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Synergistic improvement of Shewanella loihica PV-4 extracellular electron transfer using a TiO@TiN nanocomposite

Bioelectrochemistry. 2020-03-01; 
Lin Su, Tao Yin, Hongxiu Du, Wen Zhang, Degang Fu
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Gene Synthesis … USA). RT-qPCR (SYBR ?Premix Ex Tap, Takara, Japan) was carried out using a 7500 Fast Real-Time PCR System (Applied Biosystems, USA). Primers (Table S2) were synthesized by Genscript (Nanjing, China). All procedures … Get A Quote

摘要

Extracellular electron transfer (EET) allows microorganisms to perform anaerobic respiration using insoluble electron acceptors, including minerals and electrodes. EET-based applications require efficient electron transfer between living and non-living systems. To improve EET efficiency, the TiO@TiN nanocomposite was used to form hybrid biofilms with Shewanella loihica PV-4 (PV-4). Chronoamperometry showed that peak current was increased 4.6-fold via the addition of the TiO@TiN nanocomposite. Different biofilms were further tested in a dual-chamber microbial fuel cell. The PV-4 biofilm resulted a maximum power density of 33.4?mW/m, while the hybrid biofilm of the TiO@TiN nanocomposite with PV-4 yielded a 92.8%... More

關鍵詞

Biofilms, Current density, Extracellular electron transfer, Microbial electrochemistry, Microbial fuel cell, Nanomaterial
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