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Solid-state NMR indirect detection of nuclei experiencing large anisotropic interactions using spinning sideband-selective pulses

  • Ming Shen
  • , Julien Trébosc
  • , Olivier Lafon*
  • , Zhehong Gan
  • , Frédérique Pourpoint
  • , Bingwen Hu
  • , Qun Chen
  • , Jean Paul Amoureux
  • *此作品的通讯作者
  • Université de Lille
  • National High Magnetic Field Laboratory
  • East China Normal University

科研成果: 期刊稿件文章同行评审

摘要

Under Magic-Angle Spinning (MAS), a long radio-frequency (rf) pulse applied on resonance achieves the selective excitation of the center-band of a wide NMR spectrum. We show herein that these rf pulses can be applied on the indirect channel of Hetero-nuclear Multiple-Quantum Correlation (HMQC) sequences, which facilitate the indirect detection via spin-1/2 isotopes of nuclei exhibiting wide spectra. Numerical simulations show that this indirect excitation method is applicable to spin-1/2 nuclei experiencing a large chemical shift anisotropy, as well as to spin-1 isotopes subject to a large quadrupole interaction, such as 14N. The performances of the long pulses are analyzed by the numerical simulations of scalar-mediated HMQC (J-HMQC) experiments indirectly detecting spin-1/2 or spin-1 nuclei, as well as by dipolar-mediated HMQC (D-HMQC) experiments achieving indirect detection of 14N nuclei via 1H in crystalline γ-glycine and N-acetyl-valine samples at a MAS frequency of 60 kHz. We show on these solids that for the acquisition of D-HMQC spectra between 1H and 14N nuclei, the efficiency of selective moderate excitation with long-pulses at the 14N Larmor frequency, ν0(14N), is comparable to those with strong excitation pulses at ν0(14N) or 2ν0(14N) frequencies, given the rf field delivered by common solid-state NMR probes. Furthermore, the D-HMQC experiments also demonstrate that the use of long pulses does not produce significant spectral distortions along the 14N dimension. In summary, the use of center-band selective weak pulses is advantageous for HMQC experiments achieving the indirect detection of wide spectra since it (i) requires a moderate rf field, (ii) can be easily optimized, (iii) displays a high robustness to CSAs, offsets, rf-field inhomogeneities, and fluctuations in MAS frequency, and (iv) is little dependent on the quadrupolar coupling constant.

源语言英语
页(从-至)104-117
页数14
期刊Solid State Nuclear Magnetic Resonance
72
DOI
出版状态已出版 - 1 11月 2015

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