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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Surface-Enhanced Raman Scattering (SERS) Detection of Low Concentrations of Tryptophan Amino Acid in Silver Colloid
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Surface-Enhanced Raman Scattering (SERS) Detection of Low Concentrations of Tryptophan Amino Acid in Silver Colloid

机译:表面增强拉曼散射(SERS)检测银胶体中低浓度色氨酸的现象

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摘要

The surface-enhanced Raman scattering (SERS) spectrum of L-tryptophan has been studied in the concentration range 1.4 X 10~(-8) to 5 X 10~(-4) M. A borohydride-reduced silver colloid was employed as the nanoparticle enhancing agent and different electrolytes have been tested for activation of the colloid. The optimum conditions have been determined for achieving high sensitivity of detection. The experimental procedure developed, which includes the use of a composite electrolyte (a mixture of NaHCO_(3) and NaCl) for colloid activation, results in very high enhancement of the Raman signal (up to 10~(8)). This gives the possibility of studying SERS spectra of L-tryptophan at concentrations as low as 10~(-8) M, which is several orders of magnitude lower than previously reported in the literature. The observed SERS spectra were very reproducible and were detectable 2 minutes after mixing, reaching maximum strength approximately 15 minutes after mixing. The spectral characteristics were stable over the entire period of observation. We have found that SERS spectra of tryptophan in silver colloid differ in several features at low (below approx10~(-5) M) and at high (above approx10~(-4) M) concentrations. The most important difference is the absence of the peak near 1000 cm~(-1) at low concentrations, which is usually assigned to the indole ring breathing mode. The observed spectra allow us to suggest that at low concentrations Trp molecules bind to the surface through the indole ring, which remains flat on the surface. This is in contrast to the previously reported observation of SERS spectra from Trp performed at concentration levels above 10~(-5) M.
机译:研究了L-色氨酸在1.4 X 10〜(-8)至5 X 10〜(-4)M浓度范围内的表面增强拉曼散射(SERS)光谱。采用硼氢化物还原的银胶体作为表面活性剂。纳米粒子增强剂和不同的电解质已经过胶体活化测试。确定了实现高检测灵敏度的最佳条件。开发的实验程序包括使用复合电解质(NaHCO_(3)和NaCl的混合物)进行胶体活化,从而导致拉曼信号的增强非常高(最高10〜(8))。这为研究低至10〜(-8)M浓度的L-色氨酸的SERS光谱提供了可能性,该浓度比文献中先前报道的低了几个数量级。观察到的SERS光谱具有很高的重现性,并且在混合后2分钟可检测到,在混合后约15分钟达到最大强度。在整个观察期间,光谱特征是稳定的。我们发现,在低浓度(约10〜(-5)M以下)和高浓度(约10〜(-4)M以上)中,银胶体中色氨酸的色氨酸SERS光谱具有几个特征。最重要的区别是在低浓度下在1000 cm〜(-1)附近没有峰,这通常归因于吲哚环呼吸模式。观察到的光谱使我们建议在低浓度下,Trp分子通过吲哚环与表面结合,该吲哚环在表面上保持平坦。这与先前报道的在10〜(-5)M以上的浓度水平下从Trp观察到的SERS光谱相反。

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