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Effects of (NH_4)_2SO_4 and BTA on the nanostructure of copper foam prepared by electrodeposition

机译:(NH_4)_2SO_4和BTA对电沉积泡沫铜纳米结构的影响

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摘要

Copper foam with dendritic copper nanostructure was synthesized by an electrodeposition process using hydrogen bubbles as dynamic templates. To modify the morphology of the copper nanostructure in the foam walls, (NH_4)_2SO_4 and BTA (benzotriazole) were introduced into the electrolytic bath as chemical additives, and their influences on the morphologies and the structural characteristics of copper deposits were examined by scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The mechanical strength and stiffness of the copper foam were evaluated by the compression test. The corncob-like deposits of the copper foam were changed to needle-like nanodendrites by the addition of (NH_4)_2SO_4, which significantly improved the mechanical strength and stiffness due to the self-supporting effects of the tightly interlocked needle-like nanodendrites. In contrast, the copper foam prepared from the solution with (NH_4)_2SO_4 and BTA shows high ductility but low mechanical strength due to the formation to grape-like copper deposits. Both the copper foams exhibited higher mechanical properties than the one with corncob-like deposits formed in the additive-free solution. The reaction mechanism of (NH_4)_2SO_4 and BTA on the nanostructure of the copper foam at high cathodic current density was clarified by analyzing the effects of the additives on the copper deposition reaction and hydrogen gas evolution reaction, respectively.
机译:以氢气泡为动态模板,通过电沉积工艺合成了具有树枝状铜纳米结构的泡沫铜。为了改变泡沫壁中铜纳米结构的形貌,将(NH_4)_2SO_4和BTA(苯并三唑)作为化学添加剂引入到电解槽中,并通过扫描电子检查了它们对铜形貌和结构特征的影响显微镜(SEM)和透射电子显微镜(TEM)。通过压缩试验评价泡沫铜的机械强度和刚度。通过添加(NH_4)_2SO_4,铜泡沫的玉米芯状沉积物变为针状纳米枝晶,由于紧密互锁的针状纳米枝晶的自支撑作用,其显着提高了机械强度和刚度。相反,由具有(NH_4)_2SO_4和BTA的溶液制备的泡沫铜由于具有葡萄状的铜沉积物而显示出高延展性但机械强度低。与在无添加剂溶液中形成玉米芯状沉积物的泡沫相比,两种铜泡沫均显示出更高的机械性能。通过分析添加剂对铜沉积反应和析氢反应的影响,阐明了(NH_4)_2SO_4和BTA在高阴极电流密度下对泡沫铜纳米结构的反应机理。

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