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Tailored synthesis of hierarchical spinous hollow titania hexagonal prisms via a self-template route

机译:定制的综合层次尖尖的空洞通过self-template二氧化钛六角棱镜路线

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Novel hierarchical spinous hollow titania hexagonal prisms are prepared through a facile fluorine-free self-template route using Ti2O3(H2O)2(C2O4)-H2O (TC) hexagonal prisms as a precursor. The hollowing transformation can be elucidated by the template-free Kirkendall effect, and diverse nanostructures can also be synthesized during the conversion process, such as the spinous core-shell and yolk-shell nano-composites. The hierarchical hollow microparticles are composed of ultrathin nanobelts of 50-100 nm in length and about 10 nm in thickness, and possess a higher surface area of up to 163 m~2 g~(-1) compared with solid microparticles (49 m~2 g~(-1)). This type of morphology is of great interest for lithium-ion batteries because of its shorter length for Li~+ transport and better electrode-electrolyte contact.
机译:小说层次尖尖的空心二氧化钛通过一个灵巧的六角棱镜准备使用无氟self-template路线Ti2O3 (H2O) 2 (C2O4)水(TC)六角棱镜作为前体。摘要报道了所阐明的柯肯特尔效果,不同的纳米结构也可以在转换过程中,合成随着尖尖的核壳和yolk-shell纳米分散相。超薄的微粒组成50 - 100纳米的纳米带长度和大约10纳米在厚度,拥有更高的表面积163 m ~ 2 g ~(1)与固体相比微粒子(49米~ 2 g ~(1))。形态学是锂离子的极大兴趣李电池由于其较短的长度~ +运输和更好的electrode-electrolyte接触。

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