Jin Ruitao, Brljak Nermina, Slocik Joseph M, Rao Rahul, Knecht Marc R, Walsh Tiffany R
Institute for Frontier Materials, Deakin University, Waurn Ponds, VIC 3216, Australia.
Department of Chemistry, University of Miami, Coral Gables, Florida 33146, USA.
J Mater Chem B. 2024 May 22;12(20):4824-4832. doi: 10.1039/d3tb02109b.
Liquid-phase exfoliation using biomolecules in aqueous solution is a promising approach to obtain high quality 2D nanosheets. For example, the well-studied graphene-binding peptide, P1 (sequence HSSYWYAFNNKT), has been previously investigated and shown to have a good ability to exfoliate graphene sheets in aqueous conditions under sonication, maintaining colloidal stability. Building on this, the biomolecular exfoliant and assembly motif (BEAM) peptide, that features a graphene-binding domain at one end and a hexagonal boron nitride (h-BN) binding domain at the other, separated by a 10-carbon fatty acid chain in the centre, is shown to exfoliate graphene sheets from bulk graphite in aqueous media. An in-depth examination of the ability of the BEAM to both facilitate sheet exfoliation under sonication conditions and also maintain colliodal stability is provided through molecular dynamics simulations. These findings open new possibilities for designing multi-functional molecules that can both exfoliate and organise 2D materials into heterostructures under ambient conditions in aqueous media.
在水溶液中使用生物分子进行液相剥离是获得高质量二维纳米片的一种有前景的方法。例如,经过充分研究的石墨烯结合肽P1(序列为HSSYWYAFNNKT),此前已被研究并表明在超声处理下的水性条件下具有良好的剥离石墨烯片的能力,同时能保持胶体稳定性。在此基础上,生物分子剥离剂与组装基序(BEAM)肽一端具有石墨烯结合结构域,另一端具有六方氮化硼(h-BN)结合结构域,中间由一条10碳脂肪酸链隔开,已证明其能在水性介质中从块状石墨中剥离石墨烯片。通过分子动力学模拟深入研究了BEAM在超声条件下促进片层剥离以及保持胶体稳定性的能力。这些发现为设计多功能分子开辟了新的可能性,这些分子能够在水性介质中的环境条件下将二维材料剥离并组织成异质结构。