A Highly Ordered Nanoporous, Two-Dimensional Covalent Organic Framework with Modifiable Pores, and Its Application in Water Purification and Ion Sieving

The preparation of membranes with high selectivity based on specific chemical properties such as size and charge would impact the efficiency of the world’s energy supply, the production of clean water, and many other separation technologies. We report a flexible synthetic protocol for preparing high...

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Published inJournal of the American Chemical Society Vol. 140; no. 51; pp. 18200 - 18207
Main Authors Kuehl, Valerie A, Yin, Jiashi, Duong, Phuoc H. H, Mastorovich, Bruce, Newell, Brian, Li-Oakey, Katie Dongmei, Parkinson, Bruce A, Hoberg, John O
Format Journal Article
LanguageEnglish
Published WASHINGTON American Chemical Society 26.12.2018
Amer Chemical Soc
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Abstract The preparation of membranes with high selectivity based on specific chemical properties such as size and charge would impact the efficiency of the world’s energy supply, the production of clean water, and many other separation technologies. We report a flexible synthetic protocol for preparing highly ordered two-dimensional nanoporous polymeric materials (termed covalent organic frameworks or COFs) that allow for placing virtually any function group within the nanopores. We demonstrate that membranes, fabricated with this new family of materials with carboxylated pore walls, are very water permeable, as well as highly charged and size selective.
AbstractList The preparation of membranes with high selectivity based on specific chemical properties such as size and charge would impact the efficiency of the world’s energy supply, the production of clean water, and many other separation technologies. We report a flexible synthetic protocol for preparing highly ordered two-dimensional nanoporous polymeric materials (termed covalent organic frameworks or COFs) that allow for placing virtually any function group within the nanopores. We demonstrate that membranes, fabricated with this new family of materials with carboxylated pore walls, are very water permeable, as well as highly charged and size selective.
Author Newell, Brian
Parkinson, Bruce A
Yin, Jiashi
Hoberg, John O
Kuehl, Valerie A
Li-Oakey, Katie Dongmei
Duong, Phuoc H. H
Mastorovich, Bruce
AuthorAffiliation Department of Chemistry
Central Instrument Facility
Department of Chemical Engineering
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  surname: Duong
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  surname: Mastorovich
  fullname: Mastorovich, Bruce
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  givenname: Brian
  surname: Newell
  fullname: Newell, Brian
  organization: Central Instrument Facility
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  givenname: Katie Dongmei
  orcidid: 0000-0002-0529-9203
  surname: Li-Oakey
  fullname: Li-Oakey, Katie Dongmei
  email: dli1@uwyo.edu
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  surname: Parkinson
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  givenname: John O
  orcidid: 0000-0003-3833-8122
  surname: Hoberg
  fullname: Hoberg, John O
  email: hoberg@uwyo.edu
BackLink https://www.ncbi.nlm.nih.gov/pubmed/30512941$$D View this record in MEDLINE/PubMed
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Keywords CHEMISTRY
MEMBRANES
GRAPHENE OXIDE
CONDUCTION
CRYSTALLINITY
PERMEATION
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Snippet The preparation of membranes with high selectivity based on specific chemical properties such as size and charge would impact the efficiency of the world’s...
The preparation of membranes with high selectivity based on specific chemical properties such as size and charge would impact the efficiency of the world's...
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SubjectTerms Chemistry
Chemistry, Multidisciplinary
Physical Sciences
Science & Technology
Title A Highly Ordered Nanoporous, Two-Dimensional Covalent Organic Framework with Modifiable Pores, and Its Application in Water Purification and Ion Sieving
URI http://dx.doi.org/10.1021/jacs.8b11482
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https://www.ncbi.nlm.nih.gov/pubmed/30512941
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