新型生物分子纳米光子器件、传感器、光子纳米晶体和生物芯片:在医疗诊断、环境和国防方面的进展

G. Giakos
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引用次数: 9

摘要

本实验研究探索胰岛素分子和其他蛋白质、酶和偶极离子单独或与胶体金纳米粒子和其他纳米粒子结合,通过提供独特的信号特性,如光增益、光整形和光控制能力,来调节和增强光信号的检测过程的潜力。本研究的实验结果表明胰岛素分子可以用来增强和放大入射光光子信号。在胰岛素分子中掺杂胶体金纳米颗粒,进一步观察到信号放大和增强。这些发现对新型生物分子光子材料、光学器件、传感器、纳米器件、治疗和成像系统的发展具有重要意义。
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Novel Biomolecular NanoPhotonic Devices, Sensors, Photonic Nanocrystals and Biochips: Advances in Medical Diagnostics, Environmental and Defense
This experimental study explores the potential of insulin molecules and other proteins, enzymes and dipolar ions, alone, or in conjunction with colloidal gold nanoparticles and other nanoparticles to modulate and enhance the detection process of optical signals by providing unique signal characteristics, such as optical gain, light shaping, and optical control capabilities. The experimental results of this study indicate that insulin molecules can be used to enhance and amplify incoming light photon signals. Further signal amplification and enhancement has been observed by doping insulin molecules with colloidal gold nanoparticles. These observations have significant implications on the development of novel biomolecular photonic materials, optical devices, sensors, nanodevices, therapeutical and imaging systems.
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