School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo, 255049, PR China.
School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo, 255049, PR China.
Biosens Bioelectron. 2022 Sep 1;211:114361. doi: 10.1016/j.bios.2022.114361. Epub 2022 May 12.
Self-powered photoelectrochemical (PEC) sensing platform without external voltage has provided a breakthrough in the development of biosensors, however, it is necessary to find suitable Fermi energy level difference between photoanode materials and photocathode materials as the driving force. Herein, the self-powered PEC sensor was developed to combine the advantages of both the photoanode (SnS/InS) and the photocathode (CuInS). The sufficient Fermi level differentiation between the photoanode with the photocathode not only resulted in an evident photocurrent response vis tuning the electron transfer but avoided redox reactions of extra electron donors/acceptors to enhance the accuracy of the sensor. The biological target was immobilized on the photocathode, which allowed the sensor to possess a good anti-interference capability for the detection of real samples. The proposed PEC sensor exhibits good sensitivity for the cytokeratin 19 fragment (CYFRA21-1) detection and a low limit of detection (LOD) of 6.57 fg mL. Moreover, the as-purposed PEC system with good anti-interference capability and accuracy has implications for the detection of other biomarkers.
自供电光电化学 (PEC) 传感平台无需外部电压,为生物传感器的发展提供了突破,然而,有必要找到合适的光阳极材料和光阴极材料之间的费米能级差作为驱动力。在此,开发了自供电 PEC 传感器,将光阳极(SnS/InS)和光阴极(CuInS)的优势结合在一起。光阳极和光阴极之间充足的费米能级差异不仅导致了明显的光电流响应,从而调节了电子转移,而且避免了额外电子供体/受体的氧化还原反应,从而提高了传感器的准确性。生物靶标固定在光阴极上,使传感器具有良好的抗干扰能力,可用于检测实际样品。所提出的 PEC 传感器对细胞角蛋白 19 片段 (CYFRA21-1) 的检测具有良好的灵敏度,检测限 (LOD) 低至 6.57 fg mL。此外,该拟议的 PEC 系统具有良好的抗干扰能力和准确性,可用于检测其他生物标志物。