Wang Zheng, Liu Lixuan, Zhai Kun, Nie Anmin, Xiang Jianyong, Mu Congpu, Wen Fusheng, Wang Bochong, Shu Yu, Xue Tianyu, Liu Zhongyuan
Center for High Pressure Science, State Key Lab of Metastable Materials Science and Technology, Yanshan University, Qinhuangdao, 066004, China.
Institute of Quantum Materials and Devices, School of Electronics and Information Engineering, Tiangong University, Tianjin, 300387, China.
Small. 2023 Nov;19(45):e2303026. doi: 10.1002/smll.202303026. Epub 2023 Jul 2.
Plasmonic biosensing is a label-free detection method that is commonly used to measure various biomolecular interactions. However, one of the main challenges in this approach is the ability to detect biomolecules at low concentrations with sufficient sensitivity and detection limits. Here, 2D ferroelectric materials are employed to address the issues with sensitivity in biosensor design. A plasmonic sensor based on Bi O Se nanosheets, a ferroelectric 2D material, is presented for the ultrasensitive detection of the protein molecule. Through imaging the surface charge density of Bi O Se, a detection limit of 1 fM is achieved for bovine serum albumin (BSA). These findings underscore the potential of ferroelectric 2D materials as critical building blocks for future biosensor and biomaterial architectures.
表面等离子体激元生物传感是一种无标记检测方法,常用于测量各种生物分子相互作用。然而,这种方法的主要挑战之一是能否以足够的灵敏度和检测限检测低浓度生物分子。在此,二维铁电材料被用于解决生物传感器设计中的灵敏度问题。提出了一种基于二维铁电材料BiOSe纳米片的表面等离子体激元传感器,用于蛋白质分子的超灵敏检测。通过对BiOSe表面电荷密度进行成像,实现了对牛血清白蛋白(BSA)1飞摩尔的检测限。这些发现突出了铁电二维材料作为未来生物传感器和生物材料架构关键组成部分的潜力。