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Anisotropically Shaped Magnetic/Plasmonic Nanocomposites for Information Encryption and Magnetic-Field-Direction Sensing

机译:各向异性形状的磁性/电磁纳米复合材料用于信息加密和磁场方向传感

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摘要

Instantaneous control over the orientation of anisotropically shaped plasmonic nanostructures allows for selective excitation of plasmon modes and enables dynamic tuning of the plasmonic properties. Herein we report the synthesis of rod-shaped magnetic/plasmonic core-shell nanocomposite particles and demonstrate the active tuning of their optical property by manipulating their orientation using an external magnetic field. We further design and construct an IR-photoelectric coupling system, which generates an output voltage depending on the extinction property of the measured nanocomposite sample. We employ the device to demonstrate that the nanocomposite particles can serve as units for information encryption when immobilized in a polymer film and additionally when dispersed in solution can be employed as a new type of magnetic-field-direction sensor.
机译:各向异性形状的等离激元纳米结构的方向的瞬时控制允许等离激元模式的选择性激发,并实现对等离激元性质的动态调整。本文中,我们报告了棒状磁性/等离子体核-壳纳米复合颗粒的合成,并通过使用外部磁场操纵其方向来证明其光学性能的主动调节。我们进一步设计并构建了一个红外光电耦合系统,该系统根据被测纳米复合材料样品的消光特性产生输出电压。我们使用该设备来证明,当纳米复合颗粒固定在聚合物膜中时,可以用作信息加密的单元;此外,当分散在溶液中时,可以用作新型的磁场方向传感器。

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