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Waveguide Surface Coherent anti-Stokes Raman Scattering Spectroscopy and optical second harmonic generation spectroscopy of molecules adsorbed on metal oxide surfaces.

机译:波导表面相干抗斯托克斯拉曼散射光谱和光学二次谐波光谱,用于吸附在金属氧化物表面的分子。

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摘要

This dissertation reports the application of nonlinear optical effects for the investigation of vibrational and electronic spectroscopy of molecules adsorbed on thin film metal oxide surfaces and metal oxide surfaces. The main emphasis of the experiments cited here is to introduce the recently developed multi-photon technique, Waveguide Surface Coherent anti-Stokes Raman Scattering Spectroscopy (WSCARS), to the scientific community. Planar optical waveguides have been utilized to generate large optical field enhancements on metal oxide surfaces. Guided waves have been employed to obtain the surface coherent anti-Stokes Raman scattering spectra of pyridine, phenol, benzene, methanol, CD₃OD, 2,4-pentadione, oxygen, ammonia and ND₃ adsorbed onto a ZnO (0001) surface. Vibrational spectra of transient species (O₂⁻) adsorbed on ZnO (0001) surface are also presented. Furthermore, the WSCARS has been used to monitor catalytic hydrogenation of ethylene adsorbed on ZnO (0001) surface. The WSCARS technique is compared with the other vibrational surface probes. Future directions and limitations of the technique are also discussed. Electronic spectra of surface bound species have been examined by resonantly enhanced surface second harmonic generation (SSHG). SHG spectra of trans-cinnamic acid adsorbed on optically cleaned fused silica have been obtained at room temperature and at 4 K. Surface second harmonic generation has been applied to study the adsorption of water and acetone onto thermally grown silicon dioxide/silicon surface. SSHG has been successfully applied to monitor photo-oxidation and photo-reduction of a rutile (110) surface. Experiments are described, data are presented, and surface-adsorbate binding modes are discussed.
机译:本论文报道了非线性光学效应在振动和电子光谱学研究中吸附在薄膜金属氧化物表面和金属氧化物表面上的分子的应用。这里引用的实验的主要重点是向科学界介绍最近开发的多光子技术,即波导表面相干反斯托克斯拉曼散射光谱法(WSCARS)。平面光波导已经被用来在金属氧化物表面上产生大的光场增强。已采用导波获得吸附在ZnO(0001)表面上的吡啶,苯酚,苯,甲醇,CD₃OD,2,4-戊二酮,氧,氨和ND₃的表面相干反斯托克斯拉曼散射光谱。还给出了吸附在ZnO(0001)表面上的瞬态物质(O 2)的振动光谱。此外,WSCARS已用于监测吸附在ZnO(0001)表面的乙烯的催化加氢反应。 WSCARS技术与其他振动表面探头进行了比较。还讨论了该技术的未来方向和局限性。已经通过共振增强的表面二次谐波产生(SSHG)检查了表面结合物质的电子光谱。在室温和4 K下获得了吸附在光学清洁的熔融二氧化硅上的反式肉桂酸的SHG光谱。表面二次谐波的产生已用于研究水和丙酮在热生长的二氧化硅/硅表面上的吸附。 SSHG已成功应用于监视金红石(110)表面的光氧化和光还原。描述了实验,提出了数据,并讨论了表面吸附物的结合方式。

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