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Cooperative insertion of CO2 in diamine-appended metal-organic frameworks.
McDonald TM, Mason JA, Kong X, Bloch ED, Gygi D, Dani A, Crocellà V, Giordanino F, Odoh SO, Drisdell WS, Vlaisavljevich B, Dzubak AL, Poloni R, Schnell SK, Planas N, Lee K, Pascal T, Wan LF, Prendergast D, Neaton JB, Smit B, Kortright JB, Gagliardi L, Bordiga S, Reimer JA, Long JR. McDonald TM, et al. Among authors: mason ja. Nature. 2015 Mar 19;519(7543):303-8. doi: 10.1038/nature14327. Epub 2015 Mar 11. Nature. 2015. PMID: 25762144 Free article.
Carbon dioxide capture in metal-organic frameworks.
Sumida K, Rogow DL, Mason JA, McDonald TM, Bloch ED, Herm ZR, Bae TH, Long JR. Sumida K, et al. Among authors: mason ja. Chem Rev. 2012 Feb 8;112(2):724-81. doi: 10.1021/cr2003272. Epub 2011 Dec 28. Chem Rev. 2012. PMID: 22204561 Review. No abstract available.
Reversible CO binding enables tunable CO/H₂ and CO/N₂ separations in metal-organic frameworks with exposed divalent metal cations.
Bloch ED, Hudson MR, Mason JA, Chavan S, Crocellà V, Howe JD, Lee K, Dzubak AL, Queen WL, Zadrozny JM, Geier SJ, Lin LC, Gagliardi L, Smit B, Neaton JB, Bordiga S, Brown CM, Long JR. Bloch ED, et al. Among authors: mason ja. J Am Chem Soc. 2014 Jul 30;136(30):10752-61. doi: 10.1021/ja505318p. Epub 2014 Jul 18. J Am Chem Soc. 2014. PMID: 24999916
M2(m-dobdc) (M = Mg, Mn, Fe, Co, Ni) metal-organic frameworks exhibiting increased charge density and enhanced H2 binding at the open metal sites.
Kapelewski MT, Geier SJ, Hudson MR, Stück D, Mason JA, Nelson JN, Xiao DJ, Hulvey Z, Gilmour E, FitzGerald SA, Head-Gordon M, Brown CM, Long JR. Kapelewski MT, et al. Among authors: mason ja. J Am Chem Soc. 2014 Aug 27;136(34):12119-29. doi: 10.1021/ja506230r. Epub 2014 Aug 18. J Am Chem Soc. 2014. PMID: 25130365
110 results