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Flexible robust binder-free carbon nanotube membranes for solid state and microcapacitor application

机译:柔性鲁棒粘合剂的无碳纳米管膜,用于固态和微型密码器应用

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We present a liquid phase post synthesis self-assemble protocol that transforms trillions of carbon nanotubes (CNTs) in powder form into densely packed flexible, robust and binder-free macroscopic membranes with a hierarchical pore structure. We employ charge transfer engineering to spontaneously disperse the CNTs in a liquid medium. The processing protocol has limited or no impact on the intrinsic properties of the CNTs. As the thickness of the CNT membrane is increased, we observed a gradual transition from high flexibility to buckling and brittleness in the flexural properties of the membranes. The binder-free CNT membranes have bulk mass density greater than that of water (1.0 g cm(-3)). We correlate the mass of the CNTs in the membrane to the thickness of the membrane and obtained a bulk mass density of similar to 1.11 g cm(-3) +/- 0.03 g cm(-3). We demonstrate the use of the CNT membranes as electrode in a pristine and oxidized single/stacked solid-state capacitor as well as pristine interdigitated microcapacitor that show time constant of similar to 32 ms with no degradation in performance even after 10 000 cycles. The capacitors show very good temperature dependence over a wide range of temperatures with good cycling performance up to 90 degrees C. The specific capacitance of the pseudocapacitive CNT electrode at room temperature was 72 F g(-1) and increased to 100 F g(-1) at 70 degrees C. The leakage current of bipolar stacked solid state capacitor was similar to 100 nA cm(-2) at 2.5 V when held for 72 h.
机译:我们呈现一种液相后合成自组装方案,其将粉末形式的碳纳米管(CNT)转化为密集地填充的柔性,鲁棒和无粘合剂的无宏观膜,其具有分层孔结构。我们采用电荷转移工程来自发地将CNT分散在液体介质中。加工方案对CNT的内在特性有限或没有影响。随着CNT膜的厚度增加,我们观察到逐渐过渡到膜的弯曲性能下的高柔韧性和脆性。无粘合剂的CNT膜具有大于水的大质量密度(1.0g cm(-3))。我们将膜中的CNT的质量与膜的厚度相关联,得到的块状质量密度与1.11g cm(-3)+/- 0.03g cm(-3)相似。我们证明了CNT膜作为原始和氧化的单/堆叠固态电容器的电极以及原始的交叉分支的微型涂料,其显示与32ms类似的时间常数,即使在10 000周期之后也没有降解。电容器在宽范围的温度范围内显示出非常良好的温度依赖性,循环性能良好,循环性能高达90℃。在室温下的假偶联CNT电极的比电容为72 f g(-1),增加到100 f g( - 1)在70℃下。当保持72小时时,双极堆叠固态电容器的漏电流在2.5V下类似于100纳米(-2)。

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