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首页> 外文期刊>ACS nano >Boosting Sodium Storage in Two-Dimensional Phosphorene/Ti3C2Tx MXene Nanoarchitectures with Stable Fluorinated Interphase
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Boosting Sodium Storage in Two-Dimensional Phosphorene/Ti3C2Tx MXene Nanoarchitectures with Stable Fluorinated Interphase

机译:用稳定的氟化相互作用,促进二维磷烯/ Ti3C2TX MXENE纳米建筑学中的钠储存

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摘要

The stacking of complementary two-dimensional (2D) materials into hybrid architectures is desirable for batteries with enhanced capacity, fast charging, and long lifetime. However, the 2D heterostructures for energy storage are still underdeveloped, and some associated problems like low Coulombic efficiencies need to be tackled. Herein, we reported a phosphorene/MXene hybrid anode with an in situ formed fluorinated interphase for stable and fast sodium storage. The combination of phosphorene nanosheets with Ti3C2Tx MXene not only facilitates the migration of both electrons and sodium cations but also alleviates structural expansion of phosphorene Ph osphorcne and thereby improves the cycling performance of the hybrid anode. X-ray photoelectron spectroscopy in-depth analysis reveals that the fluorine terminated MXene stabilize the solid electrolyte interphase by forming fluorine-rich compounds on the anode surface. Density functional theory calculations confirm that the sodium affinities and diffusion kinetics are significantly enhanced in the phosphorene/MXene heterostructure, particularly in the phosphorene/Ti3C2F2. As a result, the hybrid electrode achieved a high reversible capacity of 535 mAh g(-1) at 0.1 A g(-1) and superior cycling performance (343 mAh g(-1) after 1000 cycles at 1 A g(-1) with a capacity retention of 87%) in a fluorine-free carbonate electrolyte.
机译:将互补的二维(2D)材料堆叠成混合架构,可用于具有增强容量,快速充电和长寿命的电池。然而,用于储能储存的2D异质结构仍然不发达,并且需要解决低库仑效率等相关问题。在此,我们报道了一种磷烯/偏苯杂化阳极,其原位形成氟化酸晶间稳定和快速钠储存。磷烯纳米片与Ti3C2Tx MxENE的组合不仅有助于电子和钠阳离子的迁移,而且还减轻了磷烯pH屏幕溶磷烯的结构膨胀,从而改善了杂化阳极的循环性能。 X射线光电子能谱深入分析显示,通过在阳极表面上形成富含氟化合物,氟封端的偏掺杂稳定固体电解质差异。密度函数理论计算证实,在磷烯/偏析性上显着增强了钠亲和力和扩散动力学,特别是在磷烯/ Ti3C2F2中。结果,杂化电极以0.1Ag(-1)的535mAhg(-1)和优异的循环性能(在1000次循环为1 A g(-1) )在无氟碳酸盐电解质中具有87%的容量保持。

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