舍瓦内拉
周质间隙
光热治疗
材料科学
非生物成分
纳米技术
化学工程
化学
生物
生物化学
生态学
细菌
遗传学
大肠杆菌
工程类
基因
作者
Sheng-Lan Gong,Yangchao Tian,Guo‐Ping Sheng,Li-Jiao Tian
标识
DOI:10.1038/s41467-024-48660-z
摘要
Abstract Biotic-abiotic hybrid photocatalytic system is an innovative strategy to capture solar energy. Diversifying solar energy conversion products and balancing photoelectron generation and transduction are critical to unravel the potential of hybrid photocatalysis. Here, we harvest solar energy in a dual mode for Cu 2-x Se nanoparticles biomineralization and seawater desalination by integrating the merits of Shewanella oneidensis MR-1 and biogenic nanoparticles. Photoelectrons generated by extracellular Se 0 nanoparticles power Cu 2-x Se synthesis through two pathways that either cross the outer membrane to activate periplasmic Cu(II) reduction or are directly delivered into the extracellular space for Cu(I) evolution. Meanwhile, photoelectrons drive periplasmic Cu(II) reduction by reversing MtrABC complexes in S. oneidensis . Moreover, the unique photothermal feature of the as-prepared Cu 2-x Se nanoparticles, the natural hydrophilicity, and the linking properties of bacterium offer a convenient way to tailor photothermal membranes for solar water production. This study provides a paradigm for balancing the source and sink of photoelectrons and diversifying solar energy conversion products in biotic-abiotic hybrid platforms.
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