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Distinct Chemical and Physical Properties of Janus Nanosheets

机译:Janus Nanoshss的不同化学和物理性质

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Janus particles have recently garnered significant attention for their distinct properties compared to particles that are homogeneously functionalized. Moreover, high aspect ratio Janus particles that are rod-like or planar (i.e., nanosheets) are especially intriguing considering their interfacial properties as well as their ability to assemble into higher order and hybrid structures. To date, major challenges facing the exploration and utilization of 2D Janus particles are scalability of synthesis, characterization of tailored chemical functionalization, and ability to introduce a diverse set of functionalities. Herein, a facile method to access Janus 2D graphene oxide (GO) nanosheets by combining a Pickering-type emulsion and grafting-from polymerization via ATRP is reported. Janus GO nanosheets bearing PMMA on one face as well as the symmetrically functionalized analogue are prepared, and the chemical, thermal, structural, surface, and interfacial properties of these materials are characterized. Time-of-flight secondary ion mass spectrometry coupled with Langmuir Blodgett films is shown to be an ideal route to conclusively establish asymmetric functionalization of 2D materials. This work not only provides a facile route for the preparation of Janus nanosheets but also demonstrates the direct visualization of polymer grown from the surface of GO.
机译:与均匀官能化的颗粒相比,Janus颗粒最近对其不同的性质进行了显着的关注。此外,考虑其界面性质以及它们组装成高阶和杂合结构的能力,高纵横比Janus颗粒特别有趣。迄今为止,2D Janus颗粒的勘探和利用面临的主要挑战是合成的可扩展性,量身定制的化学官能化的表征,以及引入多种功能的能力。这里,报道了通过组合皮革型乳液和通过ATRP的聚合来进入Janus 2d石墨烯氧化物(GO)纳米烯(GO)纳米烯的容易方法。 Janus GoOsheets在一个面上的PMMA以及对称官能化类似物的制备,以及这些材料的化学,热,结构,表面和界面性质。与Langmuir Blodgett薄膜偶联的飞行时间二次离子质谱是理想的途径,以确定2D材料的不对称官能化。这项工作不仅提供了制备Janus纳米片的容易途径,而且还证明了从Go表面生长的聚合物的直接可视化。

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