共查询到19条相似文献,搜索用时 0 毫秒
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Tip-enhanced Raman mapping (TERM) can be used to obtain chemical analysis of a sample with a topographical resolution down to 15 nm. A short review of this technique is given. Among other samples (e.g. carbon nanotubes and graphene), we recently measured a high resolution tip-enhanced Raman map of a polymer for the first time. Using TERM, the phase separation behaviour of a polymer blend (PMMA/SAN) was monitored. In the early, incomplete state of phase separation an interface width of ∼200 nm was measured. A spatial resolution in the tens of nm range could be achieved. 相似文献
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Thomas Schmid Lothar Opilik Carolin Blum Renato Zenobi 《Angewandte Chemie (International ed. in English)》2013,52(23):5940-5954
Methods for chemical analysis at the nanometer scale are crucial for understanding and characterizing nanostructures of modern materials and biological systems. Tip‐enhanced Raman spectroscopy (TERS) combines the chemical information provided by Raman spectroscopy with the signal enhancement known from surface‐enhanced Raman scattering (SERS) and the high spatial resolution of atomic force microscopy (AFM) or scanning tunneling microscopy (STM). A metallic or metallized tip is illuminated by a focused laser beam and the resulting strongly enhanced electromagnetic field at the tip apex acts as a highly confined light source for Raman spectroscopic measurements. This Review focuses on the prerequisites for the efficient coupling of light to the tip as well as the shortcomings and pitfalls that have to be considered for TERS imaging, a fascinating but still challenging way to look at the nanoworld. Finally, examples from recent publications have been selected to demonstrate the potential of this technique for chemical imaging with a spatial resolution of approximately 10 nm and sensitivity down to the single‐molecule level for applications ranging from materials sciences to life sciences. 相似文献
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Ya Zhang Kailimai Su Yingshuang Ha Weifeng Chen Chenghua Sun 《Analytical letters》2019,52(12):1888-1899
Molecular imprinting and surface enhanced Raman scattering (SERS) were used to prepare a core-shell Ag@molecularly imprinting polymer (MIP) for the determination of p-nitroaniline. The obtained Ag@MIP exhibits a detection limit of 10?12 M, which demonstrates higher sensitivity toward p-nitroaniline than conventional approaches. In addition, the Ag@MIP shows good recyclability, and simultaneously offers better stability and high SERS activity for recognizing target molecules. To characterize the high SERS activity of the SERS-MIP hybrid material, a possible mechanism for the SERS substrate is proposed involving enhancement by the MIP. This study is expected to provide an alternative approach for the determination of p-nitroaniline in aqueous environments. 相似文献
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利用Kretschmann棱镜耦合结构和532 nm激光光源,测试了金银合金薄膜的表面增强拉曼散射(SERS)效应,并与纯金薄膜的测试结果进行了比较.结果显示,在激发光为p偏振态且入射角近似等于表面等离子体共振(SPR)角时,附着于金银合金薄膜表面的Nile Blue分子的SERS信号达到最强,比利用纯金薄膜测得的SERS信号高约2倍.实验结果还表明,在金银合金薄膜表面自组装金纳米粒子后,Nile Blue吸附层的SERS信号比自组装纳米金之前测得的信号增强了至少3倍,比利用纳米金修饰的纯金薄膜测得的信号高出2倍多.在棱镜底面沿薄膜法线收集的SERS信号是完全非偏振光,而从棱镜侧面收集的SERS信号是p偏振光,是拉曼光借助SPR效应产生的定向发射. 相似文献
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Michinari Kohri Yoshihiro Shinoda Hiroto Kohma Yuri Nannichi Mitsuaki Yamauchi Shiki Yagai Takashi Kojima Tatsuo Taniguchi Keiki Kishikawa 《Macromolecular rapid communications》2013,34(15):1220-1224
A free‐standing polymer brush film with tailored thicknesses based on a colorless polydopamine (PDA) thin layer is prepared and characterized. The surface‐initiated atom transfer radical polymerization (ATRP) of 2‐hydroxyethyl methacrylate (HEMA) is performed on a PDA layer with thickness of ca. 6 nm, which generated an optically transparent and colorless free‐standing PHEMA brush film (1.5 cm × 1.5 cm). Because the cross‐linked PDA layer is used as the base for the polymer brushes, the reported method does not require cross‐linking the polymer brushes. The free‐standing film thicknesses of ≈16–75 nm are controlled by simply changing the ATRP reaction time. The results show that the free‐standing PHEMA brush film transferred onto a plate exhibits a relatively smooth surface and is stable in any solvent.
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表面增强拉曼光谱(SERS)因极高的检测灵敏度及丰富的光谱指纹信息而在物质的结构鉴定方面得到广泛应用,但对于复杂混合物的SERS光谱解析仍存在较大挑战,因此并不能有效用于直接实时监测化学反应过程.本工作以有序Au纳米粒子二维阵列膜为基底,将SERS技术与高效液相色谱(HPLC)联用,充分发挥两者在高灵敏度检测和高效分离方面的优势,实现了对苯硼酸和3-溴吡啶的Suzuki偶联反应的实时连续分离和检测.研究表明该反应体系的混合液的HPLC中检测到保留时间分别位于2.1 min,2.8 min,3.6 min,15.3 min的四种不同物质,第一种物质对应于反应物苯硼酸;第二、三种物质分别对应3-溴吡啶和主产物苯基吡啶,它们的SERS光谱特征与标准物完全一致,最后一种物质的SERS光谱特征与联苯一致,由此说明反应过程中的副产物为联苯.通过对最终反应物进行层析分离提纯得到主产物,NMR谱特征表明其为苯基吡啶,这与SERS研究结果一致,而副产物联苯的产率较低,提纯困难而无法通过NMR分析获得其结构.由此可见,SERS-HPLC联用实现了分离与鉴别的功能集成,有望发展成为一种具有潜在应用前景的有机反应历程的实时检测工具. 相似文献
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采用紫外光谱定性定量分析野生植物茅莓主要有效成分黄酮化合物,并对其进行液相色谱-电喷雾质谱联用、薄层色谱原位表面增强拉曼散射研究。液相色谱流动相A:CH3OH,B:H2O 1%乙酸,液相色谱流出时间16.21 m in的化合物为六羟基双氢黄酮醇二聚体形式,分子量640,占总黄酮的91.71%;流出时间19.61 m in的化合物分子量448,为槲皮甙,占总黄酮的8.29%。茅莓总黄酮经聚酰胺薄层色谱板分离,获得两个斑点:R f1=0.14,R f2=0.47;分别制备灰银胶和溴化银光致还原银溶胶表面增强基底,在样品薄层色谱两个斑点原位分别获得2种黄酮化合物的表面增强拉曼光谱,在2种表面增强基底作用下,都能观察到μg量黄酮化合物特征拉曼光谱,并比较了2种色谱分离与指纹检测联用技术。 相似文献
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该文开发了一种基于Au@Ag纳米颗粒(Au@AgNPs)快速检测法莫替丁(FMD)的表面增强拉曼光谱(SERS)方法。通过种子介导法合成了Au@AgNPs,再采用场电子发射显微镜(SEM)、透射电子显微镜(TEM)、紫外可见吸收光谱(UV-Vis)和X射线衍射仪(XRD)对Au@AgNPs进行表征,以罗丹明6(RG6)为分子探针对合成的Au@AgNPs的SERS性能进行了测试。结果显示,合成的Au@AgNPs形貌均匀,具有良好的增强效果,增强因子为6.66×105,将其用于法莫替丁标准溶液的SERS检测,在0.5~50μmol/L范围内法莫替丁浓度的对数和1 540 cm-1处峰强度的对数具有较好的线性关系,相关系数(r2)为0.978,检出限(LOD)为4.18×10-8 mol/L。在同样的条件下对稀释血浆中的法莫替丁进行了SERS检测,LOD为1.11×10-7 mol/L,加标回收率为91.6%~122%,相对标准偏差为6.6%~12%,表明该方法快速、灵敏,在生物样本... 相似文献
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建立自组装管尖固相萃取结合超高效液相色谱-高分辨质谱检测水果中15种酸性农药残留的分析方法。水果样品经甲酸-乙腈(1∶99,体积比)提取后,以官能化聚苯乙烯/二乙烯苯(PEP)和亲水作用色谱(HILIC)作为吸附填料进行管尖固相萃取净化。以T3色谱柱进行色谱分离,采用高分辨质谱的t SIM/dd MS2扫描模式进行定性、定量分析,内标法测定。15种酸性农药在各自线性范围内呈良好的线性关系,相关系数(r2)均大于0.99。方法的定量下限(LOQ)为0.2~10μg/kg。在LOQ,10μg/kg,100μg/kg加标水平下,15种酸性农药的回收率为73.5%~115.9%,相对标准偏差为1.0%~8.3%。该方法灵敏、准确,适用于水果中酸性农药残留的分析测定,具有很好的实际应用价值。 相似文献
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该文建立了基于表面增强拉曼光谱(SERS)技术检测水和尿液中舒芬太尼的方法。首先制备了银溶胶SERS基底并进行表征。随后通过理论计算和实验对比,对舒芬太尼的拉曼特征峰进行了归属。通过探索最佳实验条件,确定了促凝剂及其浓度。对水和人工尿液中的舒芬太尼进行了SERS检测,检出限分别为0.09μg/mL和1.55μg/mL。水和尿液中舒芬太尼的特征峰(1 004 cm~(-1))强度与舒芬太尼质量浓度在一定范围内呈线性关系,相关系数(r~2)分别为0.979和0.968。水和尿液中舒芬太尼的回收率分别为96.3%~107%和95.8%~106%,相对标准偏差分别为4.2%~4.7%和3.3%~5.2%。该方法具有快速、准确、无损、操作简便等优点,为水和尿液中舒芬太尼的快速检测打下了良好的基础。 相似文献
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Summary: The thermosensitive phase‐separation of poly(vinyl methyl ether) in water has been investigated by micro‐Raman spectroscopy in the presence of tetraalkylammonium bromides. The equilibrium distribution of both polymer and salts to the polymer‐rich and solvent‐rich phases was determined as a function of temperature. Tetraalkylammonium ions with longer alkyl chains associate more strongly with PVME and raise the phase‐transition temperature due to an increase in hydrophilicity.
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建立了水产品中11种海洋生物毒素的高效液相色谱-四极杆/静电场轨道阱高分辨质谱(HPLC-Q-Orbitrap HRMS)检测方法。该方法采用分级提取原理,结合分散固相萃取技术(dSPE)和载体辅助液液萃取技术(SLLE),建立了对亲水性及亲脂性海洋生物毒素的"一站式"提取净化体系。在优化条件下,11种毒素在一定质量浓度范围内具有良好的线性关系,相关系数(r)均大于0.99。该方法对11种毒素的检出限为1~10μg/kg,定量下限为2~20μg/kg,加标回收率为55.6%~122%,相对标准偏差为5.4%~16%。方法快速高效,可操作性强,解决了不同理化性质的海洋生物毒素的通用性检测问题,可满足水产品中海洋生物毒素的快速筛查要求。 相似文献
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C. Herrero Latorre J. Álvarez MéndezAuthor VitaeJ. Barciela GarcíaAuthor Vitae S. García MartínAuthor VitaeR.M. Peña CrecenteAuthor Vitae 《Analytica chimica acta》2012
New materials have significant impact on the development of new methods and instrumentation for chemical analysis. From the discovery of carbon nanotubes in 1991, single and multi-walled carbon nanotubes – due to their high adsorption and desorption capacities – have been employed as sorption substrates in solid-phase extraction for the preconcentration of metal species from diverse matrices. Looking for successive improvements in sensitivity and selectivity, in the past few years, carbon nanotubes have been utilized as sorbents for solid phase extraction in three different ways: like as-grown, oxidized and functionalized nanotubes. In the present paper, an overview of the recent trends in the use of carbon nanotubes for solid phase extraction of metal species in environmental, biological and food samples is presented. The determination procedures involved the adsorption of metals on the nanotube surface, their quantitative desorption and subsequent measurement by means of atomic spectrometric techniques such as flame atomic absorption spectrometry, electrothermal atomic absorption spectrometry or inductively coupled plasma atomic emission spectrometry/mass spectrometry, among others. Synthesis, purification and types of carbon nanotubes, as well as the diverse chemical and physical strategies for their functionalization are described. Based on 140 references, the performance and general properties of the applications of solid phase extraction based on carbon nanotubes for metal species atomic spectrometric determination are discussed. 相似文献
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《Arabian Journal of Chemistry》2020,13(1):1198-1228
Vanadate and vanadium compounds exist in many environmental, biological and clinical matrices, and despite the need only limited progress has been made on the analysis of vanadium compounds. The vanadium coordination chemistry of different oxidation states is known, and the result of the characterization and speciation analysis depends on the subsequent chemistry and the methods of analysis. Many studies have used a range of methods for the characterization and determination of metal ions in a variety of materials. One successful technique is high performance liquid chromatography (HPLC) that has been used mainly for measuring total vanadium level and metal speciation. Some cases have been reported where complexes of different oxidation states of vanadium have been separated by HPLC. Specifically reversed phase (RP) HPLC has frequently been used for the measurement of vanadium. Other HPLC methods such as normal phase, anion-exchange, cation-exchange, size exclusion and other RP-HPLC modes such as, ion-pair and micellar have been used to separate selected vanadium compounds. We will present a review that summarizes and critically analyzes the reported methods for analysis of vanadium salts and vanadium compounds in different sample matrices. We will compare various HPLC methods and modes including sample preparation, chelating reagents, mobile phase and detection methods. The comparison will allow us to identify the best analytical HPLC method and mode for measuring vanadium levels and what information such methods provide with regard to speciation and quantitation of the vanadium compounds. 相似文献