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首页> 外文期刊>Quimica nova >HOTSPOT STABILIZATION OF GOLD NANOPARTICLES FOR APPLICATION OF QUANTITATIVE SERS IN BIOANALYTICAL SYSTEMS
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HOTSPOT STABILIZATION OF GOLD NANOPARTICLES FOR APPLICATION OF QUANTITATIVE SERS IN BIOANALYTICAL SYSTEMS

机译:黄金纳米粒子的热点稳定,用于在生物分析系统中施用定量SERS

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A complete procedure including synthesizing gold nanoparticles and further hotspots stabilization is presented. Colloidal gold synthesis followed a citrate reducing reaction, then, an ideal condition for SERS enhancement with quantitative purposes was reached by searching equilibrium between salt- and analyte-induced aggregation. Under this condition, a mild aggregation is produced, along with "free sites" available on the metal surface where analyte could easily interact. As a consequence, suitable linear concentration intervals and high quality SERS spectra were obtained allowing building multivariate quantitative models. For adenine as probe molecule, LOD values were around 10-8 mol L-1, even at low laser power and short exposure time during spectral acquisition. The hotspot stabilization procedure, as shown here, allows dealing with samples or highly complex analytical matrices that can easily cause undesirable agglomerate formation like those from biological origin.
机译:提出了一种完整的方法,包括合成金纳米颗粒和其他热点稳定化。胶体金合成伴随着柠檬酸盐的还原反应,然后通过在盐和分析物诱导的聚集之间搜索平衡来达到具有定量目的的SERs增强的理想条件。在这种情况下,产生温和的聚集,以及在金属表面上可用的“自由位点”,其中分析物可以容易地相互作用。因此,获得了合适的线性浓度间隔和高质量的SERS光谱,允许构建多元定量模型。对于腺嘌呤作为探针分子,即使在低激光功率和光谱采集期间的曝光时间短,LOD值也为约10-8摩尔L-1。如图所示,热点稳定程序允许处理样品或高度复杂的分析基质,其可以容易地引起像生物来源那些那样的不希望的聚集形成。

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