Department of Nanochemistry, Gachon University , Seongnam 13120, Republic of Korea.
Department of Mechanical Engineering, Gachon University , Seongnam 13120, Republic of Korea.
ACS Appl Mater Interfaces. 2016 Sep 14;8(36):23876-85. doi: 10.1021/acsami.6b03583. Epub 2016 Aug 9.
Development of carbon-based materials has received tremendous attention owing to their multifunctional properties. Biomaterials often serve as an inspiration for the preparation of new carbon materials. Herein, we present a facile synthesis of a new bioinspired graphene oxide-like 2D-carbon flake (CF) using a natural resource, waste onion sheathing (Allium cepa). The 2D-CF was further decorated with crystalline Fe3O4 nanoparticles for applications. Superparamagnetic Fe3O4 nanoparticles (7 nm) were well-dispersed on the surface of the 2D-CF, which was characterized by X-ray diffractometry, X-ray photoelectron spectroscopy, Raman spectrometry, and transmission electron microscopy. Batch As(III) adsorption experiments showed that aqueous arsenic ions strongly adsorbed to the Fe3O4@2D-CF composite. The adsorption capacity of the Fe3O4@2D-CF composite for As(III) was 57.47 mg g(-1). The synergetic effect of both graphene oxide-like 2D-CF and Fe3O4 nanoparticles aided in excellent As(III) adsorption. An As(III) ion adsorption kinetics study showed that adsorption was very fast at the initial stage, and equilibrium was reached within 60 min following a pseudo-second-order rate model. Owing to the excellent superparamagnetic properties (52.6 emu g(-1)), the Fe3O4@2D-CF composite exhibited superb reusability with the shortest recovery time (28 s) among reported materials. This study indicated that Fe3O4@2D-CF composites can be used for practical applications as a global economic material for future generations.
由于其多功能特性,碳基材料的发展受到了极大的关注。生物材料通常为制备新型碳材料提供灵感。在此,我们使用一种天然资源,废弃洋葱皮(Allium cepa),简便地合成了一种新型仿生氧化石墨烯状二维碳片(CF)。进一步将二维 CF 用结晶 Fe3O4 纳米粒子进行修饰以应用。7nm 的超顺磁 Fe3O4 纳米粒子很好地分散在二维 CF 的表面上,其通过 X 射线衍射、X 射线光电子能谱、拉曼光谱和透射电子显微镜进行了表征。批量 As(III)吸附实验表明,水溶液中的砷离子强烈吸附到 Fe3O4@2D-CF 复合材料上。Fe3O4@2D-CF 复合材料对 As(III)的吸附容量为 57.47mg/g。氧化石墨烯状二维 CF 和 Fe3O4 纳米粒子的协同作用有助于实现优异的 As(III)吸附。As(III)离子吸附动力学研究表明,在初始阶段吸附非常快,在 60min 内达到平衡,遵循准二级速率模型。由于具有优异的超顺磁性(52.6emu/g),Fe3O4@2D-CF 复合材料表现出极好的可重复使用性,其最短的回收时间(28s)在报道的材料中最短。本研究表明,Fe3O4@2D-CF 复合材料可用作未来经济实惠的全球材料,用于实际应用。