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温度作为水中石墨烯超声剥离的关键参数。

Temperature as a key parameter for graphene sono-exfoliation in water.

作者信息

Kaur Amanpreet, Morton Justin A, Tyurnina Anastasia V, Priyadarshi Abhinav, Holland Adam, Mi Jiawei, Porfyrakis Kyriakos, Eskin Dmitry G, Tzanakis Iakovos

机构信息

School of Engineering, Computing and Mathematics, Oxford Brookes University, College Cl, Wheatley, Oxford OX33 1HX, UK.

Brunel Centre for Advanced Solidification Technology, Brunel University London, Kingston Lane, UB8 3PH, UK.

出版信息

Ultrason Sonochem. 2022 Nov;90:106187. doi: 10.1016/j.ultsonch.2022.106187. Epub 2022 Sep 30.

Abstract

Graphene dispersions in water are highly desirable for a range of applications such as biomedicines, separation membranes, coatings, inkjet printing and more. Recent novel research has been focussed on developing a green approach for scalable production of graphene. However, one important parameter, which is often neglected is the bulk temperature of the processing liquid. This paper follows our earlier work where optimal sono-exfoliation parameters of graphite in aqueous solutions were determined based on the measured acoustic pressure fields at various temperatures and input powers. Here, we take the next step forward and demonstrate using systematic characterisation techniques and acoustic pressure measurements that sonication-assisted liquid phase exfoliation (LPE) of graphite powder can indeed produce high quality few layer graphene flakes in pure water at a specific temperature, i.e. 40 °C, and at an optimised input generator power of 50%, within 2-h of processing. UV-vis analysis also revealed that the exfoliation, stability and uniformity of dispersions were improved with increasing temperature. We further confirmed the successful exfoliation of graphene sheets with minimal level of defects in the optimized sample with the help of Raman microscopy and transmission electron microscopy. This study demonstrated that understanding and controlling processing temperature is one of the key parameters for graphene exfoliation in water which offers a potential pathway for its large-scale production.

摘要

水中的石墨烯分散体在生物医学、分离膜、涂料、喷墨打印等一系列应用中具有很高的需求。最近的新研究集中在开发一种绿色方法来实现石墨烯的可扩展生产。然而,一个经常被忽视的重要参数是处理液的整体温度。本文延续了我们之前的工作,在之前的工作中,基于在不同温度和输入功率下测量的声压场,确定了石墨在水溶液中的最佳超声剥离参数。在此,我们更进一步,通过系统的表征技术和声压测量证明,在特定温度(即40°C)下,以50%的优化输入发生器功率,在2小时的处理时间内,超声辅助液相剥离(LPE)石墨粉确实可以在纯水中产生高质量的少层石墨烯薄片。紫外可见分析还表明,随着温度升高,分散体的剥离、稳定性和均匀性得到改善。借助拉曼显微镜和透射电子显微镜,我们进一步证实了在优化样品中石墨烯片成功剥离,且缺陷水平最低。这项研究表明,理解和控制处理温度是水中石墨烯剥离的关键参数之一,这为其大规模生产提供了一条潜在途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c430/9530948/b3f32f04e574/gr1.jpg

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