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Marker Pen Lithography for Flexible and Curvilinear On-Chip Energy Storage

机译:柔性笔形片上能量存储的记号笔光刻

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摘要

On-chip energy storage using microsupercapacitors can serve the dual role of supplementing batteries for pulse power delivery, and replacement of bulky electrolytic capacitors in ac-line filtering applications. Despite complexity and processing costs, microfabrication techniques are being employed in fabricating a great variety of microsupercapacitor devices. Here, a simple, cost-effective, and versatile strategy is proposed to fabricate flexible and curvilinear microsupercapacitors (MSCs). The protocol involves writing sacrificial ink patterns using commercial marker pens on rigid, flexible, and curvilinear substrates. It is shown that this process can be used in both lift-off and etching modes, and the possibility of multistack design of active materials using simple pen lithography is demonstrated. As a prototype, this method is used to produce conducting polymer MSCs involving both poly(3,4-ethylenedioxythiophene), polyaniline, and metal oxide (MnO2) electrode materials. Typical values of energy density in the range of 5-11 mWh cm-3 at power densities of 1-6 W cm-3 are achieved, which is comparable to thin film batteries and superior to the carbon and metal oxide based microsupercapacitors reported in the literature. The simplicity and broad scope of this innovative strategy can open up new avenues for easy and scalable fabrication of a wide variety of on-chip energy storage devices. © 2015 WILEY-VCH Verlag GmbH and Co. KGaA, Weinheim.
机译:使用微型超级电容器的片上能量存储可以起到补充电池的双重作用,以补充脉冲功率输出,并在交流线路滤波应用中替代笨重的电解电容器。尽管复杂且具有处理成本,但是微制造技术仍被用于制造各种各样的微超级电容器装置。在此,提出了一种简单,经济高效且用途广泛的策略来制造柔性且弯曲的微型超级电容器(MSC)。该协议涉及使用商用记号笔在刚性,柔性和曲线形的基材上书写牺牲性墨水图案。结果表明,该工艺既可用于剥离模式,也可用于蚀刻模式,并证明了使用简单的笔式光刻技术对活性材料进行多层设计的可能性。作为原型,此方法用于生产导电聚合物MSC,其中涉及聚(3,4-乙撑二氧噻吩),聚苯胺和金属氧化物(MnO2)电极材料。在1-6 W cm-3的功率密度下,获得了5-11 mWh cm-3范围内的典型能量密度值,该值可与薄膜电池媲美,并且优于本报告中报道的基于碳和金属氧化物的微型超级电容器。文献。这种创新策略的简单性和广泛性可以为轻松且可扩展地制造各种片上储能器件开辟新途径。 ©2015 WILEY-VCH Verlag GmbH and Co. KGaA,Weinheim。

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