Ceramics Laboratory, EPFL, Lausanne, Switzerland.
Lab Chip. 2015 Jan 21;15(2):563-74. doi: 10.1039/c4lc01105h.
The development of microreactors that operate under harsh conditions is always of great interest for many applications. Here we present a microfabrication process based on low-temperature co-fired ceramic (LTCC) technology for producing microreactors which are able to perform chemical processes at elevated temperature (>400 °C) and against concentrated harsh chemicals such as sodium hydroxide, sulfuric acid and hydrochloric acid. Various micro-scale cavities and/or fluidic channels were successfully fabricated in these microreactors using a set of combined and optimized LTCC manufacturing processes. Among them, it has been found that laser micromachining and multi-step low-pressure lamination are particularly critical to the fabrication and quality of these microreactors. Demonstration of LTCC microreactors with various embedded fluidic structures is illustrated with a number of examples, including micro-mixers for studies of exothermic reactions, multiple-injection microreactors for ionone production, and high-temperature microreactors for portable hydrogen generation.
在恶劣条件下运行的微反应器的开发一直是许多应用的热点。在这里,我们提出了一种基于低温共烧陶瓷(LTCC)技术的微制造工艺,用于生产能够在高温(>400°C)和浓缩苛刻化学品(如氢氧化钠、硫酸和盐酸)下进行化学反应的微反应器。使用一组组合和优化的 LTCC 制造工艺,在这些微反应器中成功制造了各种微尺度腔和/或流道。其中,已经发现激光微加工和多步低压层压对于这些微反应器的制造和质量特别关键。通过多个示例说明了具有各种嵌入式流道结构的 LTCC 微反应器的演示,包括用于放热反应研究的微混合器、用于紫罗兰酮生产的多注入微反应器以及用于便携式氢气生成的高温微反应器。