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PUBMED FOR HANDHELDS

Journal Abstract Search


132 related items for PubMed ID: 35867588

  • 1. Discovery of Complex Binding and Reaction Mechanisms from Ternary Gases in Rare Earth Metal-Organic Frameworks.
    Christian MS, Nenoff TM, Rimsza JM.
    Chemistry; 2022 Oct 18; 28(58):e202201926. PubMed ID: 35867588
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  • 2. Prediction of Reactive Nitrous Acid Formation in Rare-Earth MOFs via ab initio Molecular Dynamics.
    Vogel DJ, Rimsza JM, Nenoff TM.
    Angew Chem Int Ed Engl; 2021 May 10; 60(20):11514-11522. PubMed ID: 33690943
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  • 3. Kinetically Controlled Linker Binding in Rare Earth-2,5-Dihydroxyterepthalic Acid Metal-Organic Frameworks and Its Predicted Effects on Acid Gas Adsorption.
    Henkelis SE, Vogel DJ, Metz PC, Valdez NR, Rodriguez MA, Rademacher DX, Purdy S, Percival SJ, Rimsza JM, Page K, Nenoff TM.
    ACS Appl Mater Interfaces; 2021 Dec 01; 13(47):56337-56347. PubMed ID: 34793131
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  • 5. NOx Adsorption and Optical Detection in Rare Earth Metal-Organic Frameworks.
    Sava Gallis DF, Vogel DJ, Vincent GA, Rimsza JM, Nenoff TM.
    ACS Appl Mater Interfaces; 2019 Nov 20; 11(46):43270-43277. PubMed ID: 31657891
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  • 10. Insights into the Gas Adsorption Mechanisms in Metal-Organic Frameworks from Classical Molecular Simulations.
    Pham T, Space B.
    Top Curr Chem (Cham); 2020 Jan 13; 378(1):14. PubMed ID: 31933069
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  • 12. Impedance-Based Detection of NO2 Using Ni-MOF-74: Influence of Competitive Gas Adsorption.
    Small LJ, Vornholt SM, Percival SJ, Meyerson ML, Schindelholz ME, Chapman KW, Nenoff TM.
    ACS Appl Mater Interfaces; 2023 Aug 09; 15(31):37675-37686. PubMed ID: 37498628
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  • 13. Acetylene Storage and Separation Using Metal-Organic Frameworks with Open Metal Sites.
    Luna-Triguero A, Vicent-Luna JM, Madero-Castro RM, Gómez-Álvarez P, Calero S.
    ACS Appl Mater Interfaces; 2019 Aug 28; 11(34):31499-31507. PubMed ID: 31368697
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  • 14. One-Step C2 H4 Purification from Ternary C2 H6 /C2 H4 /C2 H2 Mixtures by a Robust Metal-Organic Framework with Customized Pore Environment.
    Wang GD, Li YZ, Shi WJ, Hou L, Wang YY, Zhu Z.
    Angew Chem Int Ed Engl; 2022 Jul 11; 61(28):e202205427. PubMed ID: 35499196
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  • 15. [Application of gas chromatography separation based on metal-organic framework material as stationary phase].
    Tang W, Meng S, Xu M, Gu Z.
    Se Pu; 2021 Jan 11; 39(1):57-68. PubMed ID: 34227359
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  • 17. Surface, Interface and Structure Optimization of Metal-Organic Frameworks: Towards Efficient Resourceful Conversion of Industrial Waste Gases.
    He C, Zhao X, Huo M, Dai W, Cheng X, Yang J, Miao Y, Xiao S.
    Chem Rec; 2023 Jun 11; 23(6):e202200211. PubMed ID: 36193960
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  • 18. Hydrogen adsorption mechanism of MOF-74 metal-organic frameworks: an insight from first principles calculations.
    Nguyen-Thuy T, Le-Hoang P, Hoang Vu N, Le TN, Le Hoang Doan T, Kuo JL, Nguyen TT, Phan TB, Nguyen-Manh D.
    RSC Adv; 2020 Dec 09; 10(72):43940-43949. PubMed ID: 35517181
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  • 19. Revisiting Competitive Adsorption of Small Molecules in the Metal-Organic Framework Ni-MOF-74.
    Pandey H, Wang H, Feng L, Wang KY, Zhou HC, Li J, Thonhauser T, Tan K.
    Inorg Chem; 2023 Jan 16; 62(2):950-956. PubMed ID: 36585928
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  • 20. Identifying UiO-67 Metal-Organic Framework Defects and Binding Sites through Ammonia Adsorption.
    Swaroopa Datta Devulapalli V, McDonnell RP, Ruffley JP, Shukla PB, Luo TY, De Souza ML, Das P, Rosi NL, Karl Johnson J, Borguet E.
    ChemSusChem; 2022 Jan 10; 15(1):e202102217. PubMed ID: 34725931
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