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1.
在室温下,以硝酸银为银源,抗坏血酸为还原剂,通过调节表面活性剂聚乙烯吡络烷酮的浓度,实现对花状银纳米颗粒的可控制备。利用扫描电子显微镜、原子力显微镜、X射线衍射和X射线能谱等手段检测并分析了材料的形貌结构和成分组成。实验结果表明,当聚乙烯吡络烷酮的浓度为0.1 mol/L时,所制备花状银纳米颗粒的表面结构达到最精细的状态且颗粒的尺寸达到微米量级,适合对单颗粒进行定位与光学性质研究。以结构最优化的花状银纳米颗粒为表面增强拉曼散射基底材料,以羟基苯甲酸为探针,对单个和少数颗粒的表面增强拉曼散射效应进行了研究,并借助暗场散射光谱分析了基底的表面增强拉曼散射机理。结果显示,该花状银纳米颗粒因其独特的表面结构为拉曼信号增强提供了大量“热点”。良好的拉曼性能以及较低的制备成本表明,该新型表面增强拉曼散射基底具有很大的应用前景。  相似文献   

2.
采用电化学沉积法分别在不同孔径的阳极氧化铝(AAO)模板上沉积一系列直径不同,排列规则的银纳米阵列。以对氨基苯甲酸(PABA)和三聚氰胺两种分子分别作为探针分子, 研究了银纳米阵列的直径大小对其表面增强拉曼散射(SERS)效果的影响。结果表明, 在波长为514.5 nm的激光激发下, 探针分子的SERS信号强度随银纳米阵列直径的改变而明显变化, 并在银纳米阵列直径约为53 nm时, SERS强度达到最大。利用电磁增强机制对此实验结果进行了分析和解释。  相似文献   

3.
表面增强拉曼(SERS)作为一种分析手段,具有高灵敏度、高选择性、高重复性、非破坏性等优点,在过去的几十年中,被广泛应用在成分检测、环境科学、生物医药及传感器等领域。其中以金、银等贵金属纳米颗粒薄膜在表面增强拉曼(SERS)活性基底方面得到了更为广泛的应用。SERS技术一个关键的因素是如何制设计并备具有大面积、高增强能力及高重复性、可循环使用的SERS基底。通常,贵金属纳米颗粒规则阵列结构的单元颗粒电磁增强特性及其颗粒间的电磁耦合增强特性的综合作用可大力提升SERS基底的探测性能。然而,利用传统微纳米加工方法如光刻、电子束光刻等方法制备得到的贵金属纳米阵列结构的表面粗糙度不够理想。结合光刻与化学置换方法制备金纳米颗粒四方点阵列孔洞结构,并研究其作为SERS基底的电磁增强特性。具体研究利用光刻法在硅衬底上制备了规则排列的四方点阵列孔洞结构,用磁控溅射在其表面镀上金属铁膜;接着在衬底上旋涂浓度为1.893 8 mol·L-1的氯金酸液膜,在孔洞内铁和氯金酸发生置换反应,进而孔洞生成金纳米颗粒,最终得到金纳米颗粒四方点阵SERS活性基底。采用罗丹明6G(R6G)分子作为探测分子测试不同金纳米颗粒阵列结构基底的SERS谱。实验结果表明,随着化学置换反应时间的延长,金纳米颗粒排列更加紧凑有序,SERS谱增强性能更好。  相似文献   

4.
李健康  李睿 《物理学报》2021,(10):167-172
为表面增强相干反斯托克斯拉曼散射(surface enhancement coherent anti-Stokes Raman scattering,SECARS)提供具有高增强、稳定性好的等离激元增强基底是十分重要的.本文从实际出发,在理论上设计了一种新的SECARS基底,其可以利用结构自身的杂化共振与额外激发的电荷...  相似文献   

5.
表面等离子激元非线性表面增强拉曼散射效应   总被引:1,自引:0,他引:1       下载免费PDF全文
黄茜  熊绍珍  赵颖  张晓丹 《物理学报》2012,61(15):157801-157801
本文采用热蒸发法制备得到纳米Ag颗粒作为增强拉曼衬底, 利用入射光子与纳米颗粒表面价电子的相互作用机理, 激发出高能表面等离子激元, 其表面等离子形成的高能"热点"起到表面增强拉曼散射效果. 通过比较不同入射光强下的拉曼峰强, 指出纳米Ag颗粒的增强拉曼散射效果可以实现低探测光强下的高散射强度, 即纳米Ag颗粒的表面等离子激元具有非线性的表面增强拉曼散射效果, 可降低对样品的光、热损伤, 以利于拓展拉曼散射光谱的应用范围. 同时比较不同纳米Ag颗粒衬底的表面增强拉曼散射效果表明, 采用的热蒸发工艺具有较大的工艺域度, 具有较强的工艺兼容性.  相似文献   

6.
研究了太赫兹波段纳米颗粒的表面增强拉曼散射,证明在太赫兹波段同样存在拉曼增强现象。通过研究表面增强拉曼散射的电磁增强原理,提出利用时域有限差分法仿真模拟纳米颗粒在太赫兹波照射下的表面增强拉曼散射,分析了太赫兹波的增强效果。仿真实验表明,时域有限差分法可以有效精确仿真太赫兹波段纳米颗粒的散射效果,结果使表面增强拉曼散射从可见光和红外波段扩展到太赫兹波段,为太赫兹波与表面增强拉曼散射的结合应用提供了依据。  相似文献   

7.
本文采用阳极氧化铝模板辅助真空蒸镀技术研究并制备了厘米级、形貌均一、颗粒尺寸可控的银纳米颗粒(AgNPs)阵列,并结合传统的湿法转移技术获得了单层MoS2/AgNPs阵列复合结构。系统研究了该复合结构的表面增强荧光(SEF)特性,结果表明我们制备的AgNPs阵列可用作高效SEF基底来增强单层MoS2的荧光性能。且随着温度降低,单层MoS2的荧光性能得到了进一步提升。本研究为MoS2在光电集成领域的应用提供了理论和技术基础。  相似文献   

8.
近年来,一系列新型低维金属纳米材料相继涌现,展现出优异的性能。这些材料与表面增强拉曼散射(SERS)技术相结合,显示出巨大的应用潜力。形貌与取向调控是低维金属纳米材料SERS应用的重要策略。主要采用多元醇还原法制备了高质量、各向异性的银纳米线结构,进一步以罗丹明6G分子作为探针,来研究入射光偏振方向对银纳米线拉曼信号的影响。结果表明,由于纳米线具有各向异性,所以当入射光方向与纳米线长轴近乎垂直时,获得的SERS信号最强。反之,当入射光方向与纳米线长轴成0°夹角时,得到的SERS信号最弱。通过对基于各向异性基底SERS光谱的偏振依赖性研究,有利于更深入地理解SERS机理,同时也有利于人们在不利用任何外部装置的情况下更好的调控SERS强度。  相似文献   

9.
为了研究不同直径PS微球(表面溅射Ag膜)基底的表面增强拉曼散射(SERS)效应,制造了一个新的表面增强拉曼散射(SERS)基底。通过在n型(100)单晶硅片上采用旋涂的方法,得到不同直径的呈六角形有序排列的单层PS微球阵列,然后在PS微球阵列表面磁控溅射一层约30 nm的Ag膜。利用拉曼光谱仪以罗丹明R6G为探针进行了SERS光谱测定,分析比较了不同直径PS微球阵列的表面增强拉曼散射效应,结果表明,溅射有Ag膜的PS微球基底在不同直径下均有不同程度的SERS效应。随着微球直径的增加,PS微球阵列的起伏程度不断加强(粗糙度不断增加),SERS信号逐渐增强,当球直径达到600 nm时,峰的增强信号达到最大,进而获得了一个最优化的SERS基底。同时发现在基底上获得了高信噪比的R6G的SERS光谱, 与苯环相关的一系列CC双键伸缩振动特征谱以及与苯环相关的面内、面外变形振动特征谱均获得了明显增强。这种单一的大区域的拉曼散射基底,呈现出高低相间起伏分布的微观形貌,不同PS微球之间的空隙和深度有很明显的不同,能够显著改善表面Ag膜颗粒的大小和分布,进而提高了PS微球基底的SERS活性。该基底所具有的特殊阵列结构使其在利用SERS探究化学和生物等领域的单分子结构有很大的应用潜力。  相似文献   

10.
利用电沉积法制备了银基底,考察了焙烧温度对基底形貌和表面增强拉曼散射效应的影响.研究结果表明,制备的电沉积银基底呈主干及两侧分支组成的枝晶状,分支均具有高曲率的尖端,可以产生避雷针效应,增强基底的表面增强拉曼散射性能;对基底进行焙烧处理,在300℃时分支尖端开始消失并出现团聚现象,400℃时枝晶变得粗大,但有新的球状纳...  相似文献   

11.
Recently, individual reduced-symmetry metal nanostructures and their plasmonic properties have been studied extensively. However, little attention has been paid to the approach to fabricating ordered reduced-symmetry metal nanostructure arrays. In this paper, a novel perforated silver nanocap array with high surface-enhanced Raman scattering (SERS) activity and fluorescence suppression is reported. The array is fabricated by electron beam evaporating Ag onto the perforated barrier layer side of a hard anodization (HA) anodic aluminum oxide (AAO) template. The morphology and optical property of the perforated silver nanocap array are characterized by an atomic force microscope (AFM), a scanning electron microscope (SEM), and absorption spectra. The results of SERS measurements reveal that the perforated silver nanocap array offers high SERS activity and fluorescence suppression compared with an imperforated silver nanocap array.  相似文献   

12.
王向贤  白雪琳  庞志远  杨华  祁云平  温晓镭 《物理学报》2019,68(3):37301-037301
金属纳米颗粒与金属薄膜的复合结构由于其局域表面等离子体和传播表面等离子体间的强共振耦合作用,可作为表面增强拉曼散射(SERS)基底,显著增强吸附分子的拉曼信号.本文提出了一种聚甲基丙烯酸甲酯(PMMA)间隔的90 nm金纳米立方体与50 nm金膜复合结构的SERS基底,通过有限元方法数值模拟,得到PMMA的最优化厚度为15 nm.实验制备了PMMA间隔层厚度为14 nm的复合结构,利用罗丹明6G (R6G)为拉曼探针分子, 633 nm的氦氖激光器作为激发光源,研究了复合结构和单一金纳米立方体的SERS效应,发现复合结构可以使探针分子产生比单一结构更强的拉曼信号.在此基础上,研究了不同浓度金纳米立方体水溶液条件下复合结构中R6G的拉曼光谱.结果表明,当金纳米立方体水溶液浓度为5.625μg/mL的条件下复合结构中R6G的拉曼信号最强,且可测量R6G的最低浓度达10~(–11) mol/L.  相似文献   

13.
Carbendazim (MBC) is a fungicide widely used in agriculture, and there are serious concerns regarding the health risks that could be caused by this fungicide. Here, we explore its ultrasensitive detection by surface‐enhanced Raman scattering (SERS). First, to obtain maximum SERS signal, the adsorption of the target molecule onto metallic surface is essential. Therefore, we study the adsorption of the MBC onto the nanoparticle surface by SERS under different experimental conditions, such as different synthesis methods of nanoparticle, variable excitation wavelength, and fungicide concentration with the aim to detect MBC at low concentrations. Experiments are carried out with three kinds of colloidal nanoparticles: Ag and Au reduced by citrate and Ag reduced by hydroxylamine. However, mainly Ag colloids are highly efficient in the SERS detection of MBC. In addition, theoretical calculations of MBC Raman spectrum and that of the surface complex are used to help with the understanding the mechanisms responsible for the interaction between MBC and Ag. Ultraviolet–visible absorption spectroscopy showed displacement to the red of the plasmon resonance of Ag colloid in the presence of MBC. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   

14.
Ag nanoparticles were exclusively deposited inside the pores of the porous anodic alumina (PAA) template through the deposition cycle including the incubation and the subsequent reduction of Ag(NH3) . Both the density and size of the produced Ag nanoparticles increased as the deposition cycle number increased. A field‐emission scanning electron microscopeand an ultraviolet‐visible spectrometer were applied, respectively, to study the morphology and the extinction spectra of the Ag nanoparticles. The optimum deposition number was found from the scanning electron microscope (SEM) analysis. Surface enhanced Raman scattering (SERS) spectra of p‐aminothiophenol recorded on the Ag–PAA substrates prepared under increasing number of deposition cycles, manifested an enlarging trend of peak intensity. A point‐by‐point SERS mapping of p‐aminothiophenol on the Ag–PAA substrate was acquired to characterise the homogeneity of the substrate. Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   

15.
叶通  高云  尹彦 《物理学报》2013,62(12):127801-127801
采用聚碳酸酯模板和电化学沉积法制备基于金纳米棒的Raman场增强衬底, 制备的金纳米棒直径大约36 nm, 长约1 μm, 测试结果显示其共振吸收峰的位置约为540 nm. 比较了谐振和非谐振条件下的场增强情况, 并确定了场增益系数, 结果显示谐振激光激发下的增益比非谐振情况下提高了7.36倍. 本研究相对于前人的工作取得了如下进展: 一是讨论了谐振模式与非谐振模式下的金纳米棒的场增益系数, 利用谐振波长的激光激发金纳米棒, 进一步提高了场增益; 二是消除了聚碳酸酯模板分子的荧光背底, 使其在表面增强 Raman 散射方面的应用进一步变得可行. 关键词: 金纳米棒 表面增强Raman散射 聚碳酸酯模板  相似文献   

16.
We review recent our results in the fundamental study of surface-enhanced Raman scattering (SERS) with emphasis on experiments that attempted to identify the enhancement and blinking mechanism using single Ag nanoparticle dimers attached to dye molecules. These results are quantitatively discussed in the framework of electromagnetic mechanism. We also review recent our results in basic SERS applications for biological sensing regarding detections of cell surface molecules and distinction of disease marker molecules under single cell and single molecule level.  相似文献   

17.
ABSTRACT

Surface-enhanced Raman scattering spectroscopy was employed to analyze the biochemical composition of the Saposhnikovia divaricata decoction, which is a common traditional Chinese medicine. No reliable Raman peak was observed in traditional Raman spectra of Saposhnikovia divaricata decoction. However, 12 main Raman peaks (534, 616, 648, 685, 730, 781, 850, 958, 1242, 1319, 1460, and 1571 cm?1) were observed in the surface-enhanced Raman scattering spectroscopy spectra from the mixture of silver colloids with Saposhnikovia divaricata decoction as a result of the silver colloid enhanced effects on the Raman scattering of Saposhnikovia divaricata decoction. The results demonstrated that the surface-enhanced Raman scattering spectroscopy may provide a new kind of non-destructive, accurate, direct, and fast detecting method for the Saposhnikovia divaricata decoction or other traditional Chinese medicine in the form of decoction.  相似文献   

18.
Gold nanorods with aspect ratios of from 1 (particles) to 31.6 were synthesized by the seed-mediated method and packed in a highly ordered structure on a large scale on silicon substrates through capillary force induced self-assembly behaviour during solvent evaporation.The gold nanorod surface exhibits a strong enhancing effect on Raman scattering spectroscopy.The enhancement of Raman scattering for two model molecules (2-naphthalenethiol and rhodamine 6G) is about 5-6 orders of magnitude.By changing the aspect ratio of the Au nanorods,we found that the enhancement factors decreased with the increase of aspect ratios.The observed Raman scattering enhancement is strong and should be ascribed to the surface plasmon coupling between closely packed nanorods,which may result in huge local electromagnetic field enhancements in those confined junctions.  相似文献   

19.
Graphite oxide (GO) was successfully silylated by 3‐mercaptopropyltrimethoxysilane. The surface‐enhanced Raman scattering spectrum of the silylated GO sheets sandwiched between colloidal silver nanoparticles and silver piece is presented. The Raman signal shows a 104 enhancement compared to that of bulk GO. The large Raman enhancement is most likely a result of electromagnetic (EM) coupling between the colloidal silver nanoparticles (localized surface plasmon) and the silver piece (surface plasmon polariton), creating large localized EM fields at their interface, where the silylated GO sheets reside in this sandwich architecture. Copyright © 2009 John Wiley & Sons, Ltd.  相似文献   

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