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首页> 外文期刊>Journal of Electrochemical Energy Conversion and Storage >Revealing Three-Dimensional Morphology in Nanoporous Gold Using Three-Dimensional X-Ray Fresnel Coherent Diffractive Imaging Tomography
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Revealing Three-Dimensional Morphology in Nanoporous Gold Using Three-Dimensional X-Ray Fresnel Coherent Diffractive Imaging Tomography

机译:利用三维X射线菲涅耳相干衍射成像断层扫描揭示纳米孔金中的三维形态

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摘要

Nanoporous metals fabricated by dealloying have a unique bi-continuous, sponge-like porous structure with ultra-high surface area. The unique properties of these materials, especially nanoporous gold, have numerous potential applications in sensors and actuators and in energy-related applications such as catalytic materials, super-capacitors, and battery supports. The degree of porosity and size of the metal ligaments are critical parameters that determine many properties and thus govern the functionalities of nanoporous metals in many applications including energy storage and conversion. We used Fresnel coherent diffractive imaging combined with tomographic reconstruction to quantify the nanoscale three-dimensional spatial distribution and homogeneity of the porosity and ligament size within a bulk sample of nanoporous gold. The average porosity and its standard deviation along the axial direction through the sample were determined, as well as the characteristic feature size and its standard deviation. The result shows that free corrosion is an effective way to create homogeneous nanoporous metals with sample sizes on the order of 1 μm.
机译:由易用的纳米孔金属制造具有独特的双连续的海绵状多孔结构,具有超高表面积。这些材料的独特性质,尤其是纳米多孔金,在传感器和致动器中具有许多潜在的应用以及诸如催化材料,超级电容器和电池支撑的能量相关的应用。金属韧带的孔隙度和尺寸是确定许多性质的关键参数,从而控制许多应用中的纳米多孔金属的功能,包括能量存储和转换。我们使用菲涅耳相干衍射成像结合断层重建,以量化纳米多孔金的散装样品内孔隙率的三维空间分布和均匀性。确定平均孔隙率及其通过样品的轴向偏差,以及特征尺寸及其标准偏差。结果表明,自由腐蚀是创建均匀纳米多孔金属的有效方法,其中按1μm的样品尺寸。

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