降水
结晶
扩散
千分尺
简单(哲学)
化学物理
相(物质)
碳酸盐
化学工程
材料科学
化学
热力学
物理
气象学
有机化学
工程类
哲学
光学
认识论
作者
Willem L. Noorduin,Alison Grinthal,L. Mahadevan,Joanna Aizenberg
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2013-05-17
卷期号:340 (6134): 832-837
被引量:314
标识
DOI:10.1126/science.1234621
摘要
The emergence of complex nano- and microstructures is of fundamental interest, and the ability to program their form has practical ramifications in fields such as optics, catalysis, and electronics. We developed carbonate-silica microstructures in a dynamic reaction-diffusion system that allow us to rationally devise schemes for precisely sculpting a great variety of elementary shapes by diffusion of carbon dioxide (CO2) in a solution of barium chloride and sodium metasilicate. We identify two distinct growth modes and show how continuous and discrete modulations in CO2 concentration, pH, and temperature can be used to deterministically switch between different regimes and create a bouquet of hierarchically assembled multiscale microstructures with unprecedented levels of complexity and precision. These results outline a nanotechnology strategy for "collaborating" with self-assembly processes in real time to build arbitrary tectonic architectures.
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