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Photoinduced Enhanced Raman from Lithium Niobate on Insulator Template

机译:从铌酸锂上的光诱导的增强拉曼在绝缘体模板上

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Photoinduced enhanced Raman spectroscopy from a lithium niobate on insulator (LNOI) silver nano-particle template is demonstrated both by irradiating the template with 254 nm ultraviolet (UV) light before adding an analyte and before placing the substrate in the Raman system (substrate irradiation) and by irradiating the sample in the Raman system after adding the molecule (sample irradiation). The photoinduced enhancement enables up to an similar to sevenfold increase of the surface-enhanced Raman scattering signal strength of an analyte following substrate irradiation, whereas an similar to threefold enhancement above the surface-enhanced signal is obtained for sample irradiation. The photoinduced enhancement relaxes over the course of similar to 10 h for a substrate irradiation duration of 150 min before returning to initial signal levels. The increase in Raman scattering intensity following UV irradiation is attributed to photoinduced charge transfer from the LNOI template to the analyte. New Raman bands are observed following UV irradiation, the appearance of which is suggestive of a photocatalytic reaction and highlight the potential of LNOI as a photoactive surface-enhanced Raman spectroscopy substrate.
机译:通过用254nm紫外(UV)光在添加分析物之前通过用254nm紫外(UV)光来证明来自绝缘体(LNOI)银纳米粒子模板的铌酸锂的增强的拉曼光谱,并在加入式系统中将基板放置在拉曼系统(基板照射)之前并通过在添加分子(样品辐射)后照射拉曼系统中的样品。光突出的增强能够高达底物照射后分析物的表面增强拉曼散射信号强度的七倍增加,而获得类似于表面增强信号的三倍增强,用于样品辐射。光突出的增强在返回初始信号水平之前,在类似于10小时的过程中,在20分钟的衬底照射持续时间内放松。紫外线辐射后拉曼散射强度的增加归因于从LNOI模板到分析物的光诱导电荷转移。在UV照射之后观察到新的拉曼带,其外观提示光催化反应,并突出LnOi作为光活性表面增强拉曼光谱谱系的潜力。

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