Truc Phuong Nguyen Tran, Dang Vinh Quang, Van Hieu Le, Bach Ta Ngoc, Khuyen Bui Xuan, Thi Ta Hanh Kieu, Ju Heongkyu, Phan Bach Thang, Thi Tran Nhu Hoa
Faculty of Materials Science and Technology, University of Science Ho Chi Minh City Vietnam
Vietnam National University Ho Chi Minh City Vietnam.
RSC Adv. 2022 Nov 1;12(48):31352-31362. doi: 10.1039/d2ra06074d. eCollection 2022 Oct 27.
Plasmonic sensors have broad application potential in many fields and are promising to replace most bulky sensors in the future. There are various method-based chemical reduction processes for silver nanoparticle production with flexible structural shapes due to their simplicity and rapidity in nanoparticle fabrication. In this study, self-assembled silver nanoparticles (Ag NPs) with a plasmon peak at 424 nm were successfully coated onto -NH-functionalized glass and optical fiber sensors. These coatings were rapidly produced two denaturation reactions in plasma oxygen, respectively, and an APTES ((3-aminopropyl)triethoxysilane) solution was shown to have high strength and uniformity. With the use of Ag NPs for surface-enhanced Raman scattering (SERS), excellent results and good stability with the detection limit up to 10 M for rhodamine B and 10 M for methylene blue, and a signal degradation of only ∼20% after storing for 30 days were achieved. In addition, the optical fiber sensor with Ag NP coatings exhibited a higher sensitivity value of 250 times than without coatings to the glycerol solution. Therefore, significant enhancement of these ultrasensitive sensors demonstrates promising alternatives to cumbersome tests of dye chemicals and biomolecules without any complicated process.
等离子体传感器在许多领域具有广泛的应用潜力,有望在未来取代大多数笨重的传感器。由于其在纳米颗粒制造方面的简单性和快速性,存在各种基于方法的化学还原过程来生产具有灵活结构形状的银纳米颗粒。在本研究中,在424nm处具有等离子体峰的自组装银纳米颗粒(Ag NPs)成功地涂覆在-NH官能化的玻璃和光纤传感器上。这些涂层分别在等离子体氧中通过两个变性反应快速制备,并且显示出APTES((3-氨丙基)三乙氧基硅烷)溶液具有高强度和均匀性。通过使用Ag NPs进行表面增强拉曼散射(SERS),获得了优异的结果和良好的稳定性,罗丹明B的检测限高达10 M,亚甲基蓝的检测限高达10 M,储存30天后信号降解仅约20%。此外,具有Ag NP涂层的光纤传感器对甘油溶液的灵敏度值比没有涂层时高250倍。因此,这些超灵敏传感器的显著增强展示了在无需任何复杂过程的情况下,有望替代繁琐的染料化学品和生物分子测试的方法。