首页> 外文期刊>IEEE sensors journal >Development of multilayer fluorescent thin film chemical sensors using electrostatic self-assembly
【24h】

Development of multilayer fluorescent thin film chemical sensors using electrostatic self-assembly

机译:利用静电自组装技术开发多层荧光薄膜化学传感器

获取原文
获取原文并翻译 | 示例
           

摘要

Electrostatic layer-by-layer (LBL) self-assembly is an attractive method for depositing films, composed of charged molecules, on a wide variety of charged substrates. This report describes progress toward development of LBL as a platform for fabrication of fluorescent sensors based on nanocomposite multilayer ultrathin films. This study had two main features: 1) assessment of methods for immobilizing indicators using LBL and 2) demonstration of the versatility of these methods for application to templates of specific interest for optical sensing. Ruthenium-based oxygen indicators were used as model fluorophores. Three techniques for building fluorescent sensing films were considered, including direct electrostatic assembly of charged fluorescent indicators, fluorophore:polyion premixing, and conjugation of indicator to polyelectrolyte. Dye-conjugated polyion films exhibit superior linearity in growth, stability, and resistance to desorption during the assembly process. Multilayer fluorescent films containing bis(2, 2'-bipyridine) 4'-methyl-4-carboxybipyridine-ruthenium-N-succinimidyl-ester bis(hexafluoro-phosphate) (Ru(bpy)2(mcbpy)) conjugated to poly(allylamine hydrochloride) (PAH) were deposited onto glass slides, fiber-optics and polymer microspheres. Additional layers of fluorescein 5(6)-isothiocyanate (FITC) conjugated to PAH were deposited on the same templates to serve as an internal reference and allow ratiometric measurements. The fluorescence properties of films on the different substrates were similar, demonstrating that the deposition process is versatile and generally portable between templates. In all cases, the films retained oxygen sensitivity and did not exhibit significant self quenching. This work provides a basis for development of sensors for numerous biomedical sensing applications, including fiber-optic probes designed for research and clinical measurements, sensing films on tissue culture substrates, and implantable microanoparticle based sensors for in vitro or in vivo monitoring.
机译:静电逐层(LBL)自组装是一种吸引人的方法,用于在各种带电基板上沉积由带电分子组成的薄膜。该报告描述了作为基于纳米复合多层超薄膜的荧光传感器制造平台的LBL的开发进展。这项研究具有两个主要特征:1)使用LBL固定指标的方法的评估; 2)证明这些方法适用于光学传感特别感兴趣的模板的多功能性。基于钌的氧指示剂用作模型荧光团。考虑了三种构建荧光传感膜的技术,包括带电的荧光指示剂的直接静电组装,荧光团:聚离子的预混合以及指示剂与聚电解质的缀合。染料共轭聚离子薄膜在组装过程中在生长,稳定性和抗脱附性方面表现出优异的线性。包含与聚烯丙胺共轭的双(2,2'-联吡啶)4'-甲基-4-羧基联吡啶-钌-N-琥珀酰亚胺酯-双(六氟磷酸盐)(Ru(bpy)2(mcbpy))的多层荧光膜盐酸盐(PAH)沉积在载玻片,光纤和聚合物微球上。与PAH共轭的荧光素5(6)-异硫氰酸酯(FITC)的其他层沉积在同一模板上,以用作内部参考并进行比率测量。不同基板上薄膜的荧光性质相似,这表明沉积过程是通用的,并且通常在模板之间可移植。在所有情况下,薄膜均保持氧敏感性,并且没有表现出明显的自猝灭。这项工作为开发用于多种生物医学传感应用的传感器提供了基础,这些传感器包括为研究和临床测量而设计的光纤探头,组织培养基质上的传感膜以及用于体外或体内监测的可植入的基于微米/纳米颗粒的传感器。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号