Hierarchical Integration of ZnO Nanocrystals into Multishelled Superstructures

Hierarchical Integration of ZnO Nanocrystals into Multishelled Superstructures
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ZnO 纳米晶体分层集成到多壳超结构中

DOI:
10.1166/nnl.2011.1178
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发表时间:
2011-06
影响因子:
--
通讯作者:
Xue, Dongfeng
Xue, Dongfeng
中科院分区:
工程技术4区
文献类型:
--
作者:
Wu, Junshu;Xue, Dongfeng

文献摘要

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We have demonstrated a 'bottom-up' paradigm to effectively fabricate multishelled ZnO hollow superstructures in solution phase containing acetone, isopropanol, water, and propanoic acid. These hierarchical shells are composed of closely packed ZnO nanorods. The one-pot solvothermal method provides a mesoscale crystallization process, in which the morphology of ZnO superstructures can be facilely modulated by varying experimental parameters such as reaction time and solvent. Time-dependent synthetic experiments confirm that Ostwald ripening is responsible for the crystallization of multilevel homogeneous ZnO core–shell structure. The hierarchical ripening effect depends on the spatial distribution and solution process of primary crystallites. Porous ZnO hexagonal crystals are achieved without the assistance of propanoic acid, and macroporous ZnO spherical crystals are also yielded in the absence of a defined amount of water. We believe that the chemical technique will further motivate theoretical and experimental researches of the chemical self-transformation hollowing process and can be of general applicability in the fabrication of a wide range of nanoparticle-based hollow architectures.