Santino Luciano M, Diao Yifan, Yang Haoru, Lu Yang, Wang Hongmin, Hwang Erica, D'Arcy Julio M
Department of Chemistry, Washington University in St. Louis, St. Louis, MO 63130, USA.
Institute of Materials Science and Engineering, Washington University in St. Louis, St. Louis, MO 63130, USA.
Nanoscale. 2019 Jul 7;11(25):12358-12369. doi: 10.1039/c9nr02771h. Epub 2019 Jun 19.
Freestanding, contiguous, and translucent polypyrrole nanonets are prepared within 90 minutes at room temperature in Petri dishes by exposing aqueous oxidant to static pyrrole vapor. The nanonets are 150 nm thick, with variable densities depending on polymerization time. The nanonets maintain a low sheet resistance of 29.1 Ω□ at 30% optical transmission, and 423 Ω□ at 50% transmission. A mechanism is proposed in which polypyrrole islands serve as nucleation sites for further surface-tension constrained polymerization. The nanonets exhibit a high degree of electrochemical dopability (over 24%). Nets are robust and processable, as evidenced by their ability to drape over 2D and 3D substrates. Large areas of films are manually twisted into highly porous sub-millimeter diameter conductive wires, able to recover their two-dimensional structure upon immersion in solvents. Moreover, nanonets exhibit a high specific capacitance of 518 F g for a 1.2 V potential window. Electrochemical capacitors fabricated with nanonet active electrodes show a high energy density of 9.86 W h kg at 1775 W kg when charged to 0.8 V.
通过将水性氧化剂暴露于静态吡咯蒸气中,在室温下于培养皿中90分钟内制备出独立、连续且半透明的聚吡咯纳米网。这些纳米网厚度为150纳米,密度随聚合时间而变化。纳米网在30%光透射率下保持29.1Ω□的低面电阻,在50%透射率下为423Ω□。提出了一种机制,其中聚吡咯岛作为进一步受表面张力约束聚合的成核位点。纳米网表现出高度的电化学可掺杂性(超过24%)。纳米网坚固且可加工,它们能够覆盖二维和三维基板就证明了这一点。大面积的薄膜被手动扭曲成高度多孔的亚毫米直径导电丝,浸入溶剂后能够恢复其二维结构。此外,对于1.2V的电势窗口,纳米网表现出518F g的高比电容。用纳米网活性电极制造的电化学电容器在充电至0.8V时,在1775W kg下显示出9.86W h kg的高能量密度。