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Microwave-assisted Facile and Ultrafast Growth of ZnO Nanostructures and Proposition of Alternative Microwave-assisted Methods to Address Growth Stoppage

机译:ZnO纳米结构的微波辅助快速和快速生长以及替代微波辅助方法来解决生长停止的建议

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摘要

The time constraint in the growth of ZnO nanostructures when using a hydrothermal method is of paramount importance in contemporary research, where a long fabrication time rots the very essence of the research on ZnO nanostructures. In this study, we present the facile and ultrafast growth of ZnO nanostructures in a domestic microwave oven within a pressurized environment in just a few minutes. This method is preferred for the conventional solution-based method because of the ultrafast supersaturation of zinc salts and the fabrication of high-quality nanostructures. The study of the effect of seed layer density, growth time, and the solution’s molar concentration on the morphology, alignment, density, and aspect ratio of ZnO nanorods (ZNRs) is explored. It is found in a microwave-assisted direct growth method that ~5 mins is the optimum time beyond which homogeneous nucleation supersedes heterogeneous nucleation, which results in the growth stoppage of ZNRs. To deal with this issue, we propound different methods such as microwave-assisted solution-replacement, preheating, and PEI-based growth methods, where growth stoppage is addressed and ZNRs with a high aspect ratio can be grown. Furthermore, high-quality ZnO nanoflowers and ZnO nanowalls are fabricated via ammonium hydroxide treatment in a very short time.
机译:当采用水热法时,ZnO纳米结构生长的时间限制在当代研究中极为重要,因为长时间的制造时间使ZnO纳米结构研究的本质失去了本质。在这项研究中,我们介绍了在加压环境中仅需几分钟的时间内,家用微波炉中ZnO纳米结构的快速简便生长。对于常规的基于溶液的方法,此方法是优选的,因为锌盐的超快过饱和和高质量纳米结构的制造。研究了种子层密度,生长时间和溶液摩尔浓度对ZnO纳米棒(ZNRs)的形态,排列,密度和长宽比的影响。在微波辅助直接生长方法中发现,〜5μmin是最佳时间,超过此时间,均匀成核将取代异质成核,从而导致ZNRs的生长停止。为了解决这个问题,我们提出了不同的方法,例如微波辅助溶液置换,预热和基于PEI的生长方法,其中解决了生长停止问题,并且可以生长高纵横比的ZNR。此外,高质量的ZnO纳米花和ZnO纳米壁是在很短的时间内通过氢氧化铵处理制成的。

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