Fab on a Package: LTCC Microfluidic Devices Applied to Chemical Process Miniaturization

被引:15
作者
Gomez, Houari Cobas [1 ]
Cardoso, Roberta Mansini [2 ]
Schianti, Juliana de Novais [1 ]
de Oliveira, Adriano Marim [3 ]
Gongora-Rubio, Mario Ricardo [1 ]
机构
[1] Inst Technol Res, Ctr Bionanomfg, Micromfg Lab, BR-05508901 Sao Paulo, Brazil
[2] Univ Sao Paulo, Inst Chem, Dept Fundamental Chem, Supramol Chem & Nanotechnol Lab, BR-05508000 Sao Paulo, Brazil
[3] Inst Technol Res, Ctr Bionanomfg, Lab Chem Proc & Particle Technol, BR-05508901 Sao Paulo, Brazil
关键词
microfluidic devices; LTCC technology; chemical process intensification; miniaturization; synthesis of nano and microparticles; gold nanoparticles; GOLD NANOPARTICLES; DIESEL-ENGINE; DRUG-DELIVERY; FLOW; TECHNOLOGY; EMULSION; NANOEMULSIONS; MICROMIXERS; FUEL; PERFORMANCE;
D O I
10.3390/mi9060285
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Microfluidics has brought diverse advantages to chemical processes, allowing higher control of reactions and economy of reagents and energy. Low temperature co-fired ceramics (LTCC) have additional advantages as material for fabrication of microfluidic devices, such as high compatibility with chemical reagents with typical average surface roughness of 0.3154 m, easy scaling, and microfabrication. The conjugation of LTCC technology with microfluidics allows the development of micrometric-sized channels and reactors exploiting the advantages of fast and controlled mixing and heat transfer processes, essential for the synthesis and surface functionalization of nanoparticles. Since the chemical process area is evolving toward miniaturization and continuous flow processing, we verify that microfluidic devices based on LTCC technology have a relevant role in implementing several chemical processes. The present work reviews various LTCC microfluidic devices, developed in our laboratory, applied to chemical process miniaturization, with different geometries to implement processes such as ionic gelation, emulsification, nanoprecipitation, solvent extraction, nanoparticle synthesis and functionalization, and emulsion-diffusion/solvent extraction process. All fabricated microfluidics structures can operate in a flow range of mL/min, indicating that LTCC technology provides a means to enhance micro- and nanoparticle production yield.
引用
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页数:27
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