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首页> 外文期刊>Advanced Sustainable Systems >Biomimetic Wood-Inspired Batteries: Fabrication, Electrochemical Performance, and Sustainability within a Circular Perspective
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Biomimetic Wood-Inspired Batteries: Fabrication, Electrochemical Performance, and Sustainability within a Circular Perspective

机译:仿生Wood-Inspired电池:制造、电化学性能和可持续性在一个圆形的角度来看

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摘要

Nature's hierarchical materials offer exceptional multifunctional properties thanks to their evolution over millions of years to reach the most optimized organization in terms of function, structure, or chemistry. Exploiting the unique features of natural materials through biomimicry offers an exciting research field with large potential for new discoveries. Wood, as one of the most fascinating biomaterials, combines unique mechanical properties, an anisotropic hierarchical porosity optimized to provide rapid, and low tortuosity pathways for nutrient/water transport, abundance, and biodegradability. Accordingly, wood has inspired scientists to mimic its outstanding properties in artificial analogues to develop batteries with remarkable electrochemical performance. For instance, its sophisticated structure can be transferred to solid-state materials through biomimetic templating to increase the lifespan and energy density of batteries, while its inherent hierarchical multi-channeled structure allowsthe synthesis of current collectors with enhanced ion and electron diffusivity. This Review highlights the recent progress into the application of wood as a hierarchically porous and renewable material to develop different battery components, includingthe cathode, the anode, the separator, and current collectors. The potential of wood-inspired batteries to lessen the pressure over critical raw materials and additional environmental sustainability benefits are highlighted within a circular economy perspective.
机译:自然的层次提供特殊材料由于多功能属性经过数百万年的进化到达大多数优化组织的功能,结构,或化学。通过生物仿生天然材料的特性提供了一个令人兴奋的研究领域与大潜在的新发现。最吸引人的生物材料,结合了独特的机械性能,一个各向异性分层孔隙度优化提供快速、和较低的弯曲度途径营养/水运输、丰度和生物降解性。因此,木材激发了科学家在人工模拟其杰出的属性类似电池的发展电化学性能。可以转移到复杂的结构固态材料通过仿生模板增加寿命和能量密度的电池,而其固有的分层多通道结构allowsthe的合成与增强的离子电流收集器和电子扩散系数。木头的最新进展到应用程序作为一个层级结构多孔和可再生材料开发不同的电池组件,包括阴极、阳极、分隔符,和当前的收藏家。wood-inspired电池来减轻压力在关键原材料和额外的环境可持续性的好处是强调在一个循环经济视角。

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