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A multicolor-SERS dual-mode pH sensor based on smart nano-in-micro particles

机译:基于智能纳米微粒的多色SERS双模pH传感器

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摘要

A multicolor and surface-enhanced Raman scattering (SERS) dual-mode pH sensing method based on micro-particles was proposed, which combined the advantages of high sensitivity of SERS and convenience of col-orimetric visualization. Polyethylene glycol diacrylate microgels were fabricated using a T-channel microfluidic chip, and the polyaniline-coated gold nanorods were encapsulated in the microgels. Based on the nano-in-micro particles, pH monitoring within the range of 1.0-12.0 was achieved through multicolor and SERS dual-mode sensing. The protonation and deprotonation of polyamline led to changes in Raman signal intensity and color of microparticles. The pH changes during cell culture were successfully monitored by SERS quantification and microscopic images of the microparticles. And the microparticles exhibit excellent stability, reversibility, bio-compatibility, anti-interference ability and signal enhancement ability. The pH sensing method has a wide pH detection range and is especially suitable for pH monitoring in microsystems and micro-environments.
机译:提出了一种基于微粒的多色表面增强拉曼散射(SERS)双模pH传感方法,该方法结合了SERS的高灵敏度和比色可视化的优点。使用T通道微流控芯片制造聚乙二醇二丙烯酸酯微凝胶,并将聚苯胺涂层的金纳米棒封装在微凝胶中。基于纳米微粒,通过多色和SERS双模感应实现了pH值在1.0-12.0范围内的监测。聚氨胺的质子化和去质子化导致拉曼信号强度和微粒颜色的变化。通过SERS定量和微粒的显微图像成功监测了细胞培养过程中的pH变化。并且该微粒表现出优异的稳定性,可逆性,生物相容性,抗干扰能力和信号增强能力。 pH传感方法具有广泛的pH检测范围,尤其适合在微系统和微环境中进行pH监测。

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