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通过静电纺丝法制备的TiNb₂O₇阳极在全一维结构中的卓越性能。

Exceptional performance of TiNb₂O₇ anode in all one-dimensional architecture by electrospinning.

作者信息

Jayaraman Sundaramurthy, Aravindan Vanchiappan, Suresh Kumar Palaniswamy, Chui Ling Wong, Ramakrishna Seeram, Madhavi Srinivasan

机构信息

Energy Research Institute @ NTU (ERI@N), Nanyang Technological University , Research Techno Plaza, 50 Nanyang Drive, Singapore 637553.

出版信息

ACS Appl Mater Interfaces. 2014 Jun 11;6(11):8660-6. doi: 10.1021/am501464d. Epub 2014 May 2.

Abstract

We report the extraordinary performance of an Li-ion battery (full-cell) constructed from one-dimensional nanostructured materials, i.e. nanofibers as cathode, anode, and separator-cum-electrolyte, by scalable electrospinning. Before constructing such a one-dimensional Li-ion battery, electrospun materials are individually characterized to ensure its performance and balancing the mass loading as well. The insertion type anode TiNb2O7 exhibits the reversible capacity of ∼271 mAh g(-1) at current density of 150 mA g(-1) with capacity retention of ∼82% after 100 cycles. Under the same current density, electrospun LiMn2O4 cathode delivered the discharge capacity of ∼118 mAh g(-1). Gelled electrospun polyvinylidene fluoride-co-hexafluoropropylene (PVdF-HFP) nanofibers membrane is used as the separator-cum-electrolyte in both half-cell and full-cell assembly which exhibit the liquid like conductivity of ∼2.9 mS cm(-1) at ambient conditions. Full-cell, LiMn2O4|gelled PVdF-HFP|TiNb2O7 is constructed by optimized mass loading of cathode with respect to anode and tested between 1.95 and 2.75 V at room temperature. The full-cell delivered the reversible capacity of ∼116 mAh g(-1) at current density of 150 mA g(-1) with operating potential and energy density of ∼2.4 V and ∼278 Wh kg(-1), respectively. Further, excellent cyclability is noted for such configuration irrespective of the applied current densities.

摘要

我们报道了一种通过可扩展的静电纺丝技术由一维纳米结构材料构建的锂离子电池(全电池)的非凡性能,即纳米纤维用作阴极、阳极以及兼具隔膜和电解质功能的材料。在构建这种一维锂离子电池之前,对静电纺丝材料进行了单独表征,以确保其性能并平衡质量负载。插入型阳极TiNb₂O₇在150 mA g⁻¹的电流密度下表现出约271 mAh g⁻¹的可逆容量,在100次循环后容量保持率约为82%。在相同电流密度下,静电纺丝的LiMn₂O₄阴极的放电容量约为118 mAh g⁻¹。凝胶化的静电纺丝聚偏氟乙烯 - 共 - 六氟丙烯(PVdF - HFP)纳米纤维膜在半电池和全电池组装中均用作兼具隔膜和电解质功能的材料,在环境条件下表现出约2.9 mS cm⁻¹的类似液体的电导率。通过优化阴极相对于阳极的质量负载构建了全电池LiMn₂O₄|凝胶化PVdF - HFP|TiNb₂O₇,并在室温下于1.95至2.75 V之间进行测试。该全电池在150 mA g⁻¹的电流密度下的可逆容量约为116 mAh g⁻¹,工作电位和约2.4 V的能量密度分别约为278 Wh kg⁻¹。此外,无论施加的电流密度如何,这种配置都具有出色的循环稳定性。

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