Your browser doesn't support javascript.
loading
CO2 induced phase transitions in diamine-appended metal-organic frameworks.
Vlaisavljevich, Bess; Odoh, Samuel O; Schnell, Sondre K; Dzubak, Allison L; Lee, Kyuho; Planas, Nora; Neaton, Jeffrey B; Gagliardi, Laura; Smit, Berend.
Afiliação
  • Vlaisavljevich B; Department of Chemical and Biomolecular Engineering , University of California , 201 Gilman Hall , Berkeley , California 94720 , USA . Email: berend.smit@epfl.ch.
  • Odoh SO; Department of Chemistry , Chemical Theory Center and Supercomputing Institute , University of Minnesota , Minneapolis , Minnesota 55455-0431 , USA . Email: gagliard@umn.edu.
  • Schnell SK; Department of Chemical and Biomolecular Engineering , University of California , 201 Gilman Hall , Berkeley , California 94720 , USA . Email: berend.smit@epfl.ch.
  • Dzubak AL; Department of Chemistry , Norwegian University of Science and Technology , Høgskoleringen 5 , 7491 Trondheim , Norway.
  • Lee K; Department of Chemistry , Chemical Theory Center and Supercomputing Institute , University of Minnesota , Minneapolis , Minnesota 55455-0431 , USA . Email: gagliard@umn.edu.
  • Planas N; Molecular Foundry , Lawrence Berkeley National Laboratory , One Cyclotron Road , Berkeley , California 94720 , USA.
  • Neaton JB; Department of Physics , University of California , Berkeley , USA.
  • Gagliardi L; Kavli Energy NanoSciences Institute at Berkeley , Berkeley , CA , USA.
  • Smit B; Department of Chemistry , Chemical Theory Center and Supercomputing Institute , University of Minnesota , Minneapolis , Minnesota 55455-0431 , USA . Email: gagliard@umn.edu.
Chem Sci ; 6(9): 5177-5185, 2015 Sep 01.
Article em En | MEDLINE | ID: mdl-28717499
ABSTRACT
Using a combination of density functional theory and lattice models, we study the effect of CO2 adsorption in an amine functionalized metal-organic framework. These materials exhibit a step in the adsorption isotherm indicative of a phase change. The pressure at which this step occurs is not only temperature dependent but is also metal center dependent. Likewise, the heats of adsorption vary depending on the metal center. Herein we demonstrate via quantum chemical calculations that the amines should not be considered firmly anchored to the framework and we explore the mechanism for CO2 adsorption. An ammonium carbamate species is formed via the insertion of CO2 into the M-Namine bonds. Furthermore, we translate the quantum chemical results into isotherms using a coarse grained Monte Carlo simulation technique and show that this adsorption mechanism can explain the characteristic step observed in the experimental isotherm while a previously proposed mechanism cannot. Furthermore, metal analogues have been explored and the CO2 binding energies show a strong metal dependence corresponding to the M-Namine bond strength. We show that this difference can be exploited to tune the pressure at which the step in the isotherm occurs. Additionally, the mmen-Ni2(dobpdc) framework shows Langmuir like behavior, and our simulations show how this can be explained by competitive adsorption between the new model and a previously proposed model.

Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2015 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2015 Tipo de documento: Article