在存在干扰抗坏血酸的情况下,对测量亚最大突触浓度的 DA 具有选择性。Au NW 电极传感器的电化学灵敏度远大于 Au 薄膜电极的灵敏度。在计时安培测量中,发现 NW 传感器对亚微摩尔浓度的 DA 敏感。因此,可图案化的 NW 传感器代表了电化学传感和记录的有吸引力的平台。