Infrared, Raman and Visible Reflectance Spectroscopic Imaging
红外、拉曼和可见光反射光谱成像
基本信息
- 批准号:8157977
- 负责人:
- 金额:$ 82.17万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:
- 资助国家:美国
- 起止时间:至
- 项目状态:未结题
- 来源:
- 关键词:
项目摘要
Results were obtained which illustrated the use of tip-enhance Raman spectroscopy (TERS) and imaging in a novel top illumination geometry. A radially polarized beam was used to generate an electric field component in the direction of beam propagation, normal to the surface, resulting in a five times enhancement compared to a linearly polarized beam. This multiplicative enhancement facilitates a discrimination of the near-field signal from the far-field Raman background. The top illumination configuration allows the application of TERS for investigating molecules on a variety of surfaces, such as gold, glass and silicon. The near field Raman spectra of a variety of materials, including single wall carbon nanotubes, were examined. Sufficient enhancement was obtained to permit the obtaining of a sub-diffraction resolution hyperspectral Raman imaging cube of the surface distribution of large bundles of carbon nanotubes of varying diameter. To further facilitate nanoparticle enhanced Raman imaging of complex biological specimens, the use of higher laser order modes with radial and azimuthal polarizations focused onto a gold nanoparticle AFM tip was explored using a back-scattering microscope configuration. In particular, the radial polarized configuration provided enhanced spatial resolution. This is a consequence of the direction of the induced electron oscillation in the metal nanoparticle, which is oriented by the electromagnetic field at the laser focus. Specifically, the directionality of the electromagnetic enhancement is critical such that the molecule under observation experiences the greatest enhanced field at the apex of the nanostructure tip. These results indicate the potential for TERS to provide insights in molecular distributions on the nanoscale, as, for example, those systems representative of diseased states.
Significant effort has been expended in optimizing experimental parameters associated with TERS. Although tip-enhancement was clearly observed on carbon nanotubes using gold-coated AFM glass tips with 647nm laser excitation, a stronger enhancement factor is necessarily desired for the Raman spectroscopic elucidation of biological samples. For example, glass micropipettes with gold particle balls attached were found to provide greater enhancement factors than gold-coated AFM glass tips. Additionally, proper discrimination of the near-field Raman scattering from the predominant far-field Raman scattering is necessary for the observation and validation of TERS effect. In the case of model lipid membranes, far-field Raman scattering is minimized by preparing lipid membranes in controlled numbers of layers using the Langmuir-Blogett (LB) film deposition technique. Further, LB film deposition provides a mean to maintain the tip-substrate gap required for tip enhancement. Similarly, thin layer deposition of lipid membranes can also be prepared using vesicle fusion method. Vesicle fusion deposition is particularly suitable for incorporating proteins that are relatively insoluble into lipid membranes.
While quartz and mica substrates provide flat surfaces for lipid deposition and for topography visualization. Greater tip-enhancement effect is achieved by choosing substrates that favor the localization of surface plasmons upon laser excitation at the tip apex. With a gold particle ball micropipette, tip-enhanced Raman scattering in the 1800-200 cm-1 region is observed in as little as 1 second acquisition time on a single lipid monolayer deposited on a gold substrate. To obtain proper atomic force microscopy (AFM) topography of the sample, the gold substrate must be annealed prior to sample deposition to reduce the surface roughness from >10A0 to 3-4A0. Alternatively, gold deposits stripped from an ultraflat surface, such as silicon or mica, also provides consistent topography. We note the effect of a gold substrate on lipid membrane formation as lipids appear to form bilayers differently on gold coated substrates than mica substrates.
Although infrared (IR) spectroscopy has been widely used for chemical characterization, a true confocal application of IR spectroscopy for studying the variation in chemistry at different distances from the sample surface has not been demonstrated. (Confocal characterization, even though it is essential in biomedical studies, has been mostly limited to structural analyses using fluorescence and Raman spectroscopic techniques.) Thus, we have recently outlined a new design for IR spectroscopic measurements with a theoretical spatial resolution of 1nm in the z-direction despite diffraction limit considerations. Our approach involves the modification of a time-scanned IR-microscope with the addition of a high-speed, high-precision nano-positioner.. The distance between the objective and the sample is modulated by the nano-positioner at a fixed periodicity in order to modulate the spectral signal. This represents a new application of a Fourier-transform IR difference spectroscopic technique. Experiments are initiated with samples of alternating atomic layers of HfO2 and Al2O3, useful samples for their simple chemical composition. Protein membranes will be assembled, layer-by-layer, to study the spectroscopic variations within individual bilayers.
结果表明,利用尖端增强拉曼光谱(TERS)和成像在一个新的顶部照明几何。径向偏振光被用来在光束传播方向上产生电场分量,垂直于表面,与线偏振光相比增强了五倍。这种倍增增强有助于从远场拉曼背景中区分近场信号。顶部照明配置允许应用TERS研究各种表面上的分子,如金,玻璃和硅。研究了包括单壁碳纳米管在内的多种材料的近场拉曼光谱。获得了足够的增强,可以获得亚衍射分辨率的高光谱拉曼成像立方体,以显示不同直径的大束碳纳米管的表面分布。为了进一步促进纳米粒子增强复杂生物标本的拉曼成像,利用后向散射显微镜配置,探索了将具有径向和方位角偏振的高阶激光模式聚焦到金纳米粒子AFM尖端。特别是,径向偏振结构提供了增强的空间分辨率。这是金属纳米粒子中诱导电子振荡方向的结果,该方向由激光聚焦处的电磁场定向。具体来说,电磁增强的方向性是至关重要的,使得被观察分子在纳米结构尖端的顶端经历最大的增强场。这些结果表明,在纳米尺度上的分子分布,例如,那些代表疾病状态的系统,有潜力为TERS提供见解。
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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Ira W. Levin其他文献
Raman spectra and vibrational assignments for dipalmitoyl phosphatidylcholine and structurally related molecules.
二棕榈酰磷脂酰胆碱和结构相关分子的拉曼光谱和振动分配。
- DOI:
10.1016/0005-2760(75)90095-8 - 发表时间:
1975 - 期刊:
- 影响因子:0
- 作者:
R. C. Spiker;Ira W. Levin - 通讯作者:
Ira W. Levin
Interaction of melittin with dimyristoyl phosphatidylcholine liposomes: evidence for boundary lipid by Raman spectroscopy.
蜂毒肽与二肉豆蔻酰磷脂酰胆碱脂质体的相互作用:拉曼光谱的边界脂质证据。
- DOI:
- 发表时间:
1980 - 期刊:
- 影响因子:0
- 作者:
Francoise Lavialle;Ira W. Levin;C. Mollay - 通讯作者:
C. Mollay
Hydrocarbon chain disorder in lipid bilayers. Temperature dependent Raman spectra of 1,2-diacyl phosphatidylcholine-water gels.
脂质双层中的烃链紊乱。
- DOI:
10.1016/0005-2760(77)90137-0 - 发表时间:
1977 - 期刊:
- 影响因子:0
- 作者:
Nehama Yellin;Ira W. Levin - 通讯作者:
Ira W. Levin
High-Fidelity Raman Imaging Spectrometry: A Rapid Method Using an Acousto-Optic Tunable Filter
高保真拉曼成像光谱测定:一种使用声光可调谐滤波器的快速方法
- DOI:
10.1366/0003702924123980 - 发表时间:
1992 - 期刊:
- 影响因子:3.5
- 作者:
P. Treado;Ira W. Levin;E. Lewis - 通讯作者:
E. Lewis
Absolute infrared intensities of hydrocarbons
- DOI:
10.1007/bf00527377 - 发表时间:
1970-03-01 - 期刊:
- 影响因子:1.500
- 作者:
Thomas P. Lewis;Ira W. Levin - 通讯作者:
Ira W. Levin
Ira W. Levin的其他文献
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{{ truncateString('Ira W. Levin', 18)}}的其他基金
Molecular Dynamics/Vibrational Study Of Membrane Assembl
膜组装的分子动力学/振动研究
- 批准号:
6983700 - 财政年份:
- 资助金额:
$ 82.17万 - 项目类别:
Molecular Dynamics And Vibrational Characteristics Of Membrane Assemblies
膜组件的分子动力学和振动特性
- 批准号:
8349692 - 财政年份:
- 资助金额:
$ 82.17万 - 项目类别:
Infrared, Raman and Visible Reflectance Spectroscopic Imaging
红外、拉曼和可见光反射光谱成像
- 批准号:
7734049 - 财政年份:
- 资助金额:
$ 82.17万 - 项目类别:
Molecular Dynamics And Vibrational Characteristics Of Me
我的分子动力学和振动特性
- 批准号:
6673400 - 财政年份:
- 资助金额:
$ 82.17万 - 项目类别:
MOLECULAR DYNAMICS AND VIBRATIONAL CHARACTERISTICS OF MEMBRANE ASSEMBLIES
膜组件的分子动力学和振动特性
- 批准号:
6289744 - 财政年份:
- 资助金额:
$ 82.17万 - 项目类别:
Molecular Dynamics And Vibrational Characteristics Of Membrane Assemblies
膜组件的分子动力学和振动特性
- 批准号:
7734016 - 财政年份:
- 资助金额:
$ 82.17万 - 项目类别:
Infrared, Raman and Visible Reflectance Spectroscopic Imaging
红外、拉曼和可见光反射光谱成像
- 批准号:
7593513 - 财政年份:
- 资助金额:
$ 82.17万 - 项目类别:
Molecular Dynamics And Vibrational Characteristics Of Me
我的分子动力学和振动特性
- 批准号:
6542221 - 财政年份:
- 资助金额:
$ 82.17万 - 项目类别:
MOLECULAR DYNAMICS AND VIBRATIONAL CHARACTERISTICS OF MEMBRANE ASSEMBLIES
膜组件的分子动力学和振动特性
- 批准号:
6105197 - 财政年份:
- 资助金额:
$ 82.17万 - 项目类别:
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