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Exfoliation of Stable 2D Black Phosphorus for Device Fabrication_上海光学精密机械研究所

上海光学精密机械研究所 免费考研网/2018-05-06

外文题目: Exfoliation of Stable 2D Black Phosphorus for Device Fabrication
作者: Zhang, Yuqin; Dong, Ningning; Tao, Hengcong; Yan, Chao; Huang, Jiawei; Liu, Tengfei; Robertson, Alex W.; Texter, John; Wang, Jun; Sun, Zhenyu
刊名: Chem. Mat.
年: 2017 卷: 29 期: 15 页: 6445--6456
英文关键词:

LIQUID-PHASE EXFOLIATION; HYDROGEN EVOLUTION REACTION; FIELD-EFFECT TRANSISTORS; GRAPHENE DISPERSIONS; SOLVENT EXFOLIATION; LAYERED MATERIALS; NANOSHEETS; ENERGY; FUNCTIONALIZATION; PASSIVATION
英文摘要:
Discovering stabilizers that protect phosphorene from oxidative degradation is critically required for dispersion processing of black phosphorus (BP). It is equally important to also find environmentally friendly, low-cost, and practical exfoliating media. Herein, we demonstrate the yield of remarkably stable phosphorene by coating with a polymer to shield the nanosheets from reaction with water and air. The polymer shell suppresses the rate of BP degradation more efficiently than previously reported systems. We present for the first tithe a simple kinetic model for exfoliation of BP in polyvinylpyrrolidone (PVP) ethanol solution that appears to quantitatively fit BP exfoliation data, and it illuminates mechanistic aspects of exfoliation. Exfoliated flakes consist of a high level of 51% crystalline single layers that are free from structural disorder or oxidation. A successive centrifugation and redispersion strategy is developed affording dispersions with high phophorene-to-stabilizer ratio, which is very useful for further applications. We also demonstrate that PVP-stabilized phosphorene dispersions possess saturable absorption at both 515 and 1030 nm, which have potential use as ultrafast broadband absorbers. Furthermore, such phosphorene dispersions were processed to prepare new metal/phosphorene nanocomposites that have potential for use as electrocatalysts in electrolytic cells.


文献类型: 期刊论文
正文语种: English
收录类别: SCI
DOI: 10.1021/acs.chemmater.7b01991


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