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A negative working potential supercapacitor electrode consisting of a continuous nanoporous Fe-Ni network

机译:消极的工作潜在的超级电容器电极组成的一个连续的纳米多孔

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A new class of electrochemical electrodes operating in a negative voltage window has been developed by sintering chemically prepared Fe-Ni nanoparticles into a porous nanoscale mixture of an Fe-rich BCC Fe(Ni) phase and a Ni-rich FCC Fe-Ni phase. The selective conversion of the Fe-rich phase to hydroxides provides the electrochemically active component of the electrodes while the Ni-rich phase provides high conductivity and structural stability. The compositionally optimized electrodes exhibit a specific capacitance in excess of 350 F g(-1) (all normalizations are to the total electrode mass rather than the much smaller electrochemically active mass) and retain more than 85% of their maximum specific capacitance after 2000 charging/discharging cycles. In addition to their inexpensive constituents, these electrodes are self-supporting and their thickness and mass loading density of about 65 mu m and 20 mg cm(-2) are compatible with the established manufacturing processes. This desirable combination of physical and electrochemical properties suggests that these electrodes may be useful as the negative electrode in high performance asymmetric supercapacitors.
机译:一种新的电化学电极操作在一个负电压窗口由烧结化学Fe-Ni做好准备纳米颗粒的多孔纳米混合物一个Fe-rich BCC和Ni-rich FCC Fe (Ni)阶段Fe-Ni阶段。Fe-rich相氢氧化物提供了电化学的组件电极而Ni-rich阶段提供高电导率和结构稳定性。构图优化电极表现出比电容超过350 F g (1)(所有形式总电极质量,而不是更小电化学质量)和保留更多85%的最大的比电容2000年之后充电/放电循环。除了他们的廉价的成分,这些电极是自营和他们厚度和质量负荷密度约为65亩m和20毫克厘米(2)兼容建立了生产流程。理想的物理的结合电化学性能表明这些可能是有用的作为负电极电极在高绩效不对称超级电容器。

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