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利用石英微量天平与原位温度传感器对氧化锌纳米棒阵列的溶液生长进行实时监测。

Real-time monitoring of the solution growth of ZnO nanorods arrays by quartz microbalances and in-situ temperature sensors.

作者信息

Orsini Andrea, Falconi Christian

机构信息

Department of Electronic Engineering, University of Rome Tor Vergata, Via del Politecnico 1, 00133, Rome, Italy.

1] Department of Electronic Engineering, University of Rome Tor Vergata, Via del Politecnico 1, 00133, Rome, Italy [2] CNR IDASC, Via Fosso del Cavaliere, 100, 00133 Rome, Italy.

出版信息

Sci Rep. 2014 Sep 5;4:6285. doi: 10.1038/srep06285.

Abstract

Wet-chemistry methods have crucial advantages for the synthesis of nanostructures, including simple, low-cost, large-area, and low-temperature deposition on almost arbitrary substrates. Nevertheless, the rational design of improved wet-chemistry procedures is extremely difficult because, in practice, only post-synthesis characterization is possible. In fact, the only methods for on-line monitoring the growth of nanostructures in liquids are complex, expensive and introduce intricate artifacts. Here we demonstrate that electro-mechanically resonating substrates and in-situ temperature sensors easily enable an accurate real-time investigation of reaction kinetics and, in combination with conventional SEM imaging, greatly facilitate the rational design of optimized synthesis procedures; in particular, such a simple approach provides useful insight for the development of processes where one or more key parameters are dynamically adjusted. As a proof-of-concept, first, we accurately characterize a process for fabricating arrays of ZnO nanorods; afterwards, we design a dynamic-temperature process that, in comparison with the corresponding constant-temperature procedure, is almost-ideally energy efficient and results in ZnO nanorods with improved characteristics in terms of length, aspect ratio, and total deposited nanorods mass. This is a major step towards the rational design of dynamic procedures for the solution growth of nanostructures.

摘要

湿化学方法在纳米结构合成方面具有关键优势,包括操作简单、成本低、可大面积且能在几乎任意衬底上进行低温沉积。然而,改进湿化学工艺的合理设计极具难度,因为实际上只能进行合成后的表征。事实上,用于在线监测液体中纳米结构生长的唯一方法复杂、昂贵且会引入复杂的假象。在此,我们证明,机电谐振衬底和原位温度传感器能够轻松实现对反应动力学的精确实时研究,并且与传统扫描电子显微镜成像相结合,极大地促进了优化合成工艺的合理设计;特别是,这种简单方法为开发动态调整一个或多个关键参数的工艺提供了有用的见解。作为概念验证,首先,我们精确表征了一种制备氧化锌纳米棒阵列的工艺;之后,我们设计了一种动态温度工艺,与相应的恒温工艺相比,该工艺几乎具有理想的能源效率,并且所制备的氧化锌纳米棒在长度、纵横比和总沉积纳米棒质量方面具有改进的特性。这是朝着合理设计纳米结构溶液生长动态工艺迈出的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c9e/4155340/c25b238e529c/srep06285-f1.jpg

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