Real-time sensing of trace TNT with acoustic surface wave method based on the modified interdigital

来源 :光电子快报(英文版) | 被引量 : 0次 | 上传用户:mcl8023
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
2,4,6-trinitrotoluene(TNT)has a strong explosive force and environmental toxicity,with the increasing threat of ter-rorist attacks worldwide,the high sensitivity detection of nitroaromatic explosives has become an urgent problem to be solved,and now the commonly used detection method is to use the optical principle,combined with large and expen-sive equipment to detect it.In order to detect the content of TNT in bad environment quickly and in real time,surface acoustic wave technology was proposed to detect different concentrations of TNT.In this paper,an ultra-sensitive TNT sensor was fabricated based on the surface acoustic wave technique.Specific detection of TNT was achieved by recognizing the shift of resonance frequency.Moreover,the whole process for the detection was done in 30 min,dedi-cating the rapid/real-time application of the sensor.This study focused on the transfer characteristics of resonance fre-quencies at different concentrations.The frequency of surface sound waves varies greatly at high concentration be-cause the modified IDT(interdigital transducers)electrodes were utilized,which is easy to work under different con-centrations of TNT.The proposed sensor has the advantages of real-time,simple and convenient detection,which pro-vides a valuable method for the real-time detection of TNT.
其他文献
基于步态特征的行为识别技术是一种新兴的人机交互技术,在安保监控、图像处理等许多领域正发挥着巨大作用.目前已经提出的各种行为识别的技术手段中,基于商用的WIFI设备的相关技术因其易于部署、设备成本不高、对应用环境要求低等优势而得以广泛应用.现有的步态识别研究只可以识别出人的步态,但无法根据步态识别年龄段.在本文中,探讨了菲涅尔区域理论,提出了一种基于WiFi物理层信息的年龄段识别方法,即利用步态识别年龄段.使用菲涅尔区模型来学习步态特征,首先将动作数据集进行去噪处理来收集信道状态信息(CSI).然后基于菲涅
针对并联三相逆变器间的交互影响问题,提出了基于相对增益矩阵原理的并联变换器交互影响分析方法.在考虑非线性因素影响的基础上,建立了αβ坐标系下包含附加有源阻尼控制的双闭环控制逆变器传递函数模型,构建了基于下垂控制的LCL型逆变器并联系统等效模型,结合相对增益矩阵原理分析并联逆变器间交互影响程度,揭示了并联系统交互运行的相关规律.最后,在MATLAB/Simulink仿真平台中搭建了多三相逆变器并网模型,并通过仿真和实验验证了理论分析的正确性和交互影响分析方法的有效性.研究结果表明:多三相并网逆变器间交互影响
光子晶体波导具有传输速率大、损耗率低、稳定性好等特点,在光集成、光信息传输等领域具有十分广阔的应用前景.然而作为亚波长波导,由于存在衍射极限,光子晶体波导的出射光会发散到各个方向,影响出射光集束.为解决光子晶体波导出射端光场控制问题,提出了一种新型的二维正方晶格光子晶体出射光集束的结构.该结构通过在波导出射端表面引入锯齿口结构和多支路通道,大幅度提升了出射光的辐射距离.利用时域有限差分法分析结果表明,具有3个锯齿口和2条支路的正方晶格光子晶体能够实现最佳的出射光集束,辐射距离高达200 μm,该辐射距离约
针对在基于DWT-DCT进行数字音频水印嵌入,在已嵌入水印的音频受到噪声干扰、低通滤波、重采样等常见的攻击时,其鲁棒性差以及安全性弱的情况.提出了一种新的的盲水印嵌入算法.该算法对原始音频信号完成分帧预处理后,对每帧信号应用离散小波变换(DWT),选取三级低频分量进行离散余弦变换(DCT),先把得到的一维信号平均分解为两个片段,然后进行奇异值分解(SVD),根据奇异值的特性将水印信息嵌入到奇异矩阵.在水印图像的预处理上,采用了以Arnold变换为基础,将水印图像降维,方便水印信息的嵌入.并且通过添加密匙来
A proper excitation wavelength and strong hot-spot effect are of great importance for the application of sur-face-enhanced Raman spectroscopy(SERS)in the field of biochemistry.As a popular SERS substrate,noble metal nanoparticles dimer is analyzed systema
期刊
Silica planar lightwave circuit(PLC)devices can offer great potential for quantum key distribution(QKD)with bene-fits of low-loss,low-cost,large-scale integration,miniaturization,stability and mass production.A complementary encoding-decoding system for Q
期刊
Novel and simplified bi-layer top-emitting white organic light emitting diodes(OLEDs)with dual co-host emitters have been simulated and analyzed.They consist of yellow-green emitting layer(EML)as electron transport layer(ETL)and blue EML as hole transport
期刊
In this work,the light coupling efficiency of organic light-emitting diode(OLED)and polymer optical waveguide in-tegrated device was improved by the grating coupler.To maximize light coupling efficiency,the grating coupler was optimized by finite-differen
期刊
Energy transfer process and direct charge trapping are two main emission mechanisms in phosphorescent organic light-emitting diodes(PhOLEDs)with host-guest system.Here,to investigate the relationship between luminescence mechanism and performances in host
期刊
Design analysis of high core count(36-core,37-core)un-coupled multicore fiber(MCF)using the heterogeneous core has been proposed,to achieve the high spatial efficiency and ultra-low crosstalk(~-81 dB/100 km)under the limited cladding diameter of 300 μm.To
期刊