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首页> 外文期刊>ACS nano >Bandgap Engineering of Phosphorene by Laser Oxidation toward Functional 2D Materials
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Bandgap Engineering of Phosphorene by Laser Oxidation toward Functional 2D Materials

机译:面向功能性二维材料的激光氧化对磷的带隙工程

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摘要

We demonstrate a straightforward and effective laser pruning approach to reduce multilayer black phosphorus (BP) to few-layer BP under ambient condition. Phosphorene oxides and suboxides are formed and the degree of laser-induced oxidation is controlled by the laser power. Since the band gaps of the phosphorene suboxide depend on the oxygen concentration, this simple technique is able to realize localized band gap engineering of the thin BP. Micropatterns of few-layer phosphorene suboxide flakes with unique optical and fluorescence properties are created. Remarkably, some of these suboxide flakes display long-term (up to 2 weeks) stability in ambient condition. Comparing against the optical properties predicted by first-principle calculations, we develop a "calibration" map in using focused laser power as a handle to tune the band gap of the BP suboxide flake. Moreover, the surface of the laser patterned region is altered to be sensitive to toxic gas by way of fluorescence contrast. Therefore, the multicolored display is further demonstrated as a toxic gas monitor. In addition, the BP suboxide flake is demonstrated to exhibit higher drain current modulation and mobility comparable to that of the pristine BP in the electronic application.
机译:我们展示了一种简单有效的激光修剪方法,可在环境条件下将多层黑磷(BP)减少至几层BP。形成磷氧化物和亚氧化物,并且激光诱导的氧化程度由激光功率控制。由于次氧化phosphor的带隙取决于氧浓度,因此这种简单的技术能够实现薄BP的局部带隙工程。创建了具有独特的光学和荧光特性的几层次氧化phosphor薄片的微图案。值得注意的是,其中一些低氧化物薄片在环境条件下显示出长期(长达2周)的稳定性。与通过第一性原理计算预测的光学性质进行比较,我们在使用聚焦激光功率作为调节BP低氧化物薄片的带隙的过程中,开发了一个“校准”图。此外,通过荧光对比将激光图案化区域的表面改变为对有毒气体敏感。因此,彩色显示器被进一步证明为有毒气体监测仪。此外,在电子应用中,BP低氧化物薄片显示出更高的漏极电流调制和迁移率,与原始BP相当。

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