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更高超声频率的液相剥离可产生更大尺寸且从单层到少层的二维层状材料薄片。

Higher Ultrasonic Frequency Liquid Phase Exfoliation Leads to Larger and Monolayer to Few-Layer Flakes of 2D Layered Materials.

作者信息

Telkhozhayeva Madina, Teblum Eti, Konar Rajashree, Girshevitz Olga, Perelshtein Ilana, Aviv Hagit, Tischler Yaakov R, Nessim Gilbert Daniel

机构信息

Department of Chemistry and Institute of Nanotechnology, Bar-Ilan University, Ramat Gan 52900, Israel.

Institute of Nanotechnology & Advanced Materials, Bar-Ilan University, Ramat Gan 52900, Israel.

出版信息

Langmuir. 2021 Apr 20;37(15):4504-4514. doi: 10.1021/acs.langmuir.0c03668. Epub 2021 Mar 16.

DOI:10.1021/acs.langmuir.0c03668
PMID:33724843
Abstract

Among the most reliable techniques for exfoliation of two-dimensional (2D) layered materials, sonication-assisted liquid-phase exfoliation (LPE) is considered as a cost-effective and straightforward method for preparing graphene and its 2D inorganic counterparts at reasonable sizes and acceptable levels of defects. Although there were rapid advances in this field, the effect and outcome of the sonication frequency are poorly understood and often ignored, resulting in a low exfoliation efficiency. Here, we demonstrate that simple mild bath sonication at a higher frequency and low power positively contributes to the thickness, size, and quality of the final exfoliated products. We show that monolayer graphene flakes can be directly exfoliated from graphite using ethanol as a solvent by increasing the frequency of the bath sonication from 37 to 80 kHz. The statistical analysis shows that ∼77% of the measured graphene flakes have a thickness below three layers with an average lateral size of 13 μm. We demonstrate that this approach works for digenite (CuS) and silver sulfide (AgS), thus indicating that this exfoliation technique can be applied to other inorganic 2D materials to obtain high-quality few-layered flakes. This simple and effective method facilitates the formation of monolayer/few layers of graphene and transition metal chalcogenides for a wide range of applications.

摘要

在二维(2D)层状材料剥离的最可靠技术中,超声辅助液相剥离(LPE)被认为是一种经济高效且直接的方法,可用于制备尺寸合理且缺陷水平可接受的石墨烯及其二维无机类似物。尽管该领域取得了快速进展,但对超声频率的效果和结果了解甚少且常常被忽视,导致剥离效率低下。在此,我们证明在较高频率和低功率下进行简单的温和浴式超声处理对最终剥离产物的厚度、尺寸和质量有积极贡献。我们表明,通过将浴式超声频率从37 kHz提高到80 kHz,单层石墨烯薄片可以直接从石墨中以乙醇为溶剂剥离出来。统计分析表明,约77%的测量石墨烯薄片厚度低于三层,平均横向尺寸为13μm。我们证明这种方法对辉铜矿(CuS)和硫化银(AgS)有效,因此表明这种剥离技术可应用于其他无机二维材料以获得高质量的少层薄片。这种简单有效的方法有助于形成单层/几层石墨烯和过渡金属硫族化合物,以用于广泛的应用。

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