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Graphene Oxide: A New Platform for High-Performance Gas- and Liquid-Separation Membranes

Smith, Zachary P. ; Freeman, Benny D.

Angewandte Chemie (International ed.), 2014-09, Vol.53 (39), p.10286-10288 [Periódico revisado por pares]

Weinheim: WILEY-VCH Verlag

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  • Título:
    Graphene Oxide: A New Platform for High-Performance Gas- and Liquid-Separation Membranes
  • Autor: Smith, Zachary P. ; Freeman, Benny D.
  • Assuntos: Defects ; Deposition ; gas separation ; Graphene ; graphene oxide ; layered compounds ; Membranes ; Oxides ; Pathways ; Platforms ; Thin films ; Transport ; water purification
  • É parte de: Angewandte Chemie (International ed.), 2014-09, Vol.53 (39), p.10286-10288
  • Notas: ArticleID:ANIE201404407
    We thank the National Science Foundation (DMR-0423914 and CBET-1160128), the Department of Energy (DE-FG02-02ER15362), and the Korean Carbon Capture and Sequestration Research and Development Center (KCRC, 2013-M1A8A1056294).
    Korean Carbon Capture and Sequestration Research and Development Center - No. 2013-M1A8A1056294
    istex:5045CE894DA50ABA7959E7BF77523480BE1357D0
    National Science Foundation - No. DMR-0423914; No. CBET-1160128
    Department of Energy - No. DE-FG02-02ER15362
    ark:/67375/WNG-K2CVPXV7-M
    We thank the National Science Foundation (DMR‐0423914 and CBET‐1160128), the Department of Energy (DE‐FG02‐02ER15362), and the Korean Carbon Capture and Sequestration Research and Development Center (KCRC, 2013‐M1A8A1056294).
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  • Descrição: Depending on size: Graphene oxide can be deposited into thin layers having defects and inter‐layer structures with dimensions that are appropriate for separating molecules based on size differences and enable rapid transport through these structures. The picture illustrates the pathway of two differently sized molecules through the graphene oxide layers.
  • Editor: Weinheim: WILEY-VCH Verlag
  • Idioma: Inglês

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