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Interfacing biosynthetic CdS with engineered Rhodopseudomonas palustris for efficient visible light-driven CO_(2)-CH_(4) conversion
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作者 Yu Zhang yulei qian +4 位作者 Zhenye Tong Su Yan Xiaoyu Yong Yang-Chun Yong Jun Zhou 《Frontiers of Chemical Science and Engineering》 SCIE EI CSCD 2024年第10期1-12,共12页
Engineered photosynthetic bacterium Rhodo-pseudomonas palustris is excellent at one-step CO_(2) biomethanation and can use near-infrared light sources,overcoming the limitations of conventional photosynthetic systems.... Engineered photosynthetic bacterium Rhodo-pseudomonas palustris is excellent at one-step CO_(2) biomethanation and can use near-infrared light sources,overcoming the limitations of conventional photosynthetic systems.The current study constructed a biohybrid system that deposited CdS nanoparticles on R.palustris.This biohybrid system broadens the capture of sustainable solar energy,achieving a 155 nmol-mL-biological CH,production under full visible light irradiation,13.4-fold of that by the pure R.palustris.The transcriptome profiles revealed that gene expression related to photosynthetic electron transfer chain,nitrogenase,nanofilaments,and redox stress defense was activated.Accordingly,we attributed the much-enhanced CO_(2) biomethanation in the biohybrid system to the remarkable increase in the intracellular reducing power and the stronger rigidity of the cells assisted by photoexcited electrons from CdS nanoparticles.Our discovery offers insight and a promising strategy forimproving the current CO_(2)-CH_(4) biomanufacturing system. 展开更多
关键词 CO_(2)methanation Rhodopseudomonas palustris CdS nanoparticles green catalysis
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