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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Ultrasensitive Surface Acoustic Wave Detection of Collective Plasmonic Heating by Close-Packed Colloidal Gold Nanoparticles Arrays
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Ultrasensitive Surface Acoustic Wave Detection of Collective Plasmonic Heating by Close-Packed Colloidal Gold Nanoparticles Arrays

机译:紧密堆积的胶体金纳米颗粒阵列对等离子体总热的超灵敏表面声波检测

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摘要

A novel electrical detection method based on surface acoustic wave (SAW) is introduced to investigate the heat generation from a two-dimensional (2D) or three-dimensional (3D) close-packed gold nanoparticle (AuNP) array exhibiting tunable collective surface plasmon resonance (CSPR). We have found that the SAW sensor can detect the CSPR-induced photothermal heating effect. The conversion of absorbed light around the CSPR frequency into heat and subsequent transfer from the AuNP array to the lithium niobate (LiNbO3) substrate allows a dual delay-line SAW system to dynamically measure the resonant frequency change of the SAW oscillator coated with a 2D or 3D AuNP array. The experimental findings indicate that SAW detection provides an ultrasensitive (detection limit of temperature change <1 x 10~(-3) °C) electrical readout scheme for measuring the collective plasmonic heating of close-packed AuNP arrays with a linear dynamic range of incident light intensity and a designable CSPR spectral response.
机译:介绍了一种基于表面声波(SAW)的新型电检测方法,以研究二维(2D)或三维(3D)密堆积金纳米粒子(AuNP)阵列产生可调节的集体表面等离子体激元共振的热量产生(CSPR)。我们发现SAW传感器可以检测CSPR诱导的光热加热效果。将CSPR频率附近的吸收光转换成热量,然后从AuNP阵列传输到铌酸锂(LiNbO3)衬底,使双延迟线SAW系统可以动态测量涂有2D或2D涂层的SAW振荡器的谐振频率变化。 3D AuNP阵列。实验结果表明,声表面波检测提供了一种超灵敏(温度变化的检测极限<1 x 10〜(-3)°C)电读数方案,用于测量线性入射范围内的紧密排列的AuNP阵列的集体等离子体热光强度和可设计的CSPR光谱响应。

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