Department of Chemistry, Pukyong National University, 45 Yongso-ro, Busan 608-739, Korea.
Analyst. 2012 Jun 21;137(12):2827-33. doi: 10.1039/c2an35382b. Epub 2012 May 11.
We report a two-channel microelectrochemical sensor that communicates between separate sensing and reporting microchannels via one or more bipolar electrodes (BPEs). Depending on the contents of each microchannel and the voltage applied across the BPE, faradaic reactions may be activated simultaneously in both channels. As presently configured, one end of the BPE is designated as the sensing pole and the other as the reporting pole. When the sensing pole is activated by a target, electrogenerated chemiluminescence (ECL) is emitted at the reporting pole. Compared to previously reported single-channel BPE sensors, the key advantage of the multichannel architecture reported here is physical separation of the ECL reporting cocktail and the solution containing the target. This prevents chemical interference between the two channels.
我们报告了一种双通道微电化学传感器,它通过一个或多个双极电极(BPE)在单独的传感和报告微通道之间进行通信。根据每个微通道的内容和施加在 BPE 上的电压,两个通道中的法拉第反应可能会同时被激活。目前的配置中,BPE 的一端被指定为传感极,另一端为报告极。当传感极被目标激活时,在报告极处发出电致化学发光(ECL)。与之前报道的单通道 BPE 传感器相比,这里报道的多通道结构的主要优势是 ECL 报告鸡尾酒和包含目标的溶液在物理上是分离的。这可以防止两个通道之间的化学干扰。