School of Physics, Trinity College Dublin, Ireland .
ACS Nano. 2010 Jan 26;4(1):55-64. doi: 10.1021/nn9016235.
Solution phase triangular silver nanoplates (TSNP) with versatile tunability throughout the visible-NIR wavelengths are presented as highly sensitive localized surface plasmon refractive index sensors. A range of 20 TSNP solutions with edge lengths ranging from 11 to 200 nm and aspect ratios from 2 to 13 have been studied comprehensively using AFM, TEM, and UV-vis-NIR spectroscopy. Studies of the localized surface plasmon resonance (LSPR) peak's sensitivity to refractive index changes are performed using a simple sucrose concentration method whereby the surrounding refractive index can solely be changed without variation in any other parameter. The dependence of the TSNP localized surface plasmon resonance (LSPR) peak wavelength lambda(max) and its bulk refractive index sensitivity on the nanoplate's structure is determined. LSPR sensitivities are observed to increase linearly with lambda(max) up to 800 nm, with the values lying within the upper limit theoretically predicted for optimal sensitivity, notwithstanding any diminution due to ensemble averaging. A nonlinear increase in sensitivity is apparent at wavelengths within the NIR region with values reaching 1096 nm.RIU(-1) at lambda(max) 1093 nm. Theoretical studies performed using a simple aspect ratio dependent approximation method and discrete dipole approximation methods confirm the dependence of the LSPR bulk refractive index sensitivity upon the TSNP aspect ratio measured experimentally. These studies highlight the importance of this key parameter in acquiring such high sensitivities and promote these TSNP sols for sensing applications at appropriate wavelengths for biological samples.
提出了具有广泛可调谐性的溶液相三角银纳米板(TSNP),可作为对折射率高度敏感的局域表面等离子体共振传感器。使用 AFM、TEM 和 UV-vis-NIR 光谱学对边长为 11 至 200nm 且纵横比为 2 至 13 的 20 种 TSNP 溶液进行了全面研究。通过一种简单的蔗糖浓度方法研究了局域表面等离子体共振(LSPR)峰对折射率变化的灵敏度,其中可以仅改变周围折射率,而不会改变任何其他参数。确定了 TSNP 局域表面等离子体共振(LSPR)峰波长 lambda(max)和其体折射率灵敏度对纳米板结构的依赖性。观察到 LSPR 灵敏度随 lambda(max)线性增加至 800nm,尽管由于集合平均而有所减少,但值仍处于理论预测的最佳灵敏度上限内。在近红外区域的波长内,灵敏度明显呈非线性增加,在 lambda(max)为 1096nm 时达到 1096nm.RIU(-1)。使用简单的纵横比相关近似方法和离散偶极子近似方法进行的理论研究证实了 LSPR 体折射率灵敏度与实验测量的 TSNP 纵横比的依赖性。这些研究强调了在获得如此高灵敏度时此关键参数的重要性,并为在适当的生物样品波长下进行传感应用推广了这些 TSNP 溶胶。