论文标题
纳米片稳定的乳液:超低载荷隔离网络和原始二层材料的表面能量测定
Nanosheet-stabilized emulsions: ultra-low loading segregated networks and surface energy determination of pristine few-layer 2D materials
论文作者
论文摘要
开发了一个框架,以允许使用乳化来制造功能结构,并研究原始层状纳米片的特性。证明了液体脱落的几层石墨烯和MOS2,可以稳定乳液,这些乳液在超低纳米片体积分数上表现出系统规模的电导率。当沉积在底物上时,这些乳液的受控干燥动力学促进了它们的应用,因为缺乏任何咖啡环效应允许手动沉积高电导率膜。为了扩大组成范围和随后的应用范围,从三个阶段的表面能量方面了解了乳液稳定性和方向。重要的是,该模型有助于确定纳米片本身的表面能,然后允许设计乳液。最后,证明了使用基本溶液进行表面活性剂脱落纳米片和乳液反演的乳化,以允许可以对组成和方向定制以启用应用程序的水基处理。
A framework is developed to allow emulsification to be used to fabricate functional structures from, and study the properties of, pristine layered nanosheets. Liquid-exfoliated few-layer graphene and MoS2 are demonstrated to stablize emulsions which exhibit system-scale electrical conductivity at ultra-low nanosheet volume fractions. When deposited on a substrate, the controlled drying dynamics of these emulsions facilitates their application as inks where the lack of any coffee ring effect allows manual deposition of high conductivity films. In order to broaden the range of compositions and subsequently applications, an understanding of emulsion stability and orientation in terms of surface energy of the three phases is developed. Importantly, this model facilitates determination of the surface energies of the nanosheets themselves and subsequently allows design of emulsions. Finally, emulsification by surfactant-exfoliated nanosheets and emulsion inversion using basic solution are demonstrated to allow water-based processing where composition and orientation can be tailored to enable applications.