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Effect of different plasmonic nanoparticles on the reactive shift of nanoplasmonic-whispering gallery mode hybrid microresonator

机译:不同等离子体纳米颗粒对纳米升声型画廊模式杂交微生物反应性移位的影响

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Label-free detection of single protein markers (molecules) of diseases, present in bodily fluids at ultra-low concentration is one of the primary interests of researchers working in the field of Biosensing. By early-stage detection of protein markers, many severe diseases can be cured. Nanoplasmonic-whispering gallery mode (WGM) hybrid microresonators work as highly efficient biosensing device which can be used to detect single protein molecules in real-time. In the hybrid microresonator, nanoplasmonic particles are used with the bare WGM microresonator. Here, we report (i) theoretical response of the nanoplasmonic-WGM hybrid microresonator in terms of frequency shift (reactive shift) using different nanoplasmonic particles, (ii) a comparative study of the responses of bare WGM and nanoplasmonic-WGM hybrid microresonators and (iii) experimental setups for detection of single protein molecules in real-time, present in our laboratory.
机译:在超低浓度下存在于体液中的单一蛋白质标记物(分子)的无标记检测是在生物传感领域工作的研究人员的主要利益之一。 通过蛋白质标记的早期检测,许多严重疾病可以固化。 纳米升声潜在的画廊模式(WGM)混合微生物用作高效的生物传感装置,可用于实时检测单蛋白质分子。 在杂交微生物中,纳米粒子颗粒与裸WGM微生物一起使用。 在这里,我们在使用不同纳米粒子颗粒的频移(反应移位)方面报告(i)纳米型-WGM混合微生物的理论响应,(ii)裸动力学和纳米型-WGM杂交微生物和( iii)实时检测单一蛋白质分子的实验性设置,在我们的实验室中存在。

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