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首页> 外文期刊>Angewandte Chemie >Synthesis of Two-Dimensional Transition-Metal Phosphates with Highly Ordered Mesoporous Structures for Lithium-Ion Battery Applications
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Synthesis of Two-Dimensional Transition-Metal Phosphates with Highly Ordered Mesoporous Structures for Lithium-Ion Battery Applications

机译:锂离子电池应用中具有高度有序介孔结构的二维过渡金属磷酸盐的合成

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摘要

Materials with ordered mesoporous structures have shown great potential in a wide range of applications. In particular, the combination of mesoporosity, low dimensionality, and well-defined morphology in nanostructures may exhibit even more attractive features. However, the synthesis of such structures is still challenging in polar solvents. Herein, we report the preparation of ultrathin two-dimensional (2D) nanoflakes of transition-metal phosphates, including FePO4, Mn3(PO4)2, and Co3(PO4)2, with highly ordered mesoporous structures in a nonpolar solvent. The as-obtained nanoflakes with thicknesses of about 3.7 nm are constructed from a single layer of parallel-packed pore channels. These uniquely ordered mesoporous 2D nanostructures may originate from the 2D assembly of cylindrical micelles formed by the amphiphilic precursors in the nonpolar solvent. The 2D mesoporous FePO4 nanoflakes were used as the cathode for a lithium-ion battery, which exhibits excellent stability and high rate capabilities.
机译:具有有序介孔结构的材料在广泛的应用中显示出巨大的潜力。特别地,介孔性,低维数和在纳米结构中定义良好的形态的结合可以表现出甚至更有吸引力的特征。然而,在极性溶剂中,此类结构的合成仍然具有挑战性。在这里,我们报告的过渡金属磷酸盐,包括FePO4,Mn3(PO4)2和Co3(PO4)2的超薄二维(2D)纳米薄片的制备,在非极性溶剂中具有高度有序的介孔结构。如此获得的厚度约为3.7 nm的纳米薄片是由单层平行堆积的孔道构成的。这些独特有序的介孔2D纳米结构可能源自非极性溶剂中两亲前体形成的圆柱胶束的2D组装。二维介孔FePO4纳米片用作锂离子电池的阴极,它具有出色的稳定性和高倍率性能。

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