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Hierarchical Porous Carbon Arising from Metal-Organic Framework-Encapsulated Bacteria and Its Energy Storage Potential

机译:由金属 - 有机骨架 - 包封的细菌及其储能电位产生的分层多孔碳

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摘要

Hierarchical porous carbons (HPCs) hold great promise in energy-related applications owing to their excellent chemical stability and well-developed porous structures. Attention has been drawn toward developing new synthetic strategies and precursor materials that permit greater control over composition, size, morphology, and pore structure. There is a growing trend of employing metal-organic frameworks (MOFs) as HPC precursors as their highly customizable characteristics favor new HPC syntheses. In this article, we report a biomimetically grown bacterial-templated MOF synthesis where the bacteria not only facilitate the formation of MOF nanocrystals but also provide morphology and porosity control. The resultant HPCs show improved electrochemical capacity behavior compared to pristine MOF-derived HPCs. Considering the broad availability of bacteria and ease of their production, in addition to significantly improved MOF growth efficiency on bacterial templates, we believe that the bacterial-templated MOF is a promising strategy to produce a new generation of HPCs.
机译:由于其优异的化学稳定性和发育良好的多孔结构,等级多孔碳(HPCS)在能源相关应用中保持了很大的希望。已经引起了开发新的合成策略和前体材料,允许对组成,大小,形态和孔结构进行更大控制的新型合成策略和前体材料。随着其高度可定制的特征赞成新的HPC合成,将使用金属有机骨架(MOF)作为HPC前体使用的趋势日益增长。在本文中,我们报告了一种生物体上生长的细菌模板合成的合成,其中细菌不仅促进形成MOF纳米晶体,而且还提供形态和孔隙率控制。与原始MOF衍生的HPC相比,所得HPCs显示出改善的电化学能力行为。考虑到细菌和易于生产的广泛可用性,除了对细菌模板的显着提高MOF生长效率外,我们认为细菌模板制造商是一种有望的产生新一代HPC的策略。

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