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Molecular Tilting Alignment on Ag@C Nanocubes Monitored by Temperature-Dependent Surface Enhanced Raman Scattering

机译:依赖于温度的表面增强拉曼散射监测Ag @ C纳米立方体上的分子倾斜排列。

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摘要

Core@shell Ag@C nanocubes (NCs) with a cubic silver core (~60 nm of side length) and a coating of ultrathin amorphous carbon (~4 nm) have been synthesized on a large scale by a one-pot hydrothermal method. The carbon layer not only protects the Ag@C nanocubes from oxidation under hydrothermal condition, but also stabilizes the structure of Ag cores. Considering that optical properties of nanostructured metals strongly depend on the temperature for SERS measurement, in this work we systemically investigate the relationship between the orientation of molecules adsorbed on Ag@C NCs and temperature by SERS spectra. Results suggest that the adsorbed 4-MBA molecules prefer a flat orientation on the NC surface with temperature decreasing. In addition, Ag@C NCs after one-year storage in water still maintain high SERS-active capability. Our synthesized Ag@C NCs with excellent and stable optical properties can be potentially applied in the field of sensor and ultrasensitive spectral analysis.
机译:通过一锅水热法大规模合成了具有立方银核(边长约60〜nm)和超薄无定形碳涂层(约4 nm)的核壳Ag @ C纳米立方体(NC)。碳层不仅可以保护Ag @ C纳米立方体在水热条件下不被氧化,还可以稳定Ag核的结构。考虑到纳米结构金属的光学性能很大程度上取决于SERS测量的温度,在这项工作中,我们系统地研究了吸附在Ag @ C NCs上的分子的取向与SERS光谱温度之间的关系。结果表明,随着温度的降低,吸附的4-MBA分子倾向于在NC表面呈平坦取向。此外,在水中储存一年后的Ag @ C NC仍然保持较高的SERS活性能力。我们合成的具有优异且稳定的光学性能的Ag @ C NC可以潜在地应用于传感器和超灵敏光谱分析领域。

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