Yang Sheng, Zhang Ke, Ricciardulli Antonio Gaetano, Zhang Panpan, Liao Zhongquan, Lohe Martin R, Zschech Ehrenfried, Blom Paul W M, Pisula Wojciech, Müllen Klaus, Feng Xinliang
Chair for Molecular Functional Materials and Center for Advancing Electronics Dresden (cfaed), Technische Universität Dresden, Mommsenstraße 4, 01069, Dresden, Germany.
Max Planck Institute for Polymer Research, Ackermannweg 10, 55128, Mainz, Germany.
Angew Chem Int Ed Engl. 2018 Apr 16;57(17):4677-4681. doi: 10.1002/anie.201801265. Epub 2018 Mar 15.
Extraordinary electronic and photonic features render black phosphorus (BP) an important material for the development of novel electronics and optoelectronics. Despite recent progress in the preparation of thinly layered BP flakes, scalable synthesis of large-size, pristine BP flakes remains a major challenge. An electrochemical delamination strategy is demonstrated that involves intercalation of diverse cations in non-aqueous electrolytes, thereby peeling off bulk BP crystals into defect-free flakes comprising only a few layers. The interplay between tetra-n-butylammonium cations and bisulfate anions promotes a high exfoliation yield up to 78 % and large BP flakes up to 20.6 μm. Bottom-gate and bottom-contact field-effect transistors, comprising single BP flakes only a few layers thick, exhibit a high hole mobility of 252±18 cm V s and a remarkable on/off ratio of (1.2±0.15)×10 at 143 K under vacuum. This efficient and scalable delamination method holds great promise for development of BP-based composites and optoelectronic devices.
非凡的电子和光子特性使黑磷(BP)成为新型电子学和光电子学发展的重要材料。尽管最近在制备薄层BP薄片方面取得了进展,但可扩展合成大尺寸、原始的BP薄片仍然是一个重大挑战。本文展示了一种电化学剥离策略,该策略涉及在非水电解质中插入多种阳离子,从而将块状BP晶体剥离成仅由几层组成的无缺陷薄片。四正丁基铵阳离子和硫酸氢根阴离子之间的相互作用促进了高达78%的高剥离产率和高达20.6μm的大尺寸BP薄片。底部栅极和底部接触场效应晶体管仅由几层厚的单个BP薄片组成,在真空中于143K下表现出252±18cm² V⁻¹ s⁻¹的高空穴迁移率和(1.2±0.15)×10⁶的显著开/关比。这种高效且可扩展的剥离方法对于基于BP的复合材料和光电器件的开发具有巨大的前景。