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基于铁电 BiOTe 的等离子体生物传感器用于超灵敏生物分子检测。

Ferroelectric BiOTe-Based Plasmonic Biosensor for Ultrasensitive Biomolecular Detection.

机构信息

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.

出版信息

Small. 2024 Aug;20(33):e2312175. doi: 10.1002/smll.202312175. Epub 2024 Mar 27.

Abstract

Ultrasensitive detection of biomarkers, particularly proteins, and microRNA, is critical for disease early diagnosis. Although surface plasmon resonance biosensors offer label-free, real-time detection, it is challenging to detect biomolecules at low concentrations that only induce a minor mass or refractive index change on the analyte molecules. Here an ultrasensitive plasmonic biosensor strategy is reported by utilizing the ferroelectric properties of BiOTe as a sensitive-layer material. The polarization alteration of ferroelectric BiOTe produces a significant plasmonic biosensing response, enabling the detection of charged biomolecules even at ultralow concentrations. An extraordinary ultralow detection limit of 1 fm is achieved for protein molecules and an unprecedented 0.1 fm for miRNA molecules, demonstrating exceptional specificity. The finding opens a promising avenue for the integration of 2D ferroelectric materials into plasmonic biosensors, with potential applications spanning a wide range.

摘要

超敏生物标志物检测,尤其是蛋白质和 microRNA 的检测,对疾病的早期诊断至关重要。尽管表面等离子体共振生物传感器提供了无标记、实时检测,但在检测仅在分析物分子上引起微小质量或折射率变化的低浓度生物分子时,仍具有挑战性。在这里,通过利用 BiOTe 的铁电特性作为敏感层材料,报道了一种超灵敏的等离子体生物传感器策略。铁电 BiOTe 的极化变化产生了显著的等离子体生物传感响应,使得即使在超低浓度下也能够检测带电生物分子。对于蛋白质分子,实现了非凡的超低检测限 1fm,对于 miRNA 分子,实现了前所未有的 0.1fm,表现出了出色的特异性。这一发现为将二维铁电材料集成到等离子体生物传感器中开辟了一条有前景的途径,潜在应用广泛。

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