All-in-One Porous Polymer Adsorbents with Excellent Environmental Chemosensory Responsivity, Visual Detectivity, Superfast Adsorption, and Easy Regeneration.
Yiming XieWen HuangBingna ZhengShimei LiQiantong LiuZirun ChenWeicong MaiRuowen FuDingcai WuPublished in: Advanced materials (Deerfield Beach, Fla.) (2019)
It remains a formidable challenge to construct advanced adsorbents with superb adsorption, environmental stimuli response, and real-time detection capability for efficiently treating contaminants from complex environmental systems. A novel class of an all-in-one microporous adsorbent that simultaneously has excellent environmental chemosensory responsivity, visual detectivity, superfast micropollutant adsorption, as well as easy regeneration is reported herein. The advanced microporous adsorbent discussed in this study presents a hairy nanospherical morphology composed of a hairy stimuli-responsive polymeric shell and a shell-assisted superadsorptive microporous core. The adsorbent not only exhibits a valuable capability of pollutant detection by visible fluorescence quenching, but can also remove organic micropollutants from polluted water with super-rapid speed (79%, 98%, and 100% of its equilibrium uptake in 7 s, 10 s, and 2 min, respectively) and excellent recyclability (>96%). More importantly, the adsorbent still shows unimpeded adsorption performance in the flow-through adsorption tests (15 mL min-1 ), indicating a very appealing application prospect.
Keyphrases
- aqueous solution
- stem cells
- loop mediated isothermal amplification
- human health
- life cycle
- cancer therapy
- drug delivery
- solid phase extraction
- wastewater treatment
- drinking water
- wound healing
- energy transfer
- mass spectrometry
- molecular dynamics
- drug release
- molecular dynamics simulations
- current status
- simultaneous determination
- quantum dots
- sensitive detection