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1.
声表面波(Surface Acoustic Wave,简称SAW)化学传感器是一种可用于现场实时检测的气敏传感器,具有体积小、选择性好、信号响应快等特点,其中敏感膜材料是决定其性能的关键因素。本文主要介绍了传感器的工作原理,敏感膜与吸附气体之间的作用力,对膜材料的选择及性能影响因素进行了详细阐述。重点介绍了现有膜材料的分类及应用,主要有有机聚合物膜、无机物膜、超分子膜和复合膜,比较了它们的优缺点。对现有成果进行总结,同时提出了传感器膜材料的发展趋势。  相似文献   

2.
压电化学传感器是一类重要的质量敏感型检测器,由于具有体积小、灵敏度高、响应时间快等优越性而具有极好的应用前景.本文介绍了体声波化学传感器(QCM)和表面声波化学传感器(SAW)的原理,概述了最近几年的应用情况及提高灵敏度的方法,并对其发展趋势进行了展望.  相似文献   

3.
本文简要介绍了表面等离子体波共振技术的基本原理,重点综述了该技术在气体检测研究中的应用。被检测的气体包括:常见的易燃易爆和有毒气体、有机气体及蒸汽等。通过敏感膜材料的选择和优化、检测装置的改进、制膜方式和工艺条件、薄膜厚度的调整,来提高检测结果的灵敏度、选择性、可逆性、响应时间、脱附时间和重现性等重要参数。将表面等离子体波共振技术和其它技术联用可以在提高检测灵敏度的同时,实现对气体的远程监测。 主要介绍了此技术和光纤技术的联用,此外还讨论了环境特别是湿度和温度对检测结果的影响。  相似文献   

4.
高灵敏和选择性的气体传感器对于实时监测大气中有毒有害气体和早期的疾病诊断具有重要的意义。目前,传统的气敏材料仍然存在着许多问题亟待解决,例如:选择性差、检测极限不够低、使用寿命短等。作为一种多孔的配位聚合物,金属有机框架材料(MOFs)由于其超高的比表面积和较大的孔隙率在气体传感器领域已经得到广泛的应用。利用MOFs自身或者由它们衍生的不同纳米结构的金属氧化物可以提升气体传感器的灵敏度和选择性,为制备新型高性能的气体传感器提供了新的思路和方向。本文结合金属氧化物半导体(MOS)的气敏机理,综述了不同结构的MOFs及其衍生的金属氧化物在电阻式气体传感器领域的研究进展,并对其应用前景和发展方向作出了展望。  相似文献   

5.
石英晶体微天平(quartz crystal microbalance,QCM)是一种对质量变化敏感的器件,具有灵敏度高、成本低廉、操作简单、可实时在线检测等优点,在气体传感领域受到了广泛关注。敏感材料是石英晶体微天平气体传感器的关键组成部分,本文综述了不同敏感材料包括有机聚合物、超分子化合物、离子液体和分子液体以及近年来备受关注的纳米材料修饰的QCM对特定气体传感检测的研究现状,详细介绍了纳米材料为敏感膜的QCM气体传感器对不同气体传感检测的研究现状及相关敏感机理。最后,在国内外研究现状的基础上,展望了敏感材料的发展前景。QCM作为一种成本低廉、操作方便、测量精度高的气体传感检测器件,将会有更加广阔的应用前景。  相似文献   

6.
采用溶胶-凝胶法制备了In2O3纳米粉体, 通入NH3进行反应得到了中间产物InN基底材料, 再通过原位氧化过程最终获得了InN-In2O3纳米复合材料, 并利用X射线衍射仪(XRD)、 扫描电子显微镜(SEM)、 透射电子显微镜(TEM)、 X射线光电子能谱仪(XPS)等对所制备材料的组成、 形貌及结构等进行了表征测试. 结果表明, 该纳米复合材料呈瓶状结构. 气敏性能测试结果表明, 其在较低工作温度(75 ℃)下对甲醛气体的检出限可低至ppb级(1 ppb=1.3 μg/m3), 具有灵敏度较高(对0.13 mg/m3即100 ppb甲醛的灵敏度为12)、 响应时间较短(2 s)以及选择性和稳定性较强的优良性能. 在湿度对传感器灵敏度的影响测试中, 由于甲醛的水溶特性, 随着湿度的变化, 传感器的灵敏度发生变化. 在低甲醛浓度时湿度的变化对灵敏度的影响较大, 高浓度时影响反而较小.  相似文献   

7.
分子印迹聚合物与磁性纳米材料结合,制备成磁性分子印迹纳米敏感膜,这样做不仅可以发挥分子印迹聚合材料的优势,而且磁性纳米粒子可有效提高电化学传感器的灵敏度、稳定性以及生物相容性等。近年来将磁性分子印迹纳米敏感膜应用于电化学传感器制备成的磁性分子印迹电化学传感器得到了较快的发展。本文就近5年来磁性分子印迹电化学传感器敏感膜所用的磁性材料、敏感膜制备方法以及磁性分子印迹电化学传感器在环境、食品以及临床方面的应用进行了综述总结。  相似文献   

8.
具有体积小、功耗低、灵敏度高、硅工艺兼容性好等优点的金属氧化物半导体(MOS)气体传感器现已广泛地应用于军事、科研和国民经济的各个领域。然而MOS传感器的低选择性阻碍了其在物联网(IoT)时代的应用前景。为此,本文综述了解决MOS传感器选择性的研究进展,主要介绍了敏感材料性能提升、电子鼻和热调制三种改善MOS传感器选择性的技术方法,阐述了三种方法目前所存在的问题及其未来的发展趋势。同时,本文还对比介绍了机器嗅觉领域主流的主成分分析(PCA)、线性判别分析(LDA)和神经网络(NN)模式识别/机器学习算法。最后,本综述展望了具有数据降维、特征提取和鲁棒性识别分类性能的卷积神经网络(CNN)深度学习算法在气体识别领域的应用前景。基于敏感材料性能的提升、多种调制手段与阵列技术的结合以及人工智能(AI)领域深度学习算法的最新进展,将会极大地增强非选择性MOS传感器的挥发性有机化合物(VOCs)分子识别能力。  相似文献   

9.
通过一步水热法合成了钨酸铋/还原氧化石墨烯(Bi_(2)WO_(6)/rGO)复合材料,并基于此材料制备了NO_(2)气体传感器。用X射线衍射光谱、拉曼光谱、扫描电镜和透射电镜对复合材料的晶相、形貌和微观结构进行的表征表明,Bi_(2)WO_(6)和rGO成功复合,且获得了具有花状超结构的Bi_(2)WO_(6)/rGO复合材料。将复合材料负载到叉指电极上制备了NO_(2)气体传感器,利用自制的气敏测试装置对气体传感器的气敏性能进行了系统测试。结果表明,Bi_(2)WO_(6)/rGO复合气体传感器在室温下对NO_(2)气体具有较高选择性、较高响应值和较好长期稳定性,对质量浓度为47.03 mg/m^(3)NO_(2)的响应值为28.35%,是纯rGO气体传感器的3.5倍,响应时间为55 s,恢复时间为549 s,对NO_(2)的检出限为62μg/m^(3)。  相似文献   

10.
在弱酸性条件下,以邻氨基酚为单体交联剂,白藜芦醇为模板分子,采用循环伏安法在玻碳电极上电聚合成白藜芦醇分子印迹聚邻氨基酚敏感膜分子印迹传感器,并对该传感器的结构、选择性、灵敏度、稳定性、线性范围等性能进行了研究.结果表明,该传感器对白藜芦醇具有良好的选择性和敏感度,白藜芦醇浓度分别在2.0×10-8~7.0×10-7m...  相似文献   

11.
A C60‐polyphenylacetylene (C60‐PPA) and polyvinylpyrrolidone (PVP) coated two‐channel surface acoustic wave (SAW) crystal gas sensor with a homemade computer interface for data acquisition and data processing was developed and employed to detect carbon disulfide (CS2) and methanol (CH3OH) vapors in polymer plants. The frequency of surface acoustic wave oscillator decreases due to the adsorption of gas molecules on the coated materials of the SAW sensor. Six coating materials (C60‐PPA, nafion, PPA, crytand [2,2], polyethene glycol and PVP) were used to adsorb and detect carbon disulfide and methanol gases. Adsorption of all the six coating materials to CS2 and CH3OH was found to be physical adsorption. The C60‐PPA coated SAW detector exhibited more sensitive to CS2 than the other coating materials. In contrast, the PVP coated SAW detector was more sensitive to CH3OH than the other coating materials. With the two‐channel SAW sensor, the C60‐PPA coated SAW showed a good detection limit of 0.4 ppm and good reproducibility with RSD of 3.37 % (n=10) for CS2. Similarly, the PVP coated SAW also showed a good detection limit of 0.05 ppm and good reproducibility, with RSD of 0.86 % (n=10) for CH3OH. The interference effect of other organic molecules on the SAW detection system was negligible, except for the irreversible adsorption of C60‐PPA to propylamine. The frequency signals from the two‐channel SAW sensor array C60‐PPA and PVP coatings were processed by a back‐propagation artificial neural network (BPN) and multiple regression analysis (MRA). Thus a two‐channel SAW sensor array with BPN and MRA has been successfully applied for the qualitative and quantitative analyses of CS2 and CH3OH in mixtures.  相似文献   

12.
用环氧氯丙烷为交联剂合成了刚果红(CR)交联聚乙烯醇(PVA)CR-PVA敏感试剂.用匀胶机将其做成薄膜固定在钾离子交换玻璃光波导表面,研制出一种光波导氯化氢气体传感器.CR-PVA薄膜碱式结构的最大吸收波长在600 nm以下,对波长为632.8 nm的激光吸收很弱;薄膜与酸性气体发生反应后强烈吸收波长在632.8 nm附近的导波或消失波;检测输出光强度的变化,即能够测出酸性气体浓度.测试结果表明,本传感器对低浓度HCl气体有快速响应,且对1.6~192 mg/m3范围内有良好的线性响应;SO2、NO2气体的浓度大于18000 mg/m3时才有响应,而对于高、低浓度H2S气体均无响应.  相似文献   

13.
Quartz crystal microbalance (QCM) gas sensors based on polymeric material were fabricated and their gas response characteristics were examined for four simulant gases of chemical agents, which were dimethyl methyl phosphonate (DMMP), N,N-dimethylacetamide (DMA), 1,5-dichloropentane (DCP) and dichloroethane (DCE). For the selection of appropriate coating materials, both principal component analysis (PCA) and hierarchical cluster methods were applied to a data set collected from 15 QCM sensors for 12 analytes. Four appropriate coating materials were selected after optimizing the correlation between the 15 coating materials and the first four principal component (PC) factors. The four chosen polymers were used as sensitive component for a sensor array, and then PCA is adapted to classify four simulant gases. The results show that the QCM sensor array has high sensitivity and selectivity to four chemical agents.  相似文献   

14.
An enhancement of selectivity of semiconductor gas sensors, based on nanocrystalline SnO2 is reported. It is shown that modification of the surface of crystallites, forming thick films of conductive sensor materials, with catalytic clusters of gold or oxides of ruthenium, nickel, copper and iron allows selective response of sensors to different gases, such as carbon monoxide, ammonia, hydrogen sulfide, nitrogen dioxide and acetone vapor. These selective sensor responses can be obtained in the ranges of gas concentrations close to or below threshold limit values while the working temperature of sensors can be kept below 300 °C. The described approach for modification of selectivity of sensor materials could be used as perspective route in developingselective gas sensors. These results allow us to propose application of obtained materials in electronic nose sensor systems.  相似文献   

15.
We describe a novel and generally applicable approach for creating voids in films deposited on the surface of solid substrates. Such films are advantageous when a quartz crystal microbalance (QCM) is the basis of a sensor. We show that films with large void volumes produce more sensitive sensors than with the original film. Poly(methylmethacrylate) (PMMA) was used as the polymer layer deposited on a quartz crystal microbalance (QCM) to demonstrate our technique for the model system of water vapor analysis in flowing nitrogen gas. A film of pure PMMA on a QCM is a sensor for water vapor in a gas phase. A more sensitive sensor was created by dip coating QCM crystals into solutions containing mixtures of PMMA and poly(d,l-lactide) (PDLL) and then evaporating the solution films on the QCM crystals to form mixed polymer films of varying PDLL content. The PDLL was then removed from the mixed polymer films by exposure to a NaOH solution to form pure PMMA films having various void volumes. A leached PMMA film that originally contained 50% by weight PDLL had a 3.7 times larger QCM sensitivity for water vapor than a pure PMMA film.  相似文献   

16.
An analysis of the response of surface acoustic wave sensors coated with polymer film based on new coating deposition (self-assemble and molecularly imprinted technology) is described and the response formulas are hence deduced. Using the real part of shear modulus, the polymer can be classified into three types: glassy film, glassy-rubbery film and rubbery film. Experimental results show that the attenuation response is in better consistence with the simulation than in Martin's theory, but the velocity response does not accord with the calculation exactly. Maybe it is influenced by the experimental methods and environment. In addition, simulations of gas sorption for polymer films are performed. As for glassy film, the SAW sensor response increases with increasing film thickness, and the relationship between the sensor response and the concentration of gas is pretty linear, while as for glassy-rubbery film and rubbery film, the relationship between the sensor sensitivity and concentration of gas is very complicated. The ultimately calculated results indicate that the relationship between the sensor response and frequency is not always linear due to the viscoelastic properties of the polymer.  相似文献   

17.
He W  Liu Z  Du X  Jiang Y  Xiao D 《Talanta》2008,76(3):698-702
A new material-poly{methyl[3-(2-hydroxy-3,4-difluoro)phenyl]propyl siloxane}(PMDFPS) sensitive to toxic organophosphate vapor was synthesized with 2,3-difluorophenol, allyl bromide and poly (methyl hydrosiloxane) as raw materials, via O-alkylation, Claisen rearrange reaction and hydrosilylation reaction. This novel material was then coated on a quartz crystal microbalance (QCM) to investigate its gas sensitive properties to the nerve agent simulant dimethyl methylphosphonate (DMMP) vapor, as well as known interfering vapors. When tested with competing vapors, the sensor was more than 10 times sensitive to DMMP than to other interfering vapors. Thus, high selectivity of poly{methyl[3-(2-hydroxy-3,4-difluoro)phenyl]propyl siloxane} to DMMP was demonstrated. The poly{methyl[3-(2-hydroxy-3,4-difluoro)phenyl]propyl siloxane}-QCM sensor responded linearly to DMMP vapor with a slope of 14 Hz/ppm in the 1-50 ppm range with a detection limit of 0.21 ppm (S/N=3).  相似文献   

18.
Summary A surface acoustic wave (SAW) gas sensor for NO2 has been developed in which a chemically immobilized copper(II)-phthalocyanine layer was applied using 3-aminopropyl triethoxysilane as a spacer instead of a sublimated layer. The response time is shortened and the sensitivity is decreased in this way. It is expected that response time and selectivity will improve even more when true monolayers are obtained instead of the observed layers containing the polymerized spacer.
SAW-Gassensor fur NO2. Chemisch immobilisierte Phthalocyanine als chemisches Interface
  相似文献   

19.
A novel surface acoustic wave-interdigitated array electrode (SAW-IDA) ammonia gas sensor is proposed. A gas-permeable membrane is employed to separate the buffer solution in the inner cell of the gas-sensing probe from the sample solution in the detection cell. The response of the IDA conductive electrodes is based on the impedance change of the buffer solution during ammonia adsorption. Therefore, this gas sensor overcomes the influence of water vapour in the conventional film-coated SAW gas sensor and can be used for the detection of gases in aqueous solutions. The ammonia sensor exhibits a favourable frequency response to 5 × 10−7−1 × 10−3 mol/1 ammonia. The optimal buffer composition and probe parameters have been determined. Dynamic range, response time, selectivity, and temperature drift are discussed. The ammonia sensor was also applied to the determination of serum ammonia. Results were in good agreement with those from the conventional enzymatic-spectro-photometric method.  相似文献   

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