Yan Liru, Zhang Bianxiang, Zong Zhiwei, Zhou Wei, Shuang Shaomin, Shi Lihong
College of Chemistry and Chemical Engineering, Shanxi University, Taiyuan 030006, PR China.
School of Computer and Information Technology, Shanxi University, Taiyuan 030006, PR China.
J Colloid Interface Sci. 2023 Dec;651:59-67. doi: 10.1016/j.jcis.2023.07.125. Epub 2023 Jul 20.
Artificial intelligence (AI)-integrated smartphone-based handheld determination platform, based on 3D printed accessory, Al-triggered aggregation-induced red-emssion enhanced carbon dots (CDs) test strip, and smartphone with self-developed YOLO v3 AI algorithm-based application, proves the feasibility for intelligent real-time on-site quantitation of F through tracking a consecutive fluorescence (FL) colour change. CDs, manifesting dual emission of moderate green emission at 512 nm and weak red one at 620 nm under 365 nm excitation, were synthesized hydrothermally from alizarin carmine and citric acid. CDs@Al, with distinct aggregation-induced red-emssion enhancement and green-emssion quenchment, were prepared by adding Al to the CDs solution. Inspiringly, due to intrinsic ratiometric FL variation (I/I), CDs@Al engender a successive FL colour variation from red to green in response to different concentrations of F with low limit of detection of 7.998 μM and wide linear range of 150-1200 µM based on excellent linearity correlation between R/G value and F concentration. Furthermore, F content in tap water, toothpaste and milk could be intelligently, speedily, and straightforwardly analyzed through the AI-integrated smartphone-based handheld detection platform. It is fervently desired that our study will motivate a brand-new perspective for the promotion of efficacious detection strategy and the extension of practical application promise.
基于3D打印配件、铝触发聚集诱导红光增强碳点(CDs)测试条以及带有基于自主研发的YOLO v3人工智能算法应用程序的智能手机的人工智能(AI)集成式基于智能手机的手持式检测平台,通过跟踪连续的荧光(FL)颜色变化,证明了对氟进行智能实时现场定量分析的可行性。在365nm激发下,由茜素红和柠檬酸水热合成的CDs在512nm处表现出适度的绿色发射和在620nm处表现出微弱的红色发射的双重发射。通过向CDs溶液中加入铝制备了具有明显聚集诱导红光增强和绿色发射猝灭的CDs@Al。令人鼓舞的是,由于固有比率荧光变化(I/I),CDs@Al响应不同浓度的氟,产生从红色到绿色的连续荧光颜色变化,基于R/G值与氟浓度之间的良好线性相关性,检测下限低至7.998μM,线性范围宽达150 - 1200μM。此外,通过基于AI集成的智能手机手持式检测平台,可以智能、快速且直接地分析自来水、牙膏和牛奶中的氟含量。热切希望我们的研究将为促进有效检测策略和扩展实际应用前景激发全新的视角。