National Institute of Aerospace , 100 Exploration Way, Hampton, Virginia 23666, United States.
Advanced Materials and Processing Branch, NASA Langley Research Center , Hampton, Virginia 23681, United States.
ACS Nano. 2017 Mar 28;11(3):3189-3197. doi: 10.1021/acsnano.7b00227. Epub 2017 Mar 10.
By creating holes in 2D nanosheets, tortuosity and porosity can be greatly tunable, which enables a fast manufacturing process (i.e., fast removal of gas and solvent) toward various nanostructures. We demonstrated outstanding compressibility of holey graphene nanosheets, which is impossible for pristine graphene. Holey graphene powder can be easily compressed into dense and strong monoliths with different shapes at room temperature without using any solvents or binders. The remarkable compressibility of holey graphene, which is in sharp contrast with pristine graphene, not only enables the fabrication of robust, dense graphene products that exhibit high density (1.4 g/cm), excellent specific mechanical strength [18 MPa/(g/cm)], and good electrical (130 S/cm) and thermal (20 W/mK) conductivities, but also provides a binder-free dry process that overcomes the disadvantages of wet processes required for fabrication of three-dimensional graphene products. Fundamentally different from graphite, the holey graphene products are both dense and porous, which can enable possible broader applications such as energy storage and gas separation membranes.
通过在 2D 纳米片中制造孔,可以极大地调节曲折度和孔隙率,从而实现各种纳米结构的快速制造(即快速去除气体和溶剂)。我们展示了具有出色可压缩性的多孔石墨烯纳米片,这对于原始石墨烯来说是不可能的。多孔石墨烯粉末可以在室温下很容易地压缩成具有不同形状的致密且高强度的整体,而无需使用任何溶剂或粘结剂。与原始石墨烯形成鲜明对比的是,多孔石墨烯具有显著的可压缩性,这不仅使制造坚固、致密的石墨烯产品成为可能,这些产品具有高密度(1.4 g/cm)、优异的比机械强度[18 MPa/(g/cm)]和良好的电导率(130 S/cm)和热导率(20 W/mK),而且还提供了一种无粘结剂的干法工艺,克服了制造三维石墨烯产品所需的湿法工艺的缺点。与石墨根本不同的是,多孔石墨烯产品既致密又多孔,这可能为其带来更广泛的应用,如储能和气体分离膜。