Controlling dispersion of graphene nanoplatelets in aqueous solution by ultrasonic technique


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The homogenous graphene nanoplatelets (GNP) suspension had been prepared through ultrasonic exfoliation in the presence of methylcellulose (MC) as dispersant. The influence of different sonication times on dispersing of aqueous GNP suspension was monitored by UV–Vis absorbance, sedimentation test, optical microscope and transmission electron microscope (TEM). The study of UV–Vis absorbance verifies that the minimum sonication time to break the 0.1 g/L concentration of bundled GNPs is 20 min; furthermore, the GNP suspension achieved the best dispersion, when sonication time increased up to 80 min. From optical microscope images of GNPs, the agglomeration of GNPs was broken by enough sonication energy, and the distribution of GNPs particles became more uniform. The dispersing mechanism had been discussed and simulated by HRTEM image. The bundled GNPs were exfoliated by cavitation effect of ultrasonic irradiation, meanwhile, the dispersant adsorbed on the surface of GNPs prevented re-entanglement by forming steric hindrance.

作者简介

Baomin Wang

Institute of Building Materials, School of Civil Engineering

编辑信件的主要联系方式.
Email: wangbm@dlut.edu.cn
中国, Dalian, 116024

Ruishuang Jiang

Institute of Building Materials, School of Civil Engineering

Email: wangbm@dlut.edu.cn
中国, Dalian, 116024

Wanzeng Song

Yellow River Institute of Hydraulic Research

Email: wangbm@dlut.edu.cn
中国, Zhengzhou, 450003

Hui Liu

Yellow River Institute of Hydraulic Research

Email: wangbm@dlut.edu.cn
中国, Zhengzhou, 450003

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