纳米技术
生化工程
材料科学
人工光合作用
机制(生物学)
工艺工程
计算机科学
光催化
催化作用
化学
有机化学
认识论
工程类
哲学
作者
Jiayuan Shen,Yun Liu,Liang Qiao
标识
DOI:10.1021/acsami.2c19528
摘要
By simulating natural photosynthesis, the desirable high-value chemical products and clean fuels can be sustainably generated with solar energy. Whole-cell-based photosensitized biohybrid system, which innovatively couples the excellent light-harvesting capacity of semiconductor materials with the efficient catalytic ability of intracellular biocatalysts, is an appealing interdisciplinary creature to realize photodriven chemical synthesis. In this review, we summarize the constructed whole-cell-based biohybrid systems in different application fields, including carbon dioxide fixation, nitrogen fixation, hydrogen production, and other chemical synthesis. Moreover, we elaborate the charge transfer mechanism studies of representative biohybrids, which can help to deepen the current understanding of the synergistic process between photosensitizers and microorganisms, and provide schemes for building novel biohybrids with less electron transfer resistance, advanced productive efficiency, and functional diversity. Further exploration in this field has the prospect of making a breakthrough on the biotic–abiotic interface that will provide opportunities for multidisciplinary research.
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