State Key Laboratory of Analytical Chemistry for Life Science, Collaborative Innovation Center of Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, PR China.
State Key Laboratory of Analytical Chemistry for Life Science, Collaborative Innovation Center of Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, PR China.
Biosens Bioelectron. 2017 Oct 15;96:8-16. doi: 10.1016/j.bios.2017.04.030. Epub 2017 Apr 22.
Photoelectrochemical (PEC) biosensing is a popular research hotspot that has attracted substantial attention from chemists and biologists due to its low cost and desirable sensitivity. The PEC biosensing mainly refers to the influence of the interaction between recognition element and analyte on photocurrent signal, which involves the charge and energy transfer of PEC reaction between electron donor/acceptor and photoactive material upon light irradiation. Understanding the fundamentals of PEC strategy benefits the development of next-generation PEC sensors. However, the research on detection mechanism of PEC sensors is in the initial stage and need to be further exploited. Thus, with a particular focus on the signal transduction formats, this review highlights the novel concept on PEC sensing strategies, and categorizes the recent illustrative examples into three signaling principles: reactant determinant, electron transfer and energy transfer, providing the comprehensive design guidelines for researchers to develop more advanced PEC sensors. The prospects and challenges for future work are also included.
光电化学(PEC)生物传感是一个热门的研究热点,由于其低成本和理想的灵敏度,引起了化学家们和生物学家们的广泛关注。PEC 生物传感主要是指识别元件与分析物之间的相互作用对光电流信号的影响,涉及到电子给体/受体与光活性材料之间的 PEC 反应在光照下的电荷和能量转移。了解 PEC 策略的基本原理有助于开发下一代 PEC 传感器。然而,PEC 传感器的检测机制的研究还处于起步阶段,需要进一步探索。因此,本文特别关注信号转导格式,重点介绍了 PEC 传感策略的新观念,并根据三种信号原理(反应决定因素、电子转移和能量转移)对最近的实例进行了分类,为研究人员开发更先进的 PEC 传感器提供了全面的设计指南。还包括对未来工作的展望和挑战。