Division of Environmental Science and Engineering, National University of Singapore, 119260 Singapore.
Biomaterials. 2010 Dec;31(34):9023-30. doi: 10.1016/j.biomaterials.2010.08.012.
Impurities in the synthesized gold nanoparticle (AuNP) solution are systematically identified followed by determining an optimal purification process and evaluating the stability as well as oxidation state of the purified 20-nm AuNPs. Quantified non-AuNP components and a newly speciated byproduct (acetate) complete the stoichiometric equation of AuNP synthesis through the citrate reduction method. Among the five tested centrifugation forces (3000-11,000g) and durations (10-60 min), optimal purification of AuNPs was achieved by centrifugation operating at 7000 g for 20 min which satisfactorily recovers ∼80% of AuNPs without detectable impurities. Storage in the dark at 4 °C prolongs the stability of the purified AuNP suspensions up to 20 days. AuNPs employed in this study persist in their atomic status without being oxidized, even after they were aerosolized in air or heated at 500 °C. This work demonstrates how impurities are identified and removed, and the purified AuNPs can be a reference material to evaluate toxicity or reactivity of other engineered nanomaterials.
系统地鉴定了合成金纳米粒子(AuNP)溶液中的杂质,随后确定了最佳的纯化工艺,并评估了纯化的 20nm AuNP 的稳定性和氧化态。通过柠檬酸还原法定量非 AuNP 成分和新形成的特定副产物(乙酸盐)完成了 AuNP 合成的化学计量方程式。在测试的五种离心力(3000-11000g)和持续时间(10-60 分钟)中,通过在 7000g 下离心 20 分钟实现了 AuNP 的最佳纯化,可满意地回收约 80%的 AuNP,而没有检测到杂质。在 4°C 的黑暗中储存可将纯化的 AuNP 悬浮液的稳定性延长至 20 天。即使在空气中气溶胶化或在 500°C 下加热后,本研究中使用的 AuNP 仍保持其原子状态,没有被氧化。这项工作展示了如何鉴定和去除杂质,以及纯化的 AuNP 可以作为参考材料来评估其他工程纳米材料的毒性或反应性。