论文标题

非上层散装结构的解压缩化学键,形成超薄纳米晶体

Unzipping chemical bond of non-layered bulk structures to form ultrathin nanocrystals

论文作者

Lin, Liangxu, Wu, Chang, Huang, Juntong, Nattestad, Andrew, Chen, Jun, Wallace, Gordon G., Zhang, Shaowei

论文摘要

与分层的散装晶体不同的单层晶体的丰富电子和带状结构提供了多功能的物理/化学特性和应用。1-5它们的捏造,尤其是自上而下的“去角质”,薄弱的范德华力是由单层之间的薄弱的范德华力所承诺的。6-9在差异上,无需透明的超高晶体(E. g。由于平面和原子之间的牢固化学键,具有挑战性。这些超薄材料的可替代性控制生长并不是真正成功的。这项工作表明了如何使用一种技术来解开和分解超薄的晶体平面(例如单层纳米晶体和纳米片),从散装的非层状结构(ZnO,alpha/belta-mno2,tio2,tio2,tio2,tio2,alpha-tib2,alpha-tib2,alpha-tib2),以及与基本的构图不同,与基本的属性更改了他们的别隔间。这里的工作为各种新型2D非层次纳米材料提供了强大的工具套件,为二维材料的家族提供了重大贡献,可能为各种实际应用铺平了道路。

The rich electronic and band structures of monolayered crystals distinguished from their layered bulk counterparts offer versatile physical/chemical properties and applications.1-5 Their fabrications, particularly the top-down "exfoliations", are successful promised by the weak Van der Waals force between monolayers.6-9 Differentially, un-zipping ultra-thin crystals (e.g. with only one layer of crystal plane) from non-layered structures is highly challenging due to the strong chemical bond between planes and atoms. Alterative finely controlled growth of these ultra-thin materials is not really successful. This work demonstrates how a technique can be used to unzip and disintegrate ultra-thin crystal plane (e.g. monolayered nanocrystals and nanosheets) from bulk non-layered structures (ZnO, alpha/belta-MnO2, TiO2, alpha-TiB2), and present how the basic optical properties changed to distinguish from their bulk phases. The work here gives a strong tool kit to various novel 2D non-layered nanomaterials, providing significant contributions to the family of two-dimensional materials, potentially paving the way for various practical applications.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源