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Recent Advances in Hollow Nanostructures: Synthesis Methods, Structural Characteristics, and Applications in Food and Biomedicine
Journal of Agricultural and Food Chemistry ( IF 5.7 ) Pub Date : 2024-09-10 , DOI: 10.1021/acs.jafc.4c05910
Yajuan Li 1 , Jingbo Liu 1 , David Julian McClements 2 , Xin Zhang 3 , Ting Zhang 1 , Zhiyang Du 1
Affiliation  

The development and investigation of innovative nanomaterials stand poised to advance technological progress and meet the contemporary demand for efficient, environmentally friendly, and intelligent products. Hollow nanostructures (HNS), characterized by their hollow architecture, exhibit diverse properties such as expansive specific surface area, low density, high drug-carrying capacity, and customizable structures. These elaborated structures, encompass nanospheres, nanoboxes, rings, cubes, and nanowires, have wide-ranging applications in biomedicine, materials chemistry, food industry, and environmental science. Herein, HNS and their cutting-edge synthesis methods, including solvothermal methods, liquid-interface assembly methods, and the self-templating methods are discussed in-depth. Meanwhile, the potential applications of HNS in food and biomedicine such as food packing, biosensor, and drug delivery over the past three years are summarized, together with a prospective view of future research directions and challenges. This review will offer new insights into designing next generation of hollow nanomaterials for food and biomedicine applications.

中文翻译:


中空纳米结构的最新进展:合成方法、结构特征及其在食品和生物医学中的应用



创新纳米材料的开发和研究必将推动技术进步,满足当代对高效、环保、智能产品的需求。中空纳米结构(HNS)以其中空结构为特征,表现出多种特性,例如广阔的比表面积、低密度、高载药能力和可定制的结构。这些精心设计的结构包括纳米球、纳米盒、环、立方体和纳米线,在生物医学、材料化学、食品工业和环境科学中具有广泛的应用。在此,深入讨论了HNS及其前沿合成方法,包括溶剂热法、液体界面组装法和自模板法。同时,总结了近三年来HNS在食品包装、生物传感器、药物输送等食品和生物医药领域的潜在应用,并对未来的研究方向和挑战进行了展望。这篇综述将为设计用于食品和生物医学应用的下一代中空纳米材料提供新的见解。
更新日期:2024-09-10
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