81
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Pili S.
, Rought P.
, Kolokolov D.I.
, Lin L.
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Enhancement of Proton Conductivity in Nonporous Metal–Organic Frameworks: The Role of Framework Proton Density and Humidity
Chemistry of Materials. 2018.
V.30. N21. P.7593-7602. DOI: 10.1021/acs.chemmater.8b02765
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82
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Kolokolov D.I.
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Uncovering the Rotation and Translational Mobility of Benzene Confined in UiO-66 (Zr) Metal–Organic Framework by the 2H NMR–QENS Experimental Toolbox
The Journal of Physical Chemistry C. 2017.
V.121. N5. P.2844-2857. DOI: 10.1021/acs.jpcc.6b12001
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83
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Khudozhitkov A.E.
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Probing the Guest-Mediated Structural Mobility in the UiO-66(Zr) Framework by 2H NMR Spectroscopy
The Journal of Physical Chemistry C. 2017.
V.121. N21. P.11593-11600. DOI: 10.1021/acs.jpcc.7b03259
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84
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Khudozhitkov A.E.
, Stange P.
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, Kolokolov D.I.
, Ludwig R.
Charakterisierung von Wasserstoffbrücken zwischen Ionen in protischen ionischen Flüssigkeiten mittels NMR-Deuteron-Quadrupol-Kopplungskonstanten - Unterschiede zu H-Brücken in Amiden, Peptiden und Proteinen
Angewandte Chemie (German edition). 2017.
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85
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Knebel A.
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Defibrillation of Soft Porous Metal-Organic Frameworks with Electric Fields
Science. 2017.
V.358. N6361. P.347-351. DOI: 10.1126/science.aal2456
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86
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Moreau F.
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Tailoring Porosity and Rotational Dynamics in a Series of Octacarboxylate Metal-Organic Frameworks
Proceedings of the National Academy of Sciences of the United States of America. 2017.
V.114. N12. P.3056-3061. DOI: 10.1073/pnas.1615172114
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87
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Sheveleva A.M.
, Anikeenko A.V.
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Probing Gas Adsorption in Metal–Organic Framework ZIF-8 by EPR of Embedded Nitroxides
The Journal of Physical Chemistry C. 2017.
V.121. N36. P.19880-19886. DOI: 10.1021/acs.jpcc.7b06884
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88
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Khudozhitkov A.E.
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Innentitelbild: Charakterisierung von Wasserstoffbrücken zwischen Ionen in protischen ionischen Flüssigkeiten mittels NMR-Deuteron-Quadrupol-Kopplungskonstanten - Unterschiede zu H-Brücken in Amiden, Peptiden und Proteinen
Angewandte Chemie (German edition). 2017.
V.129. N45. P.14090-14090. DOI: 10.1002/ange.201710172
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89
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Yan Y.
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Porous Metal–Organic Polyhedral Frameworks with Optimal Molecular Dynamics and Pore Geometry for Methane Storage
Journal of the American Chemical Society. 2017.
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90
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Dvoyashkina N.
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Monitoring the Diffusivity of Light Hydrocarbons in a Mixture by Magic Angle Spinning Pulsed Field Gradient NMR: Methane/Ethane/Ethene in ZIF-8
The Journal of Physical Chemistry C. 2017.
V.121. N45. P.25372-25376. DOI: 10.1021/acs.jpcc.7b09335
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91
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Gabrienko A.A.
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Different Efficiency of Zn2+ and ZnO Species for Methane Activation on Zn-Modified Zeolite
ACS Catalysis. 2017.
V.7. N3. P.1818-1830. DOI: 10.1021/acscatal.6b03036
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92
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Khudozhitkov A.E.
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Characterization of Doubly Ionic Hydrogen Bonds in Protic Ionic Liquids by NMR Deuteron Quadrupole Coupling Constants: Differences to H-bonds in Amides, Peptides, and Proteins
Angewandte Chemie - International Edition. 2017.
V.56. N45. P.14310-14314. DOI: 10.1002/anie.201708340, 10.1002/anie.201710172
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93
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Stepanov A.G.
Basics of Solid-State NMR for Application in Zeolite Science: Material and Reaction Characterization
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94
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Khudozhitkov A.E.
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Ultraslow Dynamics of a Framework Linker in MIL-53 (Al) as a Sensor for Different Isomers of Xylene
The Journal of Physical Chemistry C. 2016.
V.120. N38. P.21704-21709. DOI: 10.1021/acs.jpcc.6b08114
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95
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Arzumanov S.S.
, Gabrienko A.A.
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Competitive Pathways of Methane Activation on Zn2+-Modified ZSM-5 Zeolite: H/D Hydrogen Exchange with Brønsted Acid Sites: Versus Dissociative Adsorption to Form Zn-Methyl Species
Catalysis Science and Technology. 2016.
V.6. N16. P.6381-6388. DOI: 10.1039/c6cy00878j
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96
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Kolokolov D.I.
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Mobility of Stable pi-Complexes of Ethylene with Ag+ Cations in Ag/H-ZSM-5 Zeolite: A H-2 Solid-State NMR Study
The Journal of Physical Chemistry C. 2016.
V.120. N9. P.4993-5000. DOI: 10.1021/acs.jpcc.5b12687
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97
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Poryvaev A.S.
, Sheveleva A.M.
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Mobility and Reactivity of 4-Substituted TEMPO Derivatives in Metal–Organic Framework MIL-53(Al)
The Journal of Physical Chemistry C. 2016.
V.120. N19. P.10698-10704. DOI: 10.1021/acs.jpcc.6b02966
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98
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Arzumanov S.S.
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Methane Mobility in Ag/H-ZSM‑5 Zeolite in the Presence of Ethene: A View Based on PFG 1H MAS NMR Analysis of Methane Diffusivity
The Journal of Physical Chemistry C. 2015.
V.119. N32. P.18481-18486. DOI: 10.1021/acs.jpcc.5b05953
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99
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Luzgin M.V.
, Freude D.
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Methane Interaction with Zn2+-Exchanged Zeolite H-ZSM-5: Study of Adsorption and Mobility by One- and Two-Dimensional Variable-Temperature 1H Solid-State NMR
The Journal of Physical Chemistry C. 2015.
V.119. N25. P.14255-14261. DOI: 10.1021/acs.jpcc.5b04028
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100
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Gabrienko A.A.
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Methane Activation on Zn2+-Exchanged ZSM-5 Zeolites. The Effect of Molecular Oxygen Addition
The Journal of Physical Chemistry C. 2015.
V.119. N44. P.24910-24918. DOI: 10.1021/acs.jpcc.5b08759
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