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首页> 外文期刊>ChemNanoMat >Laser-Cutting Fabrication of Mxene-Based Flexible Micro-Supercapacitors with High Areal Capacitance
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Laser-Cutting Fabrication of Mxene-Based Flexible Micro-Supercapacitors with High Areal Capacitance

机译:基于MXENE的柔性微型超级电容器激光切割制造,具有高面积电容

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摘要

Flexible micro-supercapacitors (MSCs) in the form of a thin sheet are anticipated to be the thinnest possible structure. High energy storage capacity is an added merit of such devices and is also important for practical applications. In this work, we devise double-side MSCs by using a UV laser to cut interdigital patterns in a 20-m-thick Ni foil with both sides coated with MXene films. Because of the laser beam penetration and the use of MXene slurry to coat films with a high mass loading of approximate to 3mgcm(-2), both surfaces of the Ni sheet can be exploited for energy storage, achieving a high areal capacitance of 52mFcm(-2). Moreover, the fabrication of multiple coplanar MSCs in series or parallel can be accomplished via one-step laser cutting process. In addition to the symmetric design that has a voltage window of 0.6V, we make asymmetric MSCs by assembling two set of Ni finger electrodes coated with porous carbon or Zn as negative electrodes, and MXene as positive electrodes. The carbon//MXene MSC reaches a broader voltage window of 0.8V, and the voltage of Zn//MXene hybrid MSC can be further increased to 1.1V. Our study provides a new strategy to increase the areal energy density of thin sheet MSCs with limited area.
机译:预计薄板形式的柔性微型超级电容器(MSCs)是最薄的结构。高储能容量是此类设备的附加优点,对实际应用也很重要。在这项工作中,我们通过使用UV激光使用UV激光器切割20μm厚的Ni箔中的叉指示,双面设计双面MSCs,两侧涂有蒙薄膜。由于激光束穿透和使用MxENE浆料与大量近似的高质量负荷涂覆薄膜(-2),可以利用Ni片的两个表面进行储能,实现52mFcm的高面积电容( -2)。此外,可以通过一步激光切割过程完成串联或并联的多个共面MSC的制造。除了具有0.6V的电压窗口的对称设计之外,我们通过组装涂有多孔碳或Zn作为负电极的两组Ni指状电极和MxENE作为正电极来制备非对称MSC。 Carbon // MxEne MSC达到0.8V的更宽电压窗口,Zn // mxene杂交MSC的电压可以进一步增加到1.1V。我们的研究提供了一种新的策略,以增加有限区域的薄板MSC的面积能量密度。

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