| Literature DB >> 29450972 |
Yingrong Wang1, Yuan Zhu1, Yi Hu1, Guangming Zeng1, Yi Zhang1,2, Chang Zhang1, Chongling Feng3.
Abstract
With high binding affinity, porous structures, safety, green, programmability, etc., DNA hydrogels have gained increasing recognition in the environmental field, i.e., advanced treatment technology of water and analysis of specific pollutants. DNA hydrogels have been demonstrated as versatile potential adsorbents, immobilization carriers of bioactive molecules, catalysts, sensors, etc. Moreover, altering components or choosing appropriate functional DNA optimizes environment-oriented hydrogels. However, the lack of comprehensive information hinders the continued optimization. The principle used to fabricate the most suitable hydrogels in terms of the requirements is the focus of this Review. First, different fabrication strategies are introduced and the ideal characteristic for environmental applications is in focus. Subsequently, recent environmental applications and the development of diverse DNA hydrogels regarding their synthesis mechanism are summarized. Finally, the Review provides an insight into the remaining challenging and future perspectives in environmental applications.Entities:
Keywords: DNA hydrogels; advanced water treatment; construction mechanisms; environmental analysis; heavy metals; organic pollutants
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Year: 2018 PMID: 29450972 DOI: 10.1002/smll.201703305
Source DB: PubMed Journal: Small ISSN: 1613-6810 Impact factor: 13.281