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Specific Surface Areas of Porous Cu Manufactured by Lost Carbonate Sintering: Measurements by Quantitative Stereology and Cyclic Voltammetry

机译:失碳酸盐烧结制得的多孔铜的比表面积:定量立体学和循环伏安法测量

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摘要

Open-cell porous metals have many applications due to high surface area to volume ratios. Porous metals manufactured by the space holder methods have distinctively different porous structure from commercial open-cell metal foams, but very little research has been conducted to characterise the surface area of this class of materials. This paper measured the geometric, electroactive and real surface areas of porous Cu samples manufactured by the Lost Carbonate Sintering process by quantitative stereology and cyclic voltammetry. A cyclic voltammetry (peak current) procedure has been developed and successfully applied to the measurement of electroactive surface areas of the porous Cu. For porous Cu samples with pore sizes 75-1500 µm and porosities 0.5-0.8, the volumetric and gravimetric specific geometric, electroactive and real surface areas are in the ranges of 15-90 cm-1 and 5-45 cm2/g, 200-400 cm-1 and 40-130 cm2/g, and 1000-2500 cm-1 and 400-800 cm2/g, respectively, varying with pore size and porosity. The geometric, electroactive and real surface areas are found to result from the contributions from primary porosity, primary and secondary porosities, and surfaces of metal particles, respectively. The measurement methods adopted in this study can provide vital information of surface areas at different length scales, which is important for many applications.
机译:由于高的表面积与体积之比,开孔多孔金属具有许多应用。用空间保持器方法制造的多孔金属具有与商业开孔金属泡沫明显不同的多孔结构,但是很少进行研究来表征这类材料的表面积。本文通过定量立体学和循环伏安法测量了通过失碳酸盐烧结工艺制备的多孔铜样品的几何,电活性和实际表面积。已经开发了循环伏安法(峰值电流)程序,并将其成功应用于多孔铜电活性表面积的测量。对于孔径为75-1500 µm,孔隙率为0.5-0.8的多孔Cu样品,其体积和重量比几何,电活性和实际表面积范围为15-90 cm-1和5-45 cm2 / g,200- 400 cm-1和40-130 cm2 / g,以及1000-2500 cm-1和400-800 cm2 / g,随孔径和孔隙率而变化。发现几何,电活性和实际表面积分别来自于主要孔隙率,主要和次要孔隙率以及金属颗粒表面的贡献。本研究中采用的测量方法可以提供不同长度尺度上的重要表面积信息,这对于许多应用程序而言非常重要。

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