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首页> 外文期刊>Journal of nanoscience and nanotechnology >One-Pot Size and Interior-Cavity Controlled Synthesis of ZnO Hollow Micro-/Nano-Structured Spheres
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One-Pot Size and Interior-Cavity Controlled Synthesis of ZnO Hollow Micro-/Nano-Structured Spheres

机译:ZnO空心微/纳米结构球的一锅尺寸和内腔控制合成

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In this work, ZnO hollow micro-ano-structured microspheres were prepared via a one-pot solution route. The size and interior-cavity of these microspheres could be easily controlled by varying the precursor concentration. The hollow spherical assemblies were composed of short rod-like building units at low precursor concentration. When the precursor concentration increased, one-dimensional (1D) "pearl-chain-like" building units formed firstly and then self organized into hollow microspheres. The organization process and ripening of "pearl-chain-like" building units could be modulated by simply altering the reaction time. When tested in photocatalytic experiments, the hollow microspheres composed of loosely packed 1D "pearl-chain-like" building units showed higher activity than the densely packed ones. This method is very simple, mild, and may provide a new strategy to synthesize hierarchical self-assembled hollow structures.
机译:在这项工作中,通过一锅解决方案制备了ZnO空心微/纳米结构微球。这些微球的大小和内腔可以通过改变前驱物浓度来轻松控制。中空球形组件由低前驱物浓度的短杆状构建单元组成。当前体浓度增加时,首先形成一维(1D)“珍珠链状”构建单元,然后自组织成空心微球。通过简单地改变反应时间,可以调节“珍珠链状”建筑单元的组织过程和成熟度。当在光催化实验中进行测试时,由松散堆积的一维“珍珠链状”建筑单元组成的空心微球显示出比密集堆积的微球更高的活性。该方法非常简单,温和,可以为合成分层自组装空心结构提供新的策略。

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