...
首页> 外文期刊>Crystal growth & design >Mechanical-agitation-assisted growth of large-scale and uniform ZnO nanorod arrays within 3D multichannel monolithic substrates
【24h】

Mechanical-agitation-assisted growth of large-scale and uniform ZnO nanorod arrays within 3D multichannel monolithic substrates

机译:机械搅拌辅助在3D多通道整体式基质内大规模且均匀的ZnO纳米棒阵列的生长

获取原文
获取原文并翻译 | 示例
           

摘要

The assembly of nanomaterials with accurate morphology, size, and orientation control in 3D space-confined structures is crucial for the practical and widespread application of nanotechnology. Using a green and low-cost hydrothermal method, we successfully synthesized uniformly distributed ZnO nanorod (NR) arrays throughout commercially available 3D multichannel honeycomb cordierite substrates on a large scale. Through mechanical agitation such as ultrasonic vibration during dip-coating and magnetic stirring during hydrothermal processing, the mass transport of precursors was enhanced within 3D confined channels so as to enhance the uniformity of nanostructure seeding and nanoarray growth on the monoliths. Selected mechanical agitation parameters such as the stirring rate and the geometry of the monolithic channels were found to be closely relevant to the controlled growth of nanostructures within different-sized 3D channeled substrates, as suggested by computational fluid dynamics analysis. Furthermore, other growth parameters such as temperature, precursor concentration, and ZnO base growth were also found to be relevant to the control of the size, morphology, and uniformity of as-grown ZnO nanorod arrays in 3D confined spaces. The understanding developed here could be extended to different materials systems and growth substrates (reactors) with 3D confined spaces.
机译:在3D空间受限的结构中具有精确的形态,尺寸和方向控制的纳米材料组装对于纳米技术的实际和广泛应用至关重要。使用绿色且低成本的水热法,我们成功地大规模地在整个商用3D多通道蜂窝状堇青石基材上合成了均匀分布的ZnO纳米棒(NR)阵列。通过机械搅拌(例如浸涂过程中的超声振动和水热处理过程中的电磁搅拌),前驱体在3D受限通道内的传质得到了增强,从而增强了整体结构上纳米结构晶种和纳米阵列生长的均匀性。如计算流体动力学分析所建议的,发现选定的机械搅拌参数(例如搅拌速率和整体通道的几何形状)与不同尺寸的3D通道基质内纳米结构的受控生长密切相关。此外,还发现其他生长参数(例如温度,前驱物浓度和ZnO碱生长)与3D受限空间中生长的ZnO纳米棒阵列的尺寸,形态和均匀性的控制有关。此处形成的理解可以扩展到具有3D受限空间的不同材料系统和生长基板(反应器)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号