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首页> 外文期刊>Journal of nanoscience and nanotechnology >Three-Dimensional Hierarchical Li_4Ti_5O_(12) Nanoarchitecture by a Simple Hydrothermal Method
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Three-Dimensional Hierarchical Li_4Ti_5O_(12) Nanoarchitecture by a Simple Hydrothermal Method

机译:简单水热法三维三维Li_4Ti_5O_(12)纳米结构

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The spinel Li_4Ti_5O_(12) (LTO) is a promising candidate as a superior electrode material for energy storage devices due to the extremely small volume expansion/contraction during the charge/discharge processes of a battery. There are various synthetic approaches for the nanostructured LTO electrode: sol-gel, sonochemical, solution-combustion, hydrothermal methods, and others. Herein, three-dimensional (3D) high-density heterogeneous LTO architectures are fabricated by employing the TiO_2 nanorods (NRs) branched SnO_2 nanowire (NW) arrays as the template. The TiO_2 NRs were effectively converted by the hydrothermal method into the LTO NRs that have a width of 40-nm and length of 100-nm, which induce branch/backbone structured LTO-SnO_2 composites. Interestingly, the 3D LTO architectures exhibit unique geometrical shapes because the NRs are surrounded by small nanoparticles. We also discuss how the temperature and solvent affect the LTO nanostructure formation in detail. These results suggest that using a template can provide a new method for designing and synthesizing various classes of 3D architecturing synthesis.
机译:尖晶石Li_4Ti_5O_(12)(LTO)由于在电池的充电/放电过程中体积膨胀/收缩非常小,因此有望作为储能设备的优质电极材料。纳米结构LTO电极有多种合成方法:溶胶-凝胶法,声化学法,溶液燃烧法,水热法等。本文中,以TiO_2纳米棒(NRs)支化的SnO_2纳米线(NW)阵列为模板,制造了三维(3D)高密度异质LTO体系结构。 TiO_2 NRs通过水热法有效地转化为宽度为40nm,长度为100nm的LTO NRs,从而引发了分支/骨干结构的LTO-SnO_2复合材料。有趣的是,由于NR被小的纳米颗粒包围,因此3D LTO体系结构显示出独特的几何形状。我们还将详细讨论温度和溶剂如何影响LTO纳米结构的形成。这些结果表明,使用模板可以提供一种设计和合成各种类别的3D架构合成的新方法。

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