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Stable aqueous dispersions of optically and electronically active phosphorene

机译:光学和电子活性磷的稳定水分散体

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摘要

Understanding and exploiting the remarkable optical and electronic properties of phosphorene require mass production methods that avoid chemical degradation. Although solution-based strategies have been developed for scalable exfoliation of black phosphorus, these techniques have thus far used anhydrous organic solvents in an effort to minimize exposure to known oxidants, but at the cost of limited exfoliation yield and flake size distribution. Here, we present an alternative phosphorene production method based on surfactant-assisted exfoliation and postprocessing of black phosphorus in deoxygenated water. From comprehensive microscopic and spectroscopic analysis, this approach is shown to yield phosphorene dispersions that are stable, highly concentrated, and comparable to micromechanically exfoliated phosphorene in structure and chemistry. Due to the high exfoliation efficiency of this process, the resulting phosphorene flakes are thinner than anhydrous organic solvent dispersions, thus allowing the observation of layer-dependent photoluminescence down to the monolayer limit. Furthermore, to demonstrate preservation of electronic properties following solution processing, the aqueous-exfoliated phosphorene flakes are used in field-effect transistors with high drive currents and current modulation ratios. Overall, this method enables the isolation and mass production of few-layer phosphorene, which will accelerate ongoing efforts to realize a diverse range of phosphorene-based applications.
机译:理解和利用磷的非凡的光学和电子特性需要避免化学降解的大量生产方法。尽管已经开发了基于溶液的策略来实现黑磷的可扩展剥落,但迄今为止,这些技术已使用无水有机溶剂以最大程度地减少对已知氧化剂的暴露,但以剥落的得率和薄片尺寸分布有限为代价。在这里,我们介绍了基于表面活性剂辅助剥离和脱氧水中黑磷的后处理的另一种磷生产方法。从全面的显微镜和光谱分析中可以看出,该方法可产生稳定,高度浓缩的磷光体分散体,其结构和化学性质可与微机械剥离的磷光体相媲美。由于该方法的高剥离效率,所得的磷片比无水有机溶剂分散体薄,因此可以观察到层依赖的光致发光,直至单层极限。此外,为了证明在固溶处理后保持电子性能,在高驱动电流和电流调制比的场效应晶体管中使用了片状水剥落的磷片。总的来说,这种方法能够隔离和大量生产磷层,这将加快实现各种磷基应用的持续努力。

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