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Nanoporous nickel fabricated by dealloying of rolled Ni-Mn sheet

机译:通过轧制的Ni-Mn板造成的纳米多孔镍制造

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Metallic nanoporous architecture can be spontaneously attained by dealloying of a binary alloy. Nanoporous nickel are fabricated by dealloying rolled Ni-Mn sheet. Unlike Ni-Al alloy, the initial Ni-Mn alloys had good cold workability because of their fcCc crystal structures. After the electrolysis of the alloys in (NH4)2SO4 aqueous solution, nanoporous architecture of Ni with pore sizes of 10-20 nm was confirmed. Also, a nanoporous/bulk bilayer-stacked Ni electrochemical actuator sheet was fabricated. The stacked bilayer sheet composed of bulk and nanoporous Ni reversibly deformed when a potential of ±1 V was applied in aqueous NaOH solution. The electrochemical actuation is considered to have a strong relationship with the electrical double layer, because cyclic voltammetric measurements suggested that the effect of oxygen adsorption on the surface was minor. The results suggest that nanoporous Ni can be used as an actuator, and it has potential in being applied for commercial use because of its low price and high availability.
机译:通过造成二元合金的易用性可以自发地实现金属纳米多孔结构。纳米多孔镍通过释放轧制的Ni-Mn片材制造。与Ni-Al合金不同,由于其FCCC晶体结构,初始Ni-Mn合金具有良好的冷加工性。在(NH4)2SO4水溶液中的合金电解后,确认含有10-20nm的孔径的Ni的纳米多孔结构。而且,制造了纳米孔/散装双层堆叠的Ni电化学致动器片。当在NaOH水溶液中施加±1V的电位时,由块状和纳米孔Ni组成的堆叠双层片材被可逆地变形。电化学致动被认为具有与电双层有牢固的关系,因为循环伏安测量表明氧气吸附对表面的影响是较小的。结果表明,纳米孔Ni可用作致动器,并且由于其价格低,可用性高,它具有商业用途的潜力。

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