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Extreme biomimetics: Preservation of molecular detail in centimeter-scale samples of biological meshes laid down by sponges

机译:极端的仿生动物:保留海绵所覆盖的厘米级生物网格样品中的分子细节

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摘要

Fabrication of biomimetic materials and scaffolds is usually a micro- or even nanoscale process; however, most testing and all manufacturing require larger-scale synthesis of nanoscale features. Here, we propose the utilization of naturally prefabricated three-dimensional (3D) spongin scaffolds that preserve molecular detail across centimeter-scale samples. The fine-scale structure of this collagenous resource is stable at temperatures of up to 1200°C and can produce up to 4 × 10–cm–large 3D microfibrous and nanoporous turbostratic graphite. Our findings highlight the fact that this turbostratic graphite is exceptional at preserving the nanostructural features typical for triple-helix collagen. The resulting carbon sponge resembles the shape and unique microarchitecture of the original spongin scaffold. Copper electroplating of the obtained composite leads to a hybrid material with excellent catalytic performance with respect to the reduction of p-nitrophenol in both freshwater and marine environments.
机译:仿生材料和支架的制造通常是微米或什至纳米级的过程。但是,大多数测试和所有制造都需要大规模合成纳米级特征。在这里,我们建议利用天然预制的三维(3D)海绵海绵支架,该支架可以保留厘米级样本中的分子细节。这种胶原蛋白资源的细微结构在高达1200°C的温度下是稳定的,并且可以产生高达4×10–cm–大的3D微纤维和纳米多孔涡轮层石墨。我们的发现突出了这样一个事实,即这种涡轮层石墨在保留三螺旋胶原蛋白典型的纳米结构特征方面表现出色。所得的碳海绵类似于原始海绵支架的形状和独特的微结构。对于在淡水和海洋环境中对硝基苯酚的还原,所获得的复合物的铜电镀导致具有优异催化性能的杂化材料。

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