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首页> 外文期刊>ACS nano >Ultrathin Nanotube/Nanowire Electrodes by Spin Spray Layer-by-Layer Assembly: A Concept for Transparent Energy Storage
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Ultrathin Nanotube/Nanowire Electrodes by Spin Spray Layer-by-Layer Assembly: A Concept for Transparent Energy Storage

机译:超薄纳米管/纳米线电极通过旋转喷涂逐层组装:透明储能的概念

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摘要

Fully integrated transparent devices require versatile architectures for energy storage, yet typical battery electrodes are thick (20-100 mu m) and composed of optically absorbent materials. Reducing the length scale of active materials, assembling them with a controllable method and minimizing electrode thickness should bring transparent batteries closer to reality. In this work, the rapid and controllable spin spray layer-by-layer (SSLbL) method is used to generate high quality networks of 1D nanomaterials: single-walled carbon nanotubes (SWNT) and vanadium pentoxide (V2O5) nanowires for anode and cathode electrodes, respectively. These ultrathin films, deposited with similar to 2 nm/bilayer precision are transparent when deposited on a transparent substrate (>87% transmittance) and electrochemically active in Li-ion cells. SSLbL-assembled ultrathin SWNT anodes and V2O5 cathodes exhibit reversible lithiation capacities of 23 and 7 mu Ah/cm(2), respectively at a current density of 5 mu A/cm(2). When these electrodes are combined in a full cell, they retain similar to 5 mu Ah/cm(2) capacity over 100 cycles, equivalent to the prelithiation capacity of the limiting V2O5 cathode. The SSLbL technique employed here to generate functional thin films is uniquely suited to the generation of transparent electrodes and offers a compelling path to realize the potential of fully integrated transparent devices.
机译:完全集成的透明设备需要用于能量存储的通用体系结构,但是典型的电池电极很厚(20-100微米),并且由光学吸收性材料组成。减少活性材料的长度,以可控制的方法组装它们,并最小化电极厚度,应该使透明电池更接近现实。在这项工作中,快速可控的逐层旋转喷涂(SSLbL)方法用于生成一维纳米材料的高质量网络:用于阳极和阴极的单壁碳纳米管(SWNT)和五氧化二钒(V2O5)纳米线, 分别。这些超薄薄膜以接近2 nm /双层的精度沉积,当沉积在透明基板上(透射率> 87%)时是透明的,并且在锂离子电池中具有电化学活性。 SSLbL组装的超薄SWNT阳极和V2O5阴极在电流密度为5μA/ cm(2)时分别显示出23和7 mu Ah / cm(2)的可逆锂化能力。当这些电极组合成一个完整的电池时,它们在100个循环中保持类似于5μAh / cm(2)的容量,这相当于极限V2O5阴极的预锂化容量。这里用来生成功能薄膜的SSLbL技术特别适合于透明电极的生成,并且为实现完全集成的透明设备的潜力提供了引人注目的途径。

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