纳米技术
纳米材料
微生物燃料电池
材料科学
人工光合作用
生化工程
化学
工程类
光催化
电极
生物化学
阳极
物理化学
催化作用
作者
Shihao Tian,Yujing Jiang,Yue Cao,Jianrong Zhang,Yang Zhou,Yuanyuan Wang
标识
DOI:10.1002/chem.202202317
摘要
Abstract Microbial electro‐ and photoelectrochemical CO 2 reduction represents an opportunity to tackle the environmental demand for sustainable fuel production. Nanomaterials critically impact the electricity‐ and solar‐driven microbial CO 2 reduction processes. This minireview comprehensively summarizes the recent developments in the configuration and design of nanomaterials for enhancement of the bacterial adhesion and extracellular electron transfer (EET) processes, based on the modification technologies of improving chemical stability, electrochemical conductivity, biocompatibility, and surface area. Furthermore, the investigation of incorporating non‐photosynthetic microorganisms using advanced light‐harvesting nanostructured photoelectrodes for solar‐to‐chemical conversion, as well as the current understanding of EET mechanisms occurring at photosynthetic semiconductor nanomaterials‐bacteria biohybrid interface is detailed. The crucial factors influencing the performance of microbial CO 2 reduction systems and future perspectives are discussed to provide guidance for the realization of their large‐scale application.
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