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Biomimetic fabrication of highly ordered laminae-trestle-laminae structured copper aero-sponge

机译:仿生制备高度有序的laminae-trestle-laminae结构化铜aero-sponge

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Light-weight metallic aero-sponges are highly desirable for electronics, energy storage, catalysis and environmental remediation. Although several fabrication methods have been developed, the mechanical strength and the structural fatigue resistance of the metallic aero-sponges remain unsatisfactory. Loofah sponge is known for its mechanical strength and grease absorption due to its highly ordered hierarchical laminae-trestle-laminae (L-T-L) microstructure. Inspired by this structure-function relationship, we engineered a highly ordered L-T-L structured copper aero-sponge by unidirectional freeze-casting of copper nanowires (CuNWs) and polyvinyl alcohols (PVA). By this approach, water-to-ice crystallization shaped the building blocks into vertically distributed microchannels and horizontally arranged hollow pores. The copper aero-sponge exhibits anisotropic mechanical elasticity with a maximum tolerable compressive stress of 57 kPa, sustainable resilience at a strain of 75% and structure-induced hydrophobicity with a water contact angle more than 130 degrees. The elasticity and hydrophobicity of the copper aero-sponge are also superior to those of the mimicked loofah sponge and copper aero-sponge with disordered pore structure made by the conventional freeze-casting. This work can be extended to manufacture novel bioinspired aero-sponges/aero-gels with hierarchical ordered microstructures.
机译:轻质金属aero-sponges高度理想的电子、能源存储,催化和环境修复。一些制备方法已经被开发出来,机械强度和结构金属aero-sponges的抗疲劳强度仍不满意。由于其机械强度和油脂吸收高度有序的层次laminae-trestle-laminae (L-T-L)的微观结构。受这种结构关系,我们设计了一个高度有序的L-T-L结构铜aero-sponge由单向freeze-casting铜纳米线(CuNWs)和聚乙烯醇(PVA)。water-to-ice结晶形状的建筑块垂直分布式微通道和水平安排空心毛孔。铜aero-sponge展览各向异性机械弹性最大可容忍的压应力的57个kPa,可持续的弹性应变为75%,structure-induced疏水性和水接触角大于130度。弹性和疏水性的铜aero-sponge也优越的模仿aero-sponge丝瓜海绵和铜无序的孔隙结构传统freeze-casting。扩展到制造小说bioinspiredaero-sponges / aero-gels层次有序微观结构。

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