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Biological Antagonism Inspired Detoxification: Removal of Toxic Elements by Porous Polymer Networks.

Publication ,  Journal Article
Feng, L; Chen, W-M; Li, J-L; Day, G; Drake, H; Joseph, E; Zhou, H-C
Published in: ACS applied materials & interfaces
April 2019

Water contamination by toxic heavy elements is becoming an urgent problem in environmental science and separation technologies. However, the design of sophisticated absorbents with high stability and outstanding removal efficacy for ion coadsorption is still a technical challenge. Herein, inspired by biological Hg/Se antagonism detoxification, we have designed the first porous polymer network (PPN) for the concurrent removal of Hg/Se species in aqueous solutions. Remarkably, the MoS42- functionalized PPN-150-MoS4 exhibits a rapid and highly efficient simultaneous removal of toxic anions (SeO42- and SeO32-) and metals (Hg2+). The high thiophilicity of Hg2+ leads to 99.9% removal within minutes. More importantly, selenite and selenate, typically known for being difficult to remove from aqueous environments, can be removed by PPN-150-MoS4, exhibiting >99% removal within minutes when in the presence of Hg2+. At the same time, the removal efficiency for Se(IV) and Se(VI) oxoanions in the absence of Hg2+ is very low, reaching only 14% removal. Overall, PPN-150-MoS4 exhibits one of the highest adsorption capacities toward SeO32- (124 mg/g), making it a promising and cheap sorbent material for water remediation applications. This work provides a fresh route for detoxification and remediation strategies that aim to regulate the presence of toxic ions in nature. The material herein shall guide the state-of-the-art design of efficient water treatment techniques through a combination of biological antagonism and materials chemistry.

Duke Scholars

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Published In

ACS applied materials & interfaces

DOI

EISSN

1944-8252

ISSN

1944-8244

Publication Date

April 2019

Volume

11

Issue

15

Start / End Page

14383 / 14390

Related Subject Headings

  • Water Purification
  • Water Pollutants, Chemical
  • Thermogravimetry
  • Selenium Oxides
  • Porosity
  • Polymers
  • Nanoscience & Nanotechnology
  • Mercury
  • Adsorption
  • 51 Physical sciences
 

Citation

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Feng, L., Chen, W.-M., Li, J.-L., Day, G., Drake, H., Joseph, E., & Zhou, H.-C. (2019). Biological Antagonism Inspired Detoxification: Removal of Toxic Elements by Porous Polymer Networks. ACS Applied Materials & Interfaces, 11(15), 14383–14390. https://doi.org/10.1021/acsami.9b02826
Feng, Liang, Wen-Miao Chen, Jia-Luo Li, Gregory Day, Hannah Drake, Elizabeth Joseph, and Hong-Cai Zhou. “Biological Antagonism Inspired Detoxification: Removal of Toxic Elements by Porous Polymer Networks.ACS Applied Materials & Interfaces 11, no. 15 (April 2019): 14383–90. https://doi.org/10.1021/acsami.9b02826.
Feng L, Chen W-M, Li J-L, Day G, Drake H, Joseph E, et al. Biological Antagonism Inspired Detoxification: Removal of Toxic Elements by Porous Polymer Networks. ACS applied materials & interfaces. 2019 Apr;11(15):14383–90.
Feng, Liang, et al. “Biological Antagonism Inspired Detoxification: Removal of Toxic Elements by Porous Polymer Networks.ACS Applied Materials & Interfaces, vol. 11, no. 15, Apr. 2019, pp. 14383–90. Epmc, doi:10.1021/acsami.9b02826.
Feng L, Chen W-M, Li J-L, Day G, Drake H, Joseph E, Zhou H-C. Biological Antagonism Inspired Detoxification: Removal of Toxic Elements by Porous Polymer Networks. ACS applied materials & interfaces. 2019 Apr;11(15):14383–14390.
Journal cover image

Published In

ACS applied materials & interfaces

DOI

EISSN

1944-8252

ISSN

1944-8244

Publication Date

April 2019

Volume

11

Issue

15

Start / End Page

14383 / 14390

Related Subject Headings

  • Water Purification
  • Water Pollutants, Chemical
  • Thermogravimetry
  • Selenium Oxides
  • Porosity
  • Polymers
  • Nanoscience & Nanotechnology
  • Mercury
  • Adsorption
  • 51 Physical sciences