光合作用
生物矿化
制氢
胶体金
化学
人工光合作用
纳米颗粒
纳米技术
光系统I
小球藻
蓝藻
材料科学
生物物理学
氢
光系统II
生物化学
生物
植物
天体生物学
光催化
催化作用
藻类
细菌
有机化学
遗传学
作者
Xueying Zhu,Zhijun Xu,Haitao Tang,Lanheng Nie,Rui Nie,Ruifang Wang,Xiaoman Liu,Xin Huang
标识
DOI:10.1002/anie.202308437
摘要
Abstract Engineering living microorganisms to enhance green biomanufacturing for the development of sustainable and carbon‐neutral energy strategies has attracted the interest of researchers from a wide range of scientific communities. In this study, we develop a method to achieve photosynthesis‐mediated biomineralization of gold nanoparticles (AuNPs) inside Chlorella cells, where the photosynthesis‐dominated reduction of Au 3+ to Au 0 allows the formed AuNPs to locate preferentially around the thylakoid membrane domain. In particular, we reveal that the electrons generated by the localized surface plasmon resonance of AuNPs could greatly augment hypoxic photosynthesis, which then promotes the generation and transferring of photoelectrons throughout the photosynthetic chain for augmented hydrogen production under sunlight. We demonstrate that the electrons from AuNPs could be directly transferred to hydrogenase, giving rise to an 8.3‐fold enhancement of Chlorella cells hydrogen production independent of the cellular photosynthetic process under monochromatic 560 nm light irradiation. Overall, the photosynthesis‐mediated intracellular biomineralization of AuNPs could contribute to a novel paradigm for functionalizing Chlorella cells to augment biomanufacturing.
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