School of Chemistry, Sun Yat-sen University, Guangzhou, 510275, People's Republic of China.
Mikrochim Acta. 2021 Mar 17;188(4):127. doi: 10.1007/s00604-021-04778-1.
A bimetallic nanoparticles modified halloysite nanotubes (HNTs) hybrid was prepared by embedding AgNPs and modifying AuNPs on the inner or outer wall of dopamine-modified HNTs (DHNTs) in sequence. The resulting bimetallic AgNPs@DHNTs-AuNPs hybrid as surface-enhanced Raman scattering (SERS) substrate exhibited improved enhancement ability over monometallic AgNPs@DHNTs, and DHNTs-AuNPs substrates, with intensity ratios of about 48:1:9 (crystal violet) and 11:1:2 (p-phenylenediamine). The giant SERS effect of AgNPs@DHNTs-AuNPs substrate is probably attributed to the synergetic enhancement of the electromagnetic field (Au/Ag), optical plasmon force, molecular enrichment (HNTs), and charge transfer (NPs-dopamine-molecules). The sensitive and reproductive AgNPs@DHNTs-AuNPs substrate was applied for SERS determination of adenine with a linear range of 0.010-0.50 mg·L and a detection limit of 2.2 μg·L. The SERS method enables the rapid determination of adenine in fish, chicken kidney and heart, and serum samples, with recoveries of 83.5-121.6% and relative standard deviations of 2.5-7.9%. The SERS substrate has high value for rapid analysis of food and biomarker determinations. Schematic illustration of the preparation of AgNPs@HNTs-AuNPs for SERS analysis of adenine in complex sample.
通过顺序在多巴胺修饰的海泡石纳米管(DHNTs)的内外壁上嵌入 AgNPs 和修饰 AuNPs,制备了一种双金属纳米粒子修饰的 halloysite 纳米管(HNTs)杂化材料。所得的双金属 AgNPs@DHNTs-AuNPs 杂化物作为表面增强拉曼散射(SERS)基底,与单金属 AgNPs@DHNTs 和 DHNTs-AuNPs 基底相比,具有更好的增强能力,其强度比约为 48:1:9(结晶紫)和 11:1:2(对苯二胺)。AgNPs@DHNTs-AuNPs 基底的巨大 SERS 效应可能归因于电磁场(Au/Ag)、光学等离子体力、分子富集(HNTs)和电荷转移(NPs-多巴胺-分子)的协同增强。灵敏且重现性良好的 AgNPs@DHNTs-AuNPs 基底用于 SERS 测定腺嘌呤,线性范围为 0.010-0.50mg·L,检测限为 2.2μg·L。该 SERS 方法可用于快速测定鱼、鸡肾和心脏以及血清样品中的腺嘌呤,回收率为 83.5-121.6%,相对标准偏差为 2.5-7.9%。该 SERS 基底对于快速分析食品和生物标志物的测定具有很高的价值。用于复杂样品中腺嘌呤的 SERS 分析的 AgNPs@HNTs-AuNPs 的制备示意图。