Yan Zhengquan, Xue Hongtao, Berning Karsten, Lam Yun-Wah, Lee Chun-Sing
Anhui Provincial Laboratory of Biomimetic Sensor and Detecting Technology and Solar Photovoltaic Materials Research Center, West Anhui University , Lu'an 237012, China.
ACS Appl Mater Interfaces. 2014 Dec 24;6(24):22761-8. doi: 10.1021/am506875t. Epub 2014 Dec 15.
By virtue of the specific amalgam of mercury with gold and high specific area of a graphene scaffold, an environment-friendly multifunctional graphene-gold nanocomposite (G-AuNPs) has been identified and prepared by a simple one-pot redox reaction. The resultant G-AuNPs can reversibly enrich about 94% of Hg(2+) in water samples, which can be further separated by only a simple filtration. Importantly, the color of the G-AuNPs suspension exclusively changes from purple-red to light brown upon the addition of Hg(2+) in the presence of ascorbic acid, which can be applied for colorimetric detection of Hg(2+) with a detection limit (3σ, n = 20) of 1.6 × 10(-8) mol·L(-1). Furthermore, using ascorbic acid as reducing agents, both the preparation process and the resultant nanocomposite are nontoxic. To the best of our knowledge, this is the first report to enrich, separate and detect Hg(2+) contaminant simultaneously without causing any secondary pollution.
借助汞与金的特定汞齐以及石墨烯支架的高比表面积,通过简单的一锅法氧化还原反应,已鉴定并制备出一种环境友好型多功能石墨烯 - 金纳米复合材料(G - AuNPs)。所得的G - AuNPs能够可逆地富集水样中约94%的Hg(2+),只需通过简单过滤即可进一步分离。重要的是,在抗坏血酸存在下加入Hg(2+)时,G - AuNPs悬浮液的颜色会从紫红色完全变为浅棕色,这可用于Hg(2+)的比色检测,检测限(3σ,n = 20)为1.6×10(-8) mol·L(-1)。此外,使用抗坏血酸作为还原剂,制备过程和所得纳米复合材料均无毒。据我们所知,这是首次同时富集、分离和检测Hg(2+)污染物且不造成任何二次污染的报告。