School of Emergency Management, School of the Environment and Safety Engineering, Jiangsu University, Zhenjiang 212013, China.
School of Materials Science and Engineering, Jiangsu University, Zhenjiang 212013, China.
Nanoscale. 2023 Mar 23;15(12):5919-5926. doi: 10.1039/d2nr06617c.
Graphene oxide (GO) has been widely used in energy devices, biomedicine, environmental protection, composite materials and other fields. Hummers' method is currently one of the most powerful strategies for the preparation of GO. However, many deficiencies, including severe environmental pollution, operation safety issues and low oxidation efficiency are major obstacles for the large-scale green synthesis of GO. Here, we report a stepwise electrochemical method for the fast preparation of GO using spontaneous persulfate intercalation followed by anodic electrolytic oxidation. Such a step-by-step process not only avoids uneven intercalation and insufficient oxidation in traditional one-pot methods, but also largely shortens the overall duration by two orders of magnitude. In particular, the oxygen content of the obtained GO is as high as 33.7 at%, almost double that from Hummers' method (17.4 at%). The abundant surface functional groups render this GO an excellent adsorption platform for methylene blue with an adsorption capacity of 358 mg g, 1.8-fold higher than conventional GO.
氧化石墨烯(GO)已广泛应用于能源器件、生物医药、环境保护、复合材料等领域。Hummers 法是目前制备 GO 最有力的策略之一。然而,许多缺陷,包括严重的环境污染、操作安全问题和低氧化效率,是 GO 大规模绿色合成的主要障碍。在这里,我们报道了一种分步电化学法,使用自发过硫酸盐插层随后进行阳极电解氧化来快速制备 GO。这种分步过程不仅避免了传统一锅法中插层不均匀和氧化不足的问题,而且将总时间缩短了两个数量级。特别是,所得到的 GO 的氧含量高达 33.7%,几乎是 Hummers 法的两倍(17.4%)。丰富的表面官能团使这种 GO 成为亚甲基蓝的优良吸附平台,吸附容量为 358mg g,比传统 GO 高 1.8 倍。