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  4. Tuning the permeation properties of poly(1‐trimethylsilyl‐1‐propyne) by vapor phase infiltration using trimethylaluminum
 
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2024
Journal Article
Title

Tuning the permeation properties of poly(1‐trimethylsilyl‐1‐propyne) by vapor phase infiltration using trimethylaluminum

Abstract
Vapor phase infiltration (VPI) has emerged as a promising tool for fabrication of novel hybrid materials. In the field of polymeric gas separation membranes, a beneficial impact on stability and membrane performance is known for several polymers with differing functional groups. This study for the first time investigates VPI of trimethylaluminum (TMA) into poly(1-trimethylsilyl-1-propyne) (PTMSP), featuring a carbon–carbon double bond as functional group. Saturation of the precursor inside the polymer is already attained after 60 s infiltration time leading to significant densification of the material. Depth profiling proves accumulation of aluminum in the polymer itself, but a significantly increased accumulation is visible in the gradient layer between polymer and SiO2 substrate. A reaction pathway is proposed and supplemented by density-functional theory (DFT) calculations. Infrared spectra derived from both experiments and simulation support the presented reaction pathway. In terms of permeance, a favorable impact on selectivity is observed for infiltration times up to 1 s. Longer infiltration times yield greatly reduced permeance values close or even below the detection limit of the measurement device. The present results of this study set a strong basis for the application of VPI on polymers for gas-barrier and membrane applications in the future.
Author(s)
Jenderny, Jonathan
Ruhr-Universität Bochum  
Boysen, Nils
Fraunhofer-Institut für Mikroelektronische Schaltungen und Systeme IMS  
Rubner, Jens
RWTH Aachen University  
Zysk, Frederik
Universität Paderborn  
Preischel, Florian
Ruhr-Universität Bochum  
Arcos, Teresa de los
Universität Paderborn  
Damerla, Varun Raj
Universität Paderborn  
Kostka, Aleksander
Ruhr-Universität Bochum  
Franke, Jonas
RWTH Aachen University  
Dahlmann, Rainer
RWTH Aachen University  
Kühne, Thomas D.
Universität Paderborn  
Wessling, Matthias
RWTH Aachen University  
Awakowicz, Peter
Ruhr-Universität Bochum  
Devi, Anjana
Fraunhofer-Institut für Mikroelektronische Schaltungen und Systeme IMS  
Journal
Advanced materials interfaces  
Open Access
File(s)
Download (4.91 MB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.1002/admi.202400171
10.24406/publica-3691
Additional full text version
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Language
English
Fraunhofer-Institut für Mikroelektronische Schaltungen und Systeme IMS  
Keyword(s)
  • gas separation

  • membrane

  • PTMSP

  • TMA

  • vapor phase infiltration

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