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Fabrication, characterization, and high temperature surface enhanced Raman spectroscopic performance of SiO2 coated silver particles

机译:制备、表征和高温度表面增强拉曼光谱二氧化硅涂层银粒子的性能

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摘要

We present a systematic study on the fabrication, characterization and high temperature surface enhanced Raman spectroscopy (SERS) performance of SiO2 coated silver nanoparticles (Ag@SiO2) on a flat substrate, aiming to obtain a thermally robust SERS substrate for monitoring high temperature reactions. We confirm that a 10-15 nm SiO2 coating provides a structure stability up to 900 degrees C without significantly sacrificing the enhancement factor, while the uncoated particle cannot retain the SERS effect above 500 degrees C. The finite difference time domain (FDTD) simulation results supported that the SiO2 coating almost has no influence on the distribution of the electric field but only physically trapped the most enhanced spot inside the coating layer. On this thermally robust substrate, we confirmed that the SERS of horizontally aligned single walled carbon nanotubes is stable at elevated temperatures, and demonstrate an in situ Raman monitoring of the atmosphere of the annealing process of nanodiamonds, in which the interconverting process of C-C bonds is unambiguously observed. We claim that this is a first experimental proof that the high temperature SERS effect can be preserved and applied in a chemical reaction at temperature above 500 degrees C. This versatile substrate also enables novel opportunities for observing growth, etching, and structure transformation of many 0D and 2D nano-materials.
机译:我们现在在制造系统的研究,特性和高温表面增强拉曼光谱(ser)的性能二氧化硅包覆的纳米银(Ag@SiO2)平坦的衬底,旨在获得一个热健壮的ser监测高生长的基质温度反应。二氧化硅涂层提供了结构的稳定性在不牺牲900摄氏度增强因子,而裸粒子不能保留ser效应高于500度c .时域有限差分二氧化硅(FDTD)模拟结果支持涂层几乎没有影响分布的电场,但只有身体被困里面最增强点涂料层。衬底,我们确认的爵士水平对齐单壁碳纳米管在更高的温度下是稳定的演示的原位拉曼监测的气氛退火的过程纳米金刚石,继而令碳碳键的过程明确观察到。我们声称这是第一个实验证据高温ser效应保存和应用在化学反应温度高于500度c这多才多艺基质还使小说的机会观察增长、腐蚀和结构许多0 d和2 d转换纳米材料。

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