Microfluidic stack reactors for the mass synthesis of polymer brushes
Authors/Creators
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Vrabcová, Markéta
(Data collector)1, 2
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Spasovova, Monika
(Data collector)1, 2
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Cirik, Volkan
(Data collector)1, 2
- Judita, Anthi (Data collector)1
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Pilipenco, Alina
(Data collector)1, 2
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Houska, Milan
(Data curator)1
- Romanyuk, Oleksandr (Data collector)1
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Lísalová, Hana
(Data curator)1
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Lynn Jr., Nicholas Scott
(Contact person)3
- 1. FZU – Institute of Physics of the Czech Academy of Sciences
- 2. Charles University, Faculty of Mathematics and Physics
- 3. FZU - Institute of Physics of the Czech Academy of Sciences
Description
Polymer brush (PB) coatings represent a powerful method of tuning surface physicochemical properties in a
broad number of fields including biosensing, which require PB synthesis onto 10–100 or more substrates per day. Typically, PBs are synthesized by surface-initiated atom transfer radical polymerization (SI-ATRP) in Schlenk reactors that need large volumes of solutions, imposing substantial economic challenges for mass synthesis, as typically only 0.1% or less of monomers are polymerized. Microfluidic synthesis offers a promising alternative for reducing chemical consumption; however, questions remain on how to perform such synthesis on a mass scale and furthermore, if PBs are of similar quality like those prepared via standard means.
Here we present a microfluidic stack reactor designed for an efficient and user-friendly mass synthesis of PBs
onto planar substrates. This reactor, 3D printed via stereolithography, consists of repeating units that are easy to fabricate and when stacked together, create a single fluidic pathway connecting an adjustable number of substrates, enhancing polymerization efficiency by over 100-fold. We employed the stack reactors to synthesize various PB structures (homogenous, random copolymer, block copolymer) combining two monomers commonly used in biosensing known for their antifouling properties: zwitterionic poly(carboxybetaine methacrylamide) (pCBMAA) and non-ionic poly[N-(2-hydroxypropyl) methacrylamide] (pHPMAA). Characterization by IRRAS, ellipsometry, XPS, contact angle, and surface plasmon resonance, confirmed that PBs synthesized in stack reactors are comparable to, if not superior to, those synthesized via standard SI-ATRP methods. These reactors are thus a promising tool for efficient, large-scale production of PB coatings and have potential for many applications.
Files
Data set on Microfluidic stack reactors for synthesis of PBs.zip
Files
(41.1 MB)
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Additional details
Related works
- Is described by
- Journal article: 10.1016/j.cej.2025.160914 (DOI)
Funding
- European Union
- Operational Programme Johannes Amos Comenius, call Excellent Research, co-funded by the European Union, administered by the Ministry of Education, Sports and Youth CZ.02.01.01/00/22_008/0004596
- Czech Science Foundation
- 22-20012S
- Charles University
- GAUK 288822
- Charles University
- SVV-2023-260716
Dates
- Accepted
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2025-02-21