类囊体
纳米技术
光合作用
生化工程
材料科学
计算机科学
生物
叶绿体
工程类
植物
生物化学
基因
作者
Qunshou Kong,Zhimin Zhu,Qin Xu,Feng Yu,Qisheng Wang,Zhihua Gu,Kai Xia,Dawei Jiang,Huating Kong
标识
DOI:10.1002/smtd.202301143
摘要
Abstract “Drawing inspiration from nature” offers a wealth of creative possibilities for designing cutting‐edge materials with improved properties and performance. Nature‐inspired thylakoid‐based nanoarchitectures, seamlessly integrate the inherent structures and functions of natural components with the diverse and controllable characteristics of nanotechnology. These innovative biomaterials have garnered significant attention for their potential in various biomedical applications. Thylakoids possess fundamental traits such as light harvesting, oxygen evolution, and photosynthesis. Through the integration of artificially fabricated nanostructures with distinct physical and chemical properties, novel photosynthetic nanoarchitectures can be catalytically generated, offering versatile functionalities for diverse biomedical applications. In this article, an overview of the properties and extraction methods of thylakoids are provided. Additionally, the recent advancements in the design, preparation, functions, and biomedical applications of a range of thylakoid‐based photosynthetic nanoarchitectures are reviewed. Finally, the foreseeable challenges and future prospects in this field is discussed.
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