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In situ dispersion of oil-based Ag nanocolloids by microdroplet coalescence and their applications in SERS detection

机译:用Microdroplet聚结的油基AG纳米胶体的原位分散及其在SERS检测中的应用

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Monodispersity and size uniformity of the nanoparticles coated on film-like nanosensors are critical for detection efficiency. However, there is limited controllability in the dispersion of these nanoparticles during their preparation and surface modification processes. Herein, we have developed a method for the in situ dispersion of surface-modified Ag nanoparticles by controlling microdroplet coalescence, and fabricated surface-enhanced Raman scattering (SERS) films by spin-coating the nano-Ag suspensions. In the dispersion process, a two-plate type microchannel was employed to promote microdroplet coalescence. Under the experimentally optimized conditions, about 88% surface-modified Ag nanoparticles with an average size of 16–19 nm could be in situ dispersed. Upon the deposition of the resulting nanosuspensions on PDMS film surfaces, the films could be used to detect a target analyte, rhodamine 6G (R6G), at a detection limit of approximately 1.0 × 10 ~(?8) mol L ~(?1) . The Ag-coated films were also confirmed to be stable and highly reusable.
机译:涂覆在膜状纳米调传料上的纳米颗粒的单分散性和尺寸均匀性对于检测效率至关重要。然而,在其制备和表面改性过程中,这些纳米颗粒的分散性具有有限的可控性。在此,我们通过控制微滴聚结,通过纺丝涂覆纳米Ag悬浮液来制定通过控制微滴聚结的原位分散的表面改性Ag纳米粒子的方法。在分散过程中,采用双板型微通道促进微量探测器聚结。在实验优化的条件下,约88%的表面改性Ag纳米颗粒,平均尺寸为16-19nm,可以原位分散。在PDMS膜表面上沉积所得纳米杆子,膜可用于检测靶分析物,罗丹明6G(R6G),在约1.0×10〜(α8)摩尔L〜(α1)的检测限时。还证实了Ag涂层薄膜是稳定且可重复使用的。

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