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Microporous silica membranes promote plasmonic nanoparticle stability for SERS detection of uranyl

机译:微孔二氧化硅膜促进电浆纳米颗粒稳定的ser检测铀酰

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Silica membrane stabilized gold coated silver (Ag@Au) (i.e., internally etched silica coated Ag@Au (IE Ag@Au@SiO2)) nanoparticles promote surface-enhanced Raman scattering (SERS) activity and detection of uranium(vi) oxide (uranyl) under harsh solution phase conditions including at pH 3-7, with ionic strengths up to 150 mM, and temperatures up to 37 degrees C for at least 10 hours. These materials overcome traditional solution-phase plasmonic nanomaterial limitations including signal variability and/or degradation arising from nanoparticle aggregation, dissolution, and/or surface chemistry changes. Quantitative uranyl detection occurs via coordination to 3-mercaptopropionate (MPA), a result confirmed through changes in correlated SERS intensities for uranyl and COOH/COO- vibrational modes. Quantification is demonstrated down to 110 nM, a concentration below toxic levels. As pH varies from 3 to 7, the plasmonic properties of the nanoparticles are unchanged, and the uranyl signal depends on both the protonation state of MPA as well as uranyl solubility. High ionic strengths (up to 150 mM) and incubation at 37 degrees C for at least 10 hours do not impact the SERS activity of uranyl even though slight silica dissolution is observed during thermal treatment. All in all, microporous silica membranes effectively protect the nanoparticles against variations in solution conditions thus illustrating robust tunability for uranyl detection using SERS.
机译:硅膜稳定金涂布银(Ag@Au)(例如,内部蚀刻硅涂层纳米粒子促进Ag@Au(即Ag@Au@SiO2))表面增强拉曼散射(ser)活动和检测氧化铀(vi)(铀酰)严厉的解决方案阶段包括pH值条件3 - 7,与离子强度高达150毫米气温高达37摄氏度至少10个小时。液相电浆纳米材料的限制包括信号变化和/或降解由纳米粒子聚合,解散和/或表面化学变化。定量检测时通过铀酰协调3-mercaptopropionate (MPA)结果证实了通过改变相关ser强度和羧基/首席运营官铀酰-振动模式。110海里,浓度低于有毒的水平。纳米粒子的属性不变,和铀酰信号取决于双方质子化作用MPA以及铀酰的状态溶解度。和孵化为至少10 37摄氏度小时不影响铀酰的ser活动即使轻微的硅溶解在热处理。硅膜有效地保护纳米粒子对变化的解决方案从而说明健壮的可调谐性条件使用ser铀酰检测。

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