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首页> 外文期刊>Journal of nanoscience and nanotechnology >Porous Silicon Platform for Optical Detection of Functionalized Magnetic Particles Biosensing
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Porous Silicon Platform for Optical Detection of Functionalized Magnetic Particles Biosensing

机译:用于功能化磁性粒子生物传感光学检测的多孔硅平台

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摘要

The physical properties of porous materials are being exploited for a wide range of applications including optical biosensors, waveguides, gas sensors, micro capacitors, and solar cells. Here, we review the fast, easy and inexpensive electrochemical anodization based fabrication porous silicon (PSi) for optical biosensing using functionalized magnetic particles. Combining magnetically labeled biomolecules with PSi offers a rapid and one-step immunoassay and real-time detection by magnetic manipulation of superparamagnetic beads (SPBs) functionalized with target molecules onto corresponding probe molecules immobilized inside nano-pores of PSi. We first give an introduction to electrochemical and chemical etching procedures used to fabricate a wide range of PSi structures. Next, we describe the basic properties of PSi and underlying optical scattering mechanisms that govern their unique optical properties. Finally, we give examples of our experiments that demonstrate the potential of combining PSi and magnetic beads for real-time point of care diagnostics.
机译:多孔材料的物理特性正被广泛应用,包括光学生物传感器,波导,气体传感器,微型电容器和太阳能电池。在这里,我们回顾了基于功能化磁性粒子的光学生物传感的快速,简便和廉价的电化学阳极氧化制造多孔硅(PSi)。磁性标记的生物分子与PSi的结合提供了一种快速且一步一步的免疫测定和实时检测方法,方法是将目标分子功能化的超顺磁珠(SPB)磁化到固定在PSi纳米孔内的相应探针分子上,进行磁操作。我们首先介绍用于制造各种PSi结构的电化学和化学蚀刻程序。接下来,我们描述PSi的基本特性以及控制其独特光学特性的潜在光学散射机制。最后,我们提供了一些实验示例,这些示例演示了将PSi和磁珠结合用于实时即时诊断的潜力。

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