Microbe‐Mediated Biosynthesis of Multidimensional Carbon‐Based Materials for Energy Storage Applications

合成生物学 碳纤维 纳米技术 合理设计 材料科学 生化工程 电化学 计算生物学 生物 化学 工程类 电极 复合数 复合材料 物理化学
作者
Shenghui Shen,Yanbin Chen,Jiancang Zhou,Haomiao Zhang,Xinhui Xia,Yefeng Yang,Yongqi Zhang,Abolhassan Noori,Mir F. Mousavi,Minghua Chen,Yang Xia,Wenkui Zhang
出处
期刊:Advanced Energy Materials [Wiley]
卷期号:13 (19) 被引量:27
标识
DOI:10.1002/aenm.202204259
摘要

Abstract Biosynthesis methods are considered to be a promising technology for engineering new carbon‐based materials or redesigning the existing ones for specific purposes with the aid of synthetic biology. Lots of biosynthetic processes including metabolism, fermentation, biological mineralization, and gene editing have been adopted to prepare novel carbon‐based materials with exceptional properties that cannot be realized by traditional chemical methods, because microbes evolved to possess special abilities to modulate components/structure of materials. In this review, the recent development on carbon‐based materials prepared via different biosynthesis methods and various microbe factories (such as bacteria, yeasts, fungus, viruses, proteins) are systematically reviewed. The types of biotechniques and the corresponding mechanisms for the synthesis of carbon‐based materials are outlined. This review also focuses on the structural design and compositional engineering of carbon‐based nanostructures (e.g., metals, semiconductors, metal oxides, metal sulfides, phosphates, Mxenes) derived from biotechnology and their applications in electrochemical energy storage devices. Moreover, the relationship of the architecture–composition–electrochemical behavior and performance enhancement mechanism is also deeply discussed and analyzed. Finally, the development perspectives and challenges on the biosynthetic carbons are proposed and may pave a new avenue for rational design of advanced materials for the low‐carbon economy.
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