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Role of self-assembly in construction of inorganic nanostructural materials 被引量:3

Role of self-assembly in construction of inorganic nanostructural materials
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摘要 Understanding the evolution process and formation mechanism of nanoscale structures is crucial to controllable synthesis of inorganic nanomaterials with well-defined geometries and unique functionalities. In addition to the conventional Ostwald ripening process, oriented aggregation has been recently found to be prevalent in nanocrystal growth. In this new mechanism, primary small nanocrystals firstly spontaneously aggregate in the manner of oriented attachment, and then the large crystalline materials are formed via the process of interparticle recrystallization. Furthermore, controllable fabrication of the ordered nanocrystal solid materials that has shown specific collective properties will promote the application of inorganic nanocrystal in devices. Therefore, investigation of the mechanism of oriented aggregation is essential to controllable synthesis of nanocrystals and ordered nanocrystal solid materials. In this review, we summarize recent advances in the preparation of nanocrystal materials, which are mostly focused on our work about the role of self-assembly in construction of inorganic nanostructural materials. Understanding the evolution process and formation mechanism of nanoscale structures is crucial to controllable synthesis of inorganic nanomaterials with well-defined geometries and unique functionalities. In addition to the conventional Ostwald rip- ening process, oriented aggregation has been recently found to be prevalent in nanocrystal growth. In this new mechanism, primary small nanocrystals firstly spontaneously aggregate in the manner of oriented attachment, and then the large crystalline materials are formed via the process of interparticle recrystallization. Furthermore, controllable fabrication of the ordered nanocrystal solid materials that has shown specific collective properties will promote the application of inorganic nanocrystal in devices. Therefore, investigation of the mechanism of oriented aggregation is essential to controllable synthesis of nano- crystals and ordered nanocrystal solid materials. In this review, we summarize recent advances in the preparation of nanocrys- tal materials, which are mostly focused on our work about the role of self-assembly in construction of inorganic nanostructural materials.
出处 《Science China Chemistry》 SCIE EI CAS 2012年第11期2272-2282,共11页 中国科学(化学英文版)
基金 supported by the National Natural Science Foundation for Distinguished Youth Scholars of China (21025310, Z.Y.T.) National Natural Science Foundation of China (91027011, Z.Y.T.) National Basic Research Program of China (973 Program) (2009CB930401,Z.Y.T.)
关键词 纳米结构材料 无机纳米材料 自组装 纳米固体材料 再结晶过程 纳米晶体 纳米晶材料 几何形状 inorganic nanocrystai, oriented aggregation, self-assembly, driving forces
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