Cooperative adsorption of carbon disulfide in diamine-appended metal–organic frameworks

The large-scale production of CS2 presents both environmental and biological hazards, yet adsorbents capable of CS2 capture remain scarcely explored. Here, Long and colleagues demonstrate that CS2 is adsorbed in diamine-appended metal–organic frameworks through a cooperative and chemically specific...

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Autores principales: C. Michael McGuirk, Rebecca L. Siegelman, Walter S. Drisdell, Tomče Runčevski, Phillip J. Milner, Julia Oktawiec, Liwen F. Wan, Gregory M. Su, Henry Z. H. Jiang, Douglas A. Reed, Miguel I. Gonzalez, David Prendergast, Jeffrey R. Long
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Publicado: Nature Portfolio 2018
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spelling oai:doaj.org-article:a038e5def4064113ab97956f303104122021-12-02T16:49:55ZCooperative adsorption of carbon disulfide in diamine-appended metal–organic frameworks10.1038/s41467-018-07458-62041-1723https://doaj.org/article/a038e5def4064113ab97956f303104122018-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-07458-6https://doaj.org/toc/2041-1723The large-scale production of CS2 presents both environmental and biological hazards, yet adsorbents capable of CS2 capture remain scarcely explored. Here, Long and colleagues demonstrate that CS2 is adsorbed in diamine-appended metal–organic frameworks through a cooperative and chemically specific insertion process.C. Michael McGuirkRebecca L. SiegelmanWalter S. DrisdellTomče RunčevskiPhillip J. MilnerJulia OktawiecLiwen F. WanGregory M. SuHenry Z. H. JiangDouglas A. ReedMiguel I. GonzalezDavid PrendergastJeffrey R. LongNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-10 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
C. Michael McGuirk
Rebecca L. Siegelman
Walter S. Drisdell
Tomče Runčevski
Phillip J. Milner
Julia Oktawiec
Liwen F. Wan
Gregory M. Su
Henry Z. H. Jiang
Douglas A. Reed
Miguel I. Gonzalez
David Prendergast
Jeffrey R. Long
Cooperative adsorption of carbon disulfide in diamine-appended metal–organic frameworks
description The large-scale production of CS2 presents both environmental and biological hazards, yet adsorbents capable of CS2 capture remain scarcely explored. Here, Long and colleagues demonstrate that CS2 is adsorbed in diamine-appended metal–organic frameworks through a cooperative and chemically specific insertion process.
format article
author C. Michael McGuirk
Rebecca L. Siegelman
Walter S. Drisdell
Tomče Runčevski
Phillip J. Milner
Julia Oktawiec
Liwen F. Wan
Gregory M. Su
Henry Z. H. Jiang
Douglas A. Reed
Miguel I. Gonzalez
David Prendergast
Jeffrey R. Long
author_facet C. Michael McGuirk
Rebecca L. Siegelman
Walter S. Drisdell
Tomče Runčevski
Phillip J. Milner
Julia Oktawiec
Liwen F. Wan
Gregory M. Su
Henry Z. H. Jiang
Douglas A. Reed
Miguel I. Gonzalez
David Prendergast
Jeffrey R. Long
author_sort C. Michael McGuirk
title Cooperative adsorption of carbon disulfide in diamine-appended metal–organic frameworks
title_short Cooperative adsorption of carbon disulfide in diamine-appended metal–organic frameworks
title_full Cooperative adsorption of carbon disulfide in diamine-appended metal–organic frameworks
title_fullStr Cooperative adsorption of carbon disulfide in diamine-appended metal–organic frameworks
title_full_unstemmed Cooperative adsorption of carbon disulfide in diamine-appended metal–organic frameworks
title_sort cooperative adsorption of carbon disulfide in diamine-appended metal–organic frameworks
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/a038e5def4064113ab97956f30310412
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