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Steamed cake-derived 3D carbon foam with surface anchored carbon nanoparticles as freestanding anodes for high-performance microbial fuel cells

机译:蒸糕衍生的3D碳泡沫,表面锚定的碳纳米颗粒作为独立的阳极,用于高性能微生物燃料电池

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摘要

Anode design is highly significant for microbial fuel cells, since it simultaneously serves as the scaffold for electroactive microorganisms and as a medium for electron migration. In this study, a stiff 3D carbon foam with surface anchored nitrogen-containing carbon nanoparticles was facilely constructed via in-situ polyaniline coating of carbonized steamed cake prior to the carbonization process. The resultant product was determined to be an excellent freestanding anode that enabled the microbial fuel cell to deliver a maximum power density of up to 1307 mW/m2, which significantly outperformed its non-coated counterpart, the widely used commercial carbon felt. Further investigations revealed that the overall performance enhancement was associated with the open porosity, enlarged electroactive surface, increased biocompatibility, and decreased electric resistance of the anode scaffold. This promising anode material would offer a green and economical option for fabricating high-performance microbial fuel cell-based devices towards various ends.
机译:阳极设计对于微生物燃料电池而言非常重要,因为它同时充当电活性微生物的支架和电子迁移的介质。在这项研究中,在碳化过程之前,通过碳化的蒸饼的原位聚苯胺涂层,可以轻松构建具有表面锚定的含氮碳纳米颗粒的硬质3D碳泡沫。经确定,所得产品是出色的独立式阳极,可使微生物燃料电池提供高达1307 mW / m2的最大功率密度,明显优于其非涂层的,广泛使用的商品碳毡。进一步的研究表明,总体性能的提高与开孔率,扩大的电活性表面,增加的生物相容性以及降低的阳极支架电阻有关。这种有前途的阳极材料将为制造面向各种目的的高性能微生物燃料电池基器件提供绿色且经济的选择。

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