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金纳米棒作为等离子体纳米换能器:距离相关折射率灵敏度。

Gold nanorods as plasmonic nanotransducers: distance-dependent refractive index sensitivity.

机构信息

Department of Mechanical Engineering and Materials Science, Washington University in St. Louis, St. Louis, Missouri 63130, United States.

出版信息

Langmuir. 2012 Dec 18;28(50):17435-42. doi: 10.1021/la3034534. Epub 2012 Dec 4.

Abstract

Owing to the facile tunability of the localized surface plasmon resonance wavelength (LSPR) and large refractive index sensitivity, gold nanorods (AuNR) are of high interest as plasmonic nanotransducers for label-free biological sensing. We investigate the influence of gold nanorod dimensions on distance-dependent LSPR sensitivity and electromagnetic (EM) decay length using electrostatic layer-by-layer (LbL) assembly of polyelectrolytes. The electromagnetic decay length was found to increase linearly with both nanorod length and diameter, although to variable degrees. The rate of EM decay length increase with nanorod diameter is significantly higher compared to that of the length, indicating that diameter is a convenient handle to tune the EM decay length of gold nanorods. The ability to precisely measure the EM decay length of nanostructures enables the rational selection of plasmonic nanotransducer dimensions for the particular biosensing application.

摘要

由于局域表面等离子体共振波长(LSPR)的易于调节性和大折射率灵敏度,金纳米棒(AuNR)作为等离子体纳米换能器在无标记生物传感中受到高度关注。我们研究了金纳米棒尺寸对距离相关 LSPR 灵敏度和电磁(EM)衰减长度的影响,方法是使用聚电解质的静电层层(LbL)组装。发现电磁衰减长度随纳米棒的长度和直径线性增加,尽管程度不同。与长度相比,纳米棒直径的 EM 衰减长度增加的速率要高得多,这表明直径是调节金纳米棒的 EM 衰减长度的便捷方法。精确测量纳米结构的 EM 衰减长度的能力使我们能够为特定的生物传感应用合理选择等离子体纳米换能器的尺寸。

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