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Hyper-Cross-Linked Resin Modified by a Micropore Polymer for Gas Adsorption and Separation. | LitMetric

AI Article Synopsis

  • - Polymerization within the pore of hyper-cross-linked resin (HR) created a new self-cross-linked polymer (P-1) through a Friedel-Crafts reaction, which adjusted the resin's nanoscale structure by occupying macropores and forming additional micropores.
  • - The modified resin, HR@P-1, exhibited a significant increase in micropore volume and improved gas adsorption capabilities, showing a nearly 30% higher CO adsorption capacity compared to the original HR resin.
  • - HR@P-1 is noteworthy for its ability to selectively adsorb methane (CH) with a capacity of 56 cm/g and an IAST selectivity of 15.3, making it efficient for separating syngas at room

Article Abstract

Polymerization confined to the pore was first adapted for the nanoscale structure adjustment of adsorption resin. The self-cross-linked polymer (P-1) formed in the pore of hyper-cross-linked resin (HR) by the Friedel-Crafts reaction of p-dichloroxylene (p-DCX), occupying the macropore of the HR resin and bringing about an external micropore. Compared with the raw HR resin, the volume of the micropore of HR@P-1 in 0.4 < D < 1 nm increased but the volume of the macropore has obviously decreased. After the loading of P-1 in the nanopore of HR, HR@P-1 has better gas adsorption performance. At 298 and 100 KPa, the adsorption capacity of CO is almost 30% higher than that of HR, reaching 35.7 cm/g, due to the increase in the smaller micropore volume. Moreover, HR@P-1 has also been found to be the first CH-selective adsorption resin. The uptake of CH is up to 56 cm/g, and the IAST selectivity of CH/CH reaches 15.3. HR@P-1 can also separate syngas efficiently at ambient temperature and be regenerated by simple vacuum operation.

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Source
http://dx.doi.org/10.1021/acs.langmuir.4c00863DOI Listing

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