Li Mingyang, He Xinjun, Zeng Yinxiang, Chen Meiqiong, Zhang Ziyang, Yang Hao, Fang Pingping, Lu Xihong, Tong Yexiang
KLGHEI of Environment and Energy Chemistry , MOE of the Key Laboratory of Bioinorganic and Synthetic Chemistry , School of Chemistry and Chemical Engineering , Sun Yat-Sen University , Guangzhou 510275 , China . Email:
Dongguan Key Laboratory of Green Energy , City College of Dongguan University of Technology , Wenchang Road , Dongguan , 523419 China.
Chem Sci. 2015 Dec 1;6(12):6799-6805. doi: 10.1039/c5sc03249k. Epub 2015 Sep 18.
Hydrogen gas is emerging as an attractive fuel with high energy density for the direction of energy resources in the future. Designing integrated devices based on a photoelectrochemical (PEC) cell and a microbial fuel cell (MFC) represents a promising strategy to produce hydrogen fuel at a low price. In this work, we demonstrate a new solar-microbial (PEC-MFC) hybrid device based on the oxygen-deficient NbO nanoporous (NbO NPs) anodes for sustainable hydrogen generation without external bias for the first time. Owing to the improved conductivity and porous structure, the as-prepared NbO NPs film yields a remarkable photocurrent density of 0.9 mA cm at 0.6 V ( SCE) in 1 M KOH aqueous solution under light irradiation, and can achieve a maximum power density of 1196 mW m when used as an anode in a MFC device. More importantly, a solar-microbial hybrid system by combining a PEC cell with a MFC is designed, in which the NbO NPs electrodes function as both anodes. The as-fabricated PEC-MFC hybrid device can simultaneously realize electricity and hydrogen using organic matter and solar light at zero external bias. This novel design and attempt might provide guidance for other materials to convert and store energy.
氢气正成为一种具有高能量密度的有吸引力的燃料,适用于未来能源资源的发展方向。设计基于光电化学(PEC)电池和微生物燃料电池(MFC)的集成装置是一种以低价生产氢燃料的有前景的策略。在这项工作中,我们首次展示了一种基于缺氧的氧化铌纳米多孔(NbO NPs)阳极的新型太阳能-微生物(PEC-MFC)混合装置,用于在无外部偏压的情况下可持续产氢。由于导电性和多孔结构的改善,所制备的NbO NPs薄膜在光照下于1 M KOH水溶液中在0.6 V(饱和甘汞电极)时产生了0.9 mA cm的显著光电流密度,并且在用作MFC装置的阳极时可实现1196 mW m的最大功率密度。更重要的是,设计了一种通过将PEC电池与MFC相结合的太阳能-微生物混合系统,其中NbO NPs电极同时用作两个阳极。所制备的PEC-MFC混合装置可以在零外部偏压下利用有机物和太阳光同时实现发电和产氢。这种新颖的设计和尝试可能为其他材料的能量转换和存储提供指导。