School of Chemistry and Chemical Engineering/Guangzhou Key Laboratory for Clean Energy and Materials, Guangzhou University, Guangzhou 510006, China.
School of Life Science, Guangzhou University, Guangzhou 510006, China.
Bioelectrochemistry. 2021 Apr;138:107717. doi: 10.1016/j.bioelechem.2020.107717. Epub 2020 Nov 29.
The slow kinetics of oxygen reduction reaction (ORR) and the formation of biofilm on cathode severely limited the performance of microbial fuel cells (MFCs). An efficient way to enhance the power-generation capacity and long-term stability of MFCs is to develop bifunctional catalyst by incorporating the efficient ORR catalysts with antibacterial ingredient. In this study, the Ag/Co-N-C nanosheets were designed and synthesized by decorating Ag nanoparticles (NPs) onto Co-N-C nanosheets, which were prepared from Zn/Co bimetallic metal-organic framework (ZIF-67/ZIF-8) precursor. The Zn/Co ratio, Ag doping amount and the calcination temperature of the precursor were systematically investigated. The optimum sample Ag/Co-N-C-30 revealed the excellent ORR performance with a half-wave potential of 0.80 V vs. RHE, which was slightly lower than that of Pt/C (0.82 V vs. RHE). The MFCs equipped with Ag/Co-N-C-30 cathode exhibited maximum power density of 548 ± 12.6 mW m and superior durability even after 1600 h operation. Besides, the selective antimicrobial ability of Ag/Co-N-C-30 was further explored and the aerobic bacteria in cathode biofilm was found to be obviously inhibited by Ag/Co-N-C-30. The results suggested the Ag/Co-N-C nanosheets can serve as a promising cathode catalyst for practical applications of MFCs.
氧还原反应(ORR)的缓慢动力学和阴极生物膜的形成严重限制了微生物燃料电池(MFC)的性能。提高 MFC 发电能力和长期稳定性的有效方法是通过将高效的 ORR 催化剂与抗菌成分相结合来开发双功能催化剂。在这项研究中,通过将 Ag 纳米颗粒(NPs)修饰到 Co-N-C 纳米片上,设计并合成了 Ag/Co-N-C 纳米片,该 Co-N-C 纳米片由 Zn/Co 双金属金属有机骨架(ZIF-67/ZIF-8)前体制备。系统研究了 Zn/Co 比、Ag 掺杂量和前体的煅烧温度。最佳样品 Ag/Co-N-C-30 表现出优异的 ORR 性能,半波电位为 0.80 V 与 RHE 相比,略低于 Pt/C(0.82 V 与 RHE 相比)。配备 Ag/Co-N-C-30 阴极的 MFC 表现出最大的功率密度为 548 ± 12.6 mW m,并且在 1600 h 的运行后具有出色的耐用性。此外,还进一步探索了 Ag/Co-N-C-30 的选择性抗菌能力,发现 Ag/Co-N-C-30 明显抑制了阴极生物膜中的需氧细菌。结果表明,Ag/Co-N-C 纳米片可以作为一种有前途的 MFC 实际应用的阴极催化剂。