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Polydopamine-Stabilized Aluminum Nanocrystals: Aqueous Stability and Benzo[a]pyrene Detection

机译:聚二胺稳定铝纳米晶体:水性稳定性和苯并[a]芘检测

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摘要

Aluminum nanocrystals have emerged as an earth-abundant material for plasmonics applications. Al nanocrystals readily oxidize in aqueous-based solutions, however, transforming into highly stratified gamma-AIOOH nanoparticles with a 700% increase in surface area in a matter of minutes. Here we show that by functionalizing Al nanocrystals with the bioinspired polymer polydopamine, their stability in aqueous media is dramatically increased, maintaining their integrity in aqueous solution for over 2 weeks with no discernible structural changes. Polydopamine functionalization also provides a molecular capture layer that enables the capture of polycyclic aromatic hydrocarbon pollutants in H2O samples and their detection by surface-enhanced Raman spectroscopy, when polydopamine-stabilized Al nanocrystal aggregates are used as substrates. This approach was used to detect a prime carcinogenic H2O pollutant, benzo[a]pyrene with a sensitivity in the sub part-per-billion range.
机译:铝纳米晶体已成为普遍的血浆应用材料。 然而,Al纳米晶体在含水基溶液中易于氧化成高度分层的γ-AiOOH纳米颗粒,在几分钟内以700%的表面积增加700%。 在这里,我们表明,通过用生物悬浮的聚合物聚二胺官能化Al纳米晶体,它们在水性介质中的稳定性急剧增加,在水溶液中保持完整性超过2周,没有可辨别的结构变化。 聚二氨基氨基官能化还提供了一种分子捕获层,当使用多碳双黄胺稳定的Al纳米晶体聚集体作为基质时,通过表面增强的拉曼光谱捕获在H 2 O样品中的多环芳烃污染物及其检测。 这种方法用于检测致癌的致癌致癌H2O污染物,苯并[a]芘,亚亿亿分段中的敏感性。

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