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用于寻找具有高相位灵敏度的全内反射的银纳米立方体聚集梯度材料。

Silver nanocube aggregation gradient materials in search for total internal reflection with high phase sensitivity.

作者信息

König Tobias A F, Ledin Petr A, Russell Michael, Geldmeier Jeffrey A, Mahmoud Mahmoud A, El-Sayed Mostafa A, Tsukruk Vladimir V

机构信息

School of Materials Science and Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332-0245, USA.

出版信息

Nanoscale. 2015 Mar 12;7(12):5230-9. doi: 10.1039/c4nr06430e.

Abstract

We fabricated monolayer coatings of a silver nanocube aggregation to create a step-wise optical strip by applying different surface pressures during slow Langmuir-Blodgett deposition. The varying amount of randomly distributed nanocube aggregates with different surface coverages in gradient manner due to changes in surface pressure allows for continuous control of the polarization sensitive absorption of the incoming light over a broad optical spectrum. Optical characterization under total internal reflection conditions combined with electromagnetic simulations reveal that the broadband light absorption depends on the relative orientation of the nanoparticles to the polarization of the incoming light. By using computer simulations, we found that the electric field vector of the s-polarized light interacts with the different types of silver nanocube aggregations to excite different plasmonic resonances. The s-polarization shows dramatic changes of the plasmonic resonances at different angles of incidence (shift of 64 nm per 10° angle of incidence). With a low surface nanocube coverage (from 5% to 20%), we observed a polarization-selective high absorption of 80% (with an average 75%) of the incoming light over a broad optical range in the visible region from 400 nm to 700 nm. This large-area gradient material with location-dependent optical properties can be of particular interest for broadband light absorption, phase-sensitive sensors, and imaging.

摘要

我们通过在缓慢的朗缪尔-布洛杰特沉积过程中施加不同的表面压力,制备了银纳米立方体聚集体的单层涂层,以创建一个逐步的光学带。由于表面压力的变化,不同表面覆盖率的随机分布的纳米立方体聚集体数量呈梯度变化,这使得在宽光谱范围内能够连续控制入射光的偏振敏感吸收。全内反射条件下的光学表征与电磁模拟相结合表明,宽带光吸收取决于纳米颗粒相对于入射光偏振的相对取向。通过计算机模拟,我们发现s偏振光的电场矢量与不同类型的银纳米立方体聚集体相互作用,激发不同的等离子体共振。s偏振在不同入射角下等离子体共振有显著变化(每10°入射角移动64 nm)。在低表面纳米立方体覆盖率(从5%到20%)下,我们观察到在400 nm至700 nm的可见光区域的宽光学范围内,入射光有80%(平均75%)的偏振选择性高吸收。这种具有位置依赖光学性质的大面积梯度材料对于宽带光吸收、相敏传感器和成像可能特别有意义。

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