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Bifunctionalized Silver Nanoparticles as Hg2+ Plasmonic Sensor in Water: Synthesis Characterizations and Ecosafety

机译:双官能化银纳米粒子作为水中的Hg2 +等离子体传感器:合成表征和生态安全

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摘要

In this work, hydrophilic silver nanoparticles (AgNPs), bifunctionalized with citrate (Cit) and L-cysteine (L-cys), were synthesized. The typical local surface plasmon resonance (LSPR) at λ max = 400 nm together with Dynamic Light Scattering (DLS) measurements (<2RH> = 8 ± 1 nm) and TEM studies (Ø = 5 ± 2 nm) confirmed the system nanodimension and the stability in water. Molecular and electronic structures of AgNPs were investigated by FTIR, SR-XPS, and NEXAFS techniques. We tested the system as plasmonic sensor in water with 16 different metal ions, finding sensitivity to Hg2+ in the range 1–10 ppm. After this first screening, the molecular and electronic structure of the AgNPs-Hg2+ conjugated system was deeply investigated by SR-XPS. Moreover, in view of AgNPs application as sensors in real water systems, environmental safety assessment (ecosafety) was performed by using standardized ecotoxicity bioassay as algal growth inhibition tests (OECD 201, ISO 10253:2006), coupled with determination of Ag+ release from the nanoparticles in fresh and marine aqueous exposure media, by means of ICP-MS. These latest studies confirmed low toxicity and low Ag+ release. Therefore, these ecosafe AgNPs demonstrate a great potential in selective detection of environmental Hg2+, which may attract a great interest for several biological research fields.
机译:在这项工作中,亲水性的银纳米颗粒(的AgNPs),用柠檬酸(CIT)和L-半胱氨酸(L-CYS)双官能,合成。典型的局部表面等离子共振(LSPR)在用动态光散射(DLS)测量一起λ最大= 400纳米(<2RH> = 8±1纳米)和TEM研究(O = 5±2纳米)证实了系统nanodimension和在水中的稳定性。分子和的AgNPs的电子结构经FTIR,SR-XPS和NEXAFS技术研究。我们测试了该系统作为等离子体激元传感器在水中与16根不同的金属离子,在范围1-10 ppm的寻找对Hg2 +灵敏度。该第一过筛后,将的AgNPs-Hg2 +离子的分子和电子结构共轭体系被深深地SR-XPS研究。此外,考虑的AgNPs应用的如在真实水系统,环境安全评估(ecosafety)用标准化的生态毒性的生物测定如藻类生长抑制测试中表现传感器(OECD 201,ISO 10253:2006),加上从所述确定的Ag +的释放纳米颗粒在淡水和海洋水曝光介质,通过ICP-MS的方法。这些最新的研究证实低毒银离子释放。因此,这些ecosafe的AgNPs演示环境中汞离子,这可能吸引一些生物学研究领域有很大的兴趣选择性检测的巨大潜力。

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