论文标题
二维金属二吡啶的二维纳米片的角色
Exfoliation of Two-Dimensional Nanosheets of Metal Diborides
论文作者
论文摘要
金属二吡啶二比尔是一类陶瓷材料,其晶体结构由硼原子的六角形组成,这些硼原子与与混合特征离子/共价键一起固定的金属原子平面交替。许多金属二吡啶剂是超高温度陶瓷,例如hfb $ _2 $,tab $ _2 $和Zrb $ _2 $,它们的熔点高于3000 $^\ circ $ c,高温下的高机械硬度和高度的强度和高度耐药性,而高度的耐药性,而Mgb $ _2 $ a Divers the Untrandive andive nontription nontription nontription nontription nontription nontription the the kerliate the kerly-39 k。使用超声辅助的去角质,可以将材料处理成二维(2D)纳米片的稳定分散体。我们生成2D金属Diborides Alb $ _2 $,CRB $ _2 $,HFB $ _2 $,MGB $ _2 $,NBB $ _2 $,TAB $ _2 $,TIB $ _2 $,以及ZRB $ _2 $ _2 $,以及使用Electron和Scanning Microscies sourters sourpers and Hoursolize sours Orplize,去角质层横向尺寸延伸到微米,并保持厚度至2-3 nm,同时保持其六边形原子结构和化学成分。我们利用Exfoliated CRB $ _2 $纳米片的方便溶液 - 相分散剂将它们直接掺入聚合物复合材料中。与硬且脆弱的CRB $ _2 $相反,我们发现CRB $ _2 $纳米复合材料保持非常灵活,同时提供了弹性模量和聚合物的最终拉伸强度的增加。 2D金属二吡啶的成功液相生产可以使用可扩展的低温溶液 - 相位方法进行处理,扩展了它们的使用到以前未开发的应用中,并揭示了一个新的非van der Waals材料系列,这些材料可有效地将其渗入2D形式。
The metal diborides are a class of ceramic materials with crystal structures consisting of hexagonal sheets of boron atoms alternating with planes of metal atoms held together with mixed character ionic/covalent bonds. Many of the metal diborides are ultrahigh temperature ceramics like HfB$_2$, TaB$_2$, and ZrB$_2$, which have melting points above 3000$^\circ$C, high mechanical hardness and strength at high temperatures, and high chemical resistance, while MgB$_2$ is a superconductor with a transition temperature of 39 K. Here we demonstrate that this diverse family of non-van der Waals materials can be processed into stable dispersions of two-dimensional (2D) nanosheets using ultrasonication-assisted exfoliation. We generate 2D nanosheets of the metal diborides AlB$_2$, CrB$_2$, HfB$_2$, MgB$_2$, NbB$_2$, TaB$_2$, TiB$_2$, and ZrB$_2$, and use electron and scanning probe microscopies to characterize their structures, morphologies, and compositions. The exfoliated layers span up to micrometers in lateral dimension and reach thicknesses down to 2-3 nm, while retaining their hexagonal atomic structure and chemical composition. We exploit the convenient solution-phase dispersions of exfoliated CrB$_2$ nanosheets to incorporate them directly into polymer composites. In contrast to the hard and brittle bulk CrB$_2$, we find that CrB$_2$ nanocomposites remain very flexible and simultaneously provide increases in the elastic modulus and the ultimate tensile strength of the polymer. The successful liquid-phase production of 2D metal diborides enables their processing using scalable low-temperature solution-phase methods, extending their use to previously unexplored applications, and reveals a new family of non-van der Waals materials that can be efficiently exfoliated into 2D forms.