4.8 Article

The sensitive and selective adsorption of aromatic compounds with highly crosslinked polymer nanoparticles

Journal

NANOSCALE
Volume 7, Issue 40, Pages 16943-16951

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c5nr04624f

Keywords

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Funding

  1. NNSFC [21225731, 21377172, 21477166]
  2. NSF of Guangdong Province [S2013030013474]

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This study presents the preparation and characterization of a nanoscale Davankov-type hyper-cross-linked- polymer (HCP) as an adsorbent of benzene-ring-containing dyes and organic pollutants. HCP nanoparticles post-crosslinked from a poly(DVB-co-VBC) precursor were synthesized in this study, possessing ultrahigh surface area, hydrophobicity and stability. The as-synthesized Davankov-type HCP exhibited a rapid and selective adsorption ability towards the benzene-ring-containing dyes due to its highly conjugated structure. Besides, for the first time, the prepared HCP nanoparticles were adopted for the adsorption of nonpolar organic pollutants by means of solid-phase microextraction (SPME). Owing to its high hydrophobicity, diverse pore size distribution and highly conjugated structure, a 10 mu m HCP coating exhibited excellent adsorption abilities towards benzene-ring-containing polycyclic aromatic hydrocarbons (PAHs) and benzene series compounds (benzene, toluene, ethylbenzene and o-xylene; abbreviated to BTEX) and to highly hydrophobic long-chain n-alkanes. Finally, the HCP-nanoparticles-coated SPME fiber was applied to the simultaneous analysis of five PAHs in environmental water samples and satisfactory recoveries were achieved. The findings could provide a new benchmark for the exploitation of superb HCPs as effective adsorbents for SPME or other adsorption applications.

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