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Development and characterisation of self-assembled graphene hydrogel-based anodes for bioelectrochemical systems. | LitMetric

Development and characterisation of self-assembled graphene hydrogel-based anodes for bioelectrochemical systems.

RSC Adv

Instituto de Energia y Desarrollo Sustentable, Centro Atomico Bariloche, Comision Nacional de Energia Atomica Av. E. Bustillo 9500, 8400 S. C. de Bariloche Rio Negro Argentina +54 294 444 5107.

Published: July 2018

In this work, we report a simple and scalable method to produce high efficiency 3D graphene-based electrodes (GH) for bioelectrochemical systems. GH were obtained by self-assembly of graphene oxide, through slow reduction with ascorbic acid over conductive mesh-works (carbon cloth and stainless-steel). The GH structure and composition were characterised by electron microscopy (SEM) and spectroscopy (FTIR and Raman), whereas the electrodes' performance was tested by chronoamperometry and cyclic voltammetry in a microbial electrolysis cell (MEC) inoculated with a pure culture of . The hydrogel had a broad pore size distribution (>1 μm), which allowed bacterial colonisation within the framework. The macro-porous structure and chemical properties of the hydrogel rendered a higher bacterial loading capacity and substrate oxidation rate than other carbonaceous materials, including different reported graphene electrodes, which significantly increased MEC performance.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9083133PMC
http://dx.doi.org/10.1039/c8ra03846eDOI Listing

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