论文标题
通过中等辅助磨碎的去角质批量生产二维材料
Mass Production of Two-Dimensional Materials by Intermediate-Assisted Grinding Exfoliation
论文作者
论文摘要
二维(2D)材料的可扩展和高效生产是其商业用途的先决条件。目前,只能以吨量表生产石墨烯和氧化石墨烯,并且无法在如此大的规模上生产其他2D材料会阻碍其技术应用。在这里,我们报告了一种磨碎的去角质方法,该方法使用微粒作为力中间体将施加的压缩力解析为多种小剪切力,从而诱导了层材料的高效去角质。该方法称为中间辅助磨碎(图像),可用于大规模生产许多2D材料。例如,我们将大量H-BN剥落到具有较大薄片,高质量和结构完整性的2D H-BN中,高剥落产量为67%,高产量为0.3 g H-1,低能消耗率为3.01x10^6 J G-1。生产率和能耗比以前的结果要好一到两个数量级。除H-BN外,该图像技术还用于去角质材料,例如石墨,黑色磷,过渡金属二甲化剂和金属氧化物,证明了其普遍性。钼浓缩物是一种天然的低成本和丰富的矿物质,用作大规模去角质生产2D MOS2薄片的演示。我们的工作表明了图像方法生产大量各种2D材料的巨大潜力,这为其商业应用铺平了道路。
The scalable and high-efficiency production of two-dimensional (2D) materials is a prerequisite to their commercial use. Currently, only graphene and graphene oxide can be produced on a ton scale, and the inability to produce other 2D materials on such a large scale hinders their technological applications. Here we report a grinding exfoliation method that uses micro-particles as force intermediates to resolve applied compressive forces into a multitude of small shear forces, inducing the highly-efficient exfoliation of layer materials. The method, referred to as intermediate-assisted grinding exfoliation (iMAGE), can be used for the large-scale production of many 2D materials. As an example, we have exfoliated bulk h-BN into 2D h-BN with large flake sizes, high quality and structural integrity, with a high exfoliation yield of 67%, a high production rate of 0.3 g h-1 and a low energy consumption of 3.01x10^6 J g-1. The production rate and energy consumption are one to two orders of magnitude better than previous results. Besides h-BN, this iMAGE technology has been used to exfoliate various layer materials such as graphite, black phosphorus, transition metal dichalcogenides, and metal oxides, proving its universality. Molybdenite concentrate, a natural low-cost and abundant mineral, was used as a demo for the large-scale exfoliation production of 2D MoS2 flakes. Our work indicates the huge potential of the iMAGE method to produce large amounts of various 2D materials, which paves the way for their commercial application.