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使用自组装墨水在任意表面上定向气溶胶书写有序二氧化硅纳米结构。

Directed aerosol writing of ordered silica nanostructures on arbitrary surfaces with self-assembling inks.

作者信息

Pang Jiebin, Stuecker John N, Jiang Yingbing, Bhakta Ajay J, Branson Eric D, Li Peng, Cesarano Joseph, Sutton David, Calvert Paul, Brinker C Jeffrey

机构信息

NSF/UNM Center for Micro-Engineered Materials, Department of Chemical and Nuclear Engineering, The University of New Mexico, Albuquerque, NM 87131, USA.

出版信息

Small. 2008 Jul;4(7):982-9. doi: 10.1002/smll.200700206.

Abstract

This paper reports the fabrication of micro- and macropatterns of ordered mesostructured silica on arbitrary flat and curved surfaces using a facile robot-directed aerosol printing process. Starting with a homogenous solution of soluble silica, ethanol, water, and surfactant as a self-assembling ink, a columnated stream of aerosol droplets is directed to the substrate surface. For deposition at room temperature droplet coalescence on the substrates and attendant solvent evaporation result in continuous, highly ordered mesophases. The pattern profiles are varied by changing any number of printing parameters such as material deposition rate, printing speed, and aerosol-head temperature. Increasing the aerosol temperature results in a decrease of the mesostructure ordering, since faster solvent evaporation and enhanced silica condensation at higher temperatures kinetically impede the molecular assembly process. This facile technique provides powerful control of the printed materials at both the nanoscale and microscale through chemical self-assembly and robotic engineering, respectively.

摘要

本文报道了一种使用简便的机器人引导气溶胶印刷工艺在任意平面和曲面上制备有序介孔结构二氧化硅的微图案和宏观图案的方法。以可溶性二氧化硅、乙醇、水和表面活性剂的均匀溶液作为自组装墨水开始,一股柱状气溶胶液滴流被引导至基底表面。为了在室温下沉积,液滴在基底上聚结并伴随溶剂蒸发,从而形成连续、高度有序的中间相。通过改变任何数量的印刷参数,如材料沉积速率、印刷速度和气溶胶喷头温度,可以改变图案轮廓。提高气溶胶温度会导致介观结构有序性降低,因为在较高温度下更快的溶剂蒸发和增强的二氧化硅缩合在动力学上阻碍了分子组装过程。这种简便的技术分别通过化学自组装和机器人工程在纳米尺度和微米尺度上对印刷材料提供了强大的控制。

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