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A direct-write method for preparing a bimetal sulfide/graphene composite as a free-standing electrode for high-performance microsupercapacitors

机译:一种直接写入方法,用于制备双金属硫化物/石墨烯复合材料,作为高性能微型电路仪的独立电极

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It is a great challenge to ideally integrate graphene with its unique two-dimensional (2D) and porous structure into the pseudocapacitive materials. In this paper, a simple technique, i.e. direct-laser-writing (DLW), was developed to fabricate microsupercapacitors (MSCs) with excellent electrochemical performance, marked as Ni–Co–S/laser induced graphene (LIG) that exhibit a high areal specific capacitance of 680 mF cm ~(?2) at the current density of 1 mA cm ~(?2) . A symmetric MSC device was assembled using Ni–Co–S/LIG as a positive electrode and active carbon (AC) as the negative electrode, and exhibited a high areal energy density of 56.9 μW h cm ~(?2) at the power density of 800 μW cm ~(?2) , and excellent cycling stability maintaining 89.6% of the areal specific capacitance after 8000 cycles. The synergistic effect of bimetallic Ni–Co–S and the LIG with the 2D structure results in the excellent electrochemical performance. This work demonstrates a method to integrate Ni–Co–S pseudocapacitive materials into porous graphene with a direct-laser-writing technique. The produced integrated materials possess high energy density that can be used in MSCs.
机译:理想地将石墨烯与其独特的二维(2D)和多孔结构集成到假偶像物质中是一个巨大的挑战。在本文中,开发了一种简单的技术,即直接激光写入(DLW),以制造具有优异的电化学性能的微型电路诱导仪(MSCs),标记为表现出高度的Ni-Co-S /激光诱导的石墨烯(LIG)在电流密度为1 mA cm〜(Δ2)的比电容为680mF cm〜(Δ2)。使用Ni-Co-S / Lig作为正极和活性炭(AC)作为负电极组装一个对称MSC器件,并且在功率密度下表现出56.9μWHcm〜(Δ2)的高面积能密度800μWCM〜(α2),优异的循环稳定性保持8000次循环后的面积特异性电容的89.6%。双金属Ni-Co-S和Lig与2D结构的协同作用导致优异的电化学性能。该工作证明了一种用直接激光写入技术将Ni-Co-S伪容量材料集成到多孔石墨烯中的方法。所生产的集成材料具有高能量密度可用于MSCs。

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