Wang Jian, Chen Fangming, Guo Qin, Meng Yao, Jiang Mingrui, Wu Chunsheng, Zhuang Jian, Zhang De-Wen
Institute of Medical Engineering, Department of Biophysics, School of Basic Medical Sciences, Health Science Center, Xi'an Jiaotong University, Xi'an 710061, China.
Key Laboratory of Environment and Genes Related to Diseases (Xi'an Jiaotong University), Ministry of Education of China, Xi'an 710061, China.
ACS Sens. 2021 Apr 23;6(4):1636-1642. doi: 10.1021/acssensors.1c00170. Epub 2021 Apr 8.
Here, we describe a new photoelectrochemical imaging method termed light-addressable square wave voltammetry (LASWV). It measures local SWV currents at an unstructured electrolyte/insulator/semiconductor (EIS) field-effect substrate by illuminating and addressing the substrate with an intensity-constant laser. Due to the continuous generation of charge carriers in the light-irradiated semiconductor, the drift and diffusion of photoinjected carriers within the semiconductor bulk would slow down the equilibrium processes of charge and discharge in one potential pulse cycle. Therefore, even though SWV is sampled at the end of the direct and reverse pulses to reject capacitive currents, in our approach, photoinduced capacitive current can still be detected as an effective sensory signal. The obtained current-potential (-) curve shows a typical shape corresponding to the accumulation, depletion, and inversion regions of field-effect devices. We demonstrated that LASWV can be used as a field-effect chemical sensor to measure the solution pH and monitor enzymatic reactions. More importantly, since the charge carriers are only generated in the illuminated area, the laser spot in the device can be used as a virtual probe to record local electrochemical properties such as impedance with microresolution.
在此,我们描述了一种新的光电化学成像方法,称为光寻址方波伏安法(LASWV)。它通过用强度恒定的激光照射和寻址衬底,在非结构化电解质/绝缘体/半导体(EIS)场效应衬底上测量局部SWV电流。由于在光照射的半导体中连续产生电荷载流子,光注入载流子在半导体体内的漂移和扩散会减缓一个电位脉冲周期内的充放电平衡过程。因此,尽管在正向和反向脉冲结束时对SWV进行采样以抑制电容性电流,但在我们的方法中,光致电容性电流仍可作为有效的传感信号被检测到。所获得的电流-电位(-)曲线呈现出与场效应器件的积累、耗尽和反型区域相对应的典型形状。我们证明了LASWV可作为一种场效应化学传感器来测量溶液pH值并监测酶促反应。更重要的是,由于电荷载流子仅在光照区域产生,器件中的激光光斑可作为一个虚拟探针,以微分辨率记录局部电化学性质,如阻抗。