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Toward a Reusable Surface-Enhanced Raman Spectroscopy (SERS) Substrate by Soft-Landing Ion Mobility

机译:通过软着陆离子淌度实现可重复使用的表面增强拉曼光谱(SERS)衬底

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摘要

Soft-landing ion mobility has been applied to the development of a reusable surface-enhanced Raman spectroscopic substrate. Sections of silicon wafers were cleaved and modified with 3-(mercaptopropyl) triethoxysilane. After modification, gold was deposited using a soft-landing ion mobility system at thermal kinetic energies. It was found that 30 min of deposition provided the optimal feature size for surface-enhanced Raman scattering, and thus deposition was completed in a pressure-dependent fashion. After gold deposition, caffeine was deposited from the solution phase and checked for Raman activity. The Raman spectroscopic signature for caffeine increased as an inverse function of pressure pertaining to surface coverage of captured Au particles. After Raman spectroscopic confirmation of caffeine, the 1 Torr surface was ultrasonically cleaned in deionized water and respotted with sodium bicarbonate solution. There was no interference on the sodium bicarbonate solution from residual caffeine on the surface.
机译:软着陆离子迁移率已应用于可重复使用的表面增强拉曼光谱衬底的开发。将硅晶片的切片切割并用3-(巯基丙基)三乙氧基硅烷改性。改性后,使用软着陆离子迁移率系统以热动能沉积金。发现30分钟的沉积提供了用于表面增强拉曼散射的最佳特征尺寸,因此以压力依赖性方式完成沉积。金沉积后,咖啡因从溶液相中沉积出来并检查拉曼活性。咖啡因的拉曼光谱特征随着与捕获的金颗粒的表面覆盖有关的压力的反函数而增加。在咖啡因的拉曼光谱确认后,将1 Torr表面在去离子水中超声清洗并重新加入碳酸氢钠溶液。表面上残留的咖啡因对碳酸氢钠溶液没有干扰。

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