1H chemical shift anisotropy: a high sensitivity solid-state NMR dynamics probe for surface studies?

被引:10
|
作者
Southern, Scott A. A. [1 ]
Liu, Da-Jiang [1 ]
Chatterjee, Puranjan [1 ,2 ]
Li, Yuting [1 ]
Perras, Frederic A. [1 ]
机构
[1] Ames Natl Lab, Div Chem & Biol Sci, Ames, IA 50014 USA
[2] Iowa State Univ, Dept Chem, Ames, IA 50014 USA
关键词
TOTAL-ENERGY CALCULATIONS; DENSITY-FUNCTIONAL CALCULATIONS; ORDER REGULAR APPROXIMATION; INITIO MOLECULAR-DYNAMICS; ANGLE-SPINNING NMR; NUCLEAR-POLARIZATION; ORGANOMETALLIC CHEMISTRY; SPATIAL-DISTRIBUTION; MULTIPLE-PULSE; SILICA;
D O I
10.1039/d2cp04406d
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Dynamics play significant roles in chemistry and biochemistry-molecular motions impact both large- and small-scale chemical reactions in addition to biochemical processes. In many systems, including heterogeneous catalysts, the characterization of dynamics remains a challenge. The most common approaches involve the solid-state NMR measurement of anisotropic interactions, in particular H-2 quadrupolar coupling and H-1-X dipolar coupling, which generally require isotope enrichment. Due to the high sensitivity of H-1 NMR, H-1 chemical shift anisotropy (CSA) is a particularly enticing, and underexplored, dynamics probe. We carried out H-1 CSA and H-1-C-13 dipolar coupling measurements in a series of model supported complexes to understand how H-1 CSA can be leveraged to gain dynamic information for heterogeneous catalysts. Mathematical descriptions are given for the dynamic averaging of the CSA tensor, and its dependence on orientation and asymmetry. The variability of the orientation of the tensor in the molecular frame, in addition to its magnitude and asymmetry, negatively impacts attempts to extract quantitative dynamic information. Nevertheless, H-1 CSA measurements can reveal useful qualitative insights into the motions of a particularly dilute site, such as from a surface species.
引用
收藏
页码:5348 / 5360
页数:14
相关论文
共 50 条
  • [1] High Resolution Solid-State 1H Nmr Studies of Zeolites
    Freude, Dieter
    Studies in Surface Science and Catalysis, 1989, 52 (0C) : 169 - 192
  • [2] Measurement of proton chemical shift anisotropy in solid-state NMR spectroscopy
    Liang, Lixin
    Hou, Guangjin
    Bao, Xinhe
    SOLID STATE NUCLEAR MAGNETIC RESONANCE, 2018, 93 : 16 - 28
  • [3] Solid-State 1H NMR Studies of Homonuclear Dipolar Couplings
    Thureau, Pierre
    Mollica, Giulia
    Ziarelli, Fabio
    Viel, Stephane
    ANNUAL REPORTS ON NMR SPECTROSCOPY, VOL 82, 2014, 82 : 217 - 249
  • [4] Surface studies of ceria and mesoporous ceria powders by solid-state 1H MAS NMR
    Lyons, DM
    McGrath, JP
    Morris, MA
    JOURNAL OF PHYSICAL CHEMISTRY B, 2003, 107 (19): : 4607 - 4617
  • [5] Applications of high-resolution 1H solid-state NMR
    Brown, Steven P.
    SOLID STATE NUCLEAR MAGNETIC RESONANCE, 2012, 41 : 1 - 27
  • [6] The amide proton NMR chemical shift and hydrogen-bonded structure of peptides and polypeptides in the solid state as studied by high-frequency solid-state 1H NMR
    Yamauchi, K
    Kuroki, S
    Fujii, K
    Ando, I
    CHEMICAL PHYSICS LETTERS, 2000, 324 (5-6) : 435 - 439
  • [7] Motional dynamics in polythiophenes. A solid-state 1H NMR study
    Kolbert, A.C.
    Sariciftci, N.S.
    Gaudl, K.-U.
    Baeuerle, P.
    Mehring, M.
    Journal of the American Chemical Society, 1991, 113 (22)
  • [8] Using chemical shift anisotropy to resolve isotropic signals in solid-state NMR
    Ironside, Matthew S.
    Stein, Robin S.
    Duer, Melinda J.
    JOURNAL OF MAGNETIC RESONANCE, 2007, 188 (01) : 49 - 55
  • [9] Solid-State 1H NMR Studies of Aluminum Oxide Hydroxides and Hydroxides
    Piedra, G.
    Fitzgerald, J. J.
    Dando, N.
    Dec, S. F.
    Inorganic Chemistry, 35 (12):
  • [10] Using Abundant 1H Polarization to Enhance the Sensitivity of Solid-State NMR Spectroscopy
    Yan, Zhiwei
    Zhao, Peizhi
    Yan, Xiaojing
    Zhang, Rongchun
    JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2024, 15 (07): : 1866 - 1878