The role of water in the preparation and stabilization of high quality phosphorene flakes
arXiv:1511.04330 · doi:10.1002/admi.201500441
Abstract
Water is believed to be harmful for the stability of phosphorene.On the contrary, the presence of small amount of water allows the synthesis of high-quality material in liquid exfoliation of black phosphorus using dimethylsulfoxide as solvent. A phosphorus/water molar ratio between 1.5 and 14 maximizes the quality of the phosphorene flakes and their stability.
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Cited by in corpus (13)
- Degradation of Black Phosphorus (BP): The Role of Oxygen and Water
- The Role of H2O and O2 Molecules and Phosphorus Vacancies in the Structure Instability of Phosphorene
- Decoration of exfoliated black phosphorus with nickel nanoparticles and application in catalysis
- Polymer-based black phosphorus (bP) hybrid materials by in situ radical polymerization: an effective tool to exfoliate bP and stabilize bP nanoflakes
- A Perspective on Recent Advances in Phosphorene Functionalization and its Application in Devices
- Black Phosphorus/Palladium Nanohybrid: Unraveling the Nature of P-Pd Interaction and Application in Selective Hydrogenation
- Enhanced ambient stability of exfoliated black phosphorus by passivation with nickel nanoparticles
- Modelling Strategies for the Covalent Functionalization of 2D Phosphorene
- Hybrid 2D Black Phosphorus/Polymer Materials: New Platforms for Device Fabrication
- Novel polystyrene-based nanocomposites by phosphorene dispersion
- Evolution of Intrinsic Vacancies and Prolonged Lifetime of Vacancy Clusters in Black Phosphorene
- Black Phosphorus based One-dimensional Photonic Crystals and Microcavities
- Design of Phosphorene for Hydrogen Evolution Performance Comparable to Platinum