MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Key Laboratory of Adsorption and Separation Materials & Technologies of Zhejiang Province, Zhejiang University , 38 Zheda Road, Hangzhou 310027, People's Republic of China.
ACS Nano. 2017 Aug 22;11(8):8092-8102. doi: 10.1021/acsnano.7b02915. Epub 2017 Aug 10.
Understanding and modulating the conformation of graphene are pivotal in designing graphene macroscopic materials. Here, we revealed the sheet collapsing behavior of graphene oxide (GO) sheets by poor solvents in an analogy with linear macromolecules. Triggered by poor solvents, extended GO sheets in good solvents can collapse to hierarchically wrinkled conformations. The collapsing behavior of GO enabled the fabrication of amorphous self-standing GO and graphene papers with rich hierarchical wrinkles and folds over mutliple size scales. The collapsed GO and graphene papers had a rubber-like mechanical behavior with viscoelasticity. By our collapsing method, GO and graphene self-standing papers were designed to be stiff with high modulus or to become soft with low modulus of 100 MPa at a remarkably large breakage elongation up to 23%. Our philosophy of treating graphene as a 2D polymer enables the efficient control of molecular conformations of graphene and other 2D polymers and the design of macroscopic materials of 2D nanomaterials as in the polymer industry.
理解和调节石墨烯的构象对于设计石墨烯宏观材料至关重要。在这里,我们通过类比线性大分子揭示了不良溶剂中氧化石墨烯(GO)片的片层坍塌行为。在不良溶剂的触发下,在良溶剂中伸展的 GO 片可以坍塌成具有层次结构的褶皱构象。GO 的坍塌行为使得制造无定形自支撑 GO 和石墨烯纸成为可能,这些纸张具有丰富的层次褶皱和折叠,跨越多个尺寸。坍塌后的 GO 和石墨烯纸具有橡胶状的机械性能和粘弹性。通过我们的坍塌方法,GO 和石墨烯自支撑纸可以设计为具有高模量的刚性,或者设计为具有低模量 100 MPa 的柔软性,断裂伸长率高达 23%。我们将石墨烯视为 2D 聚合物的理念,使我们能够有效地控制石墨烯和其他 2D 聚合物的分子构象,并按照聚合物工业的方式设计 2D 纳米材料的宏观材料。