State Key Laboratory of Catalysis, Dalian National Laboratory for Clean Energy, 2011-Collaborative Innovation Center of Chemistry for Energy Materials, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Zhongshan Road 457, Dalian 116023, China; University of Chinese Academy of Sciences, Beijing 100049, China.
State Key Laboratory of Catalysis, Dalian National Laboratory for Clean Energy, 2011-Collaborative Innovation Center of Chemistry for Energy Materials, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Zhongshan Road 457, Dalian 116023, China.
J Magn Reson. 2022 Nov;344:107310. doi: 10.1016/j.jmr.2022.107310. Epub 2022 Oct 26.
Herein, we introduce supercycle of R-symmetry sequences (SR-sequences) and incomplete supercycle schemes of R-symmetry sequences (iSR-I- and iSR-II-sequences) to improve the robustness of PRESTO for heteronuclear polarization transfer in MAS NMR. The constructions of SR- and iSR-I/II- sequences are based on the different phase-inverted supercycles of R-symmetry sequences, and such supercycles can suppress the influence of CSA, resonance offset and RF mismatch when incorporated into the PRESTO method. Moreover, the SR- and iSR-II-sequences are more efficient in suppressing the interference of homonuclear dipolar coupling. The improved robustness of SR-, iSR-I- and iSR-II-PRESTO over the original R-PRESTO has been verified by numerical simulations and NMR experiments on NHHPO and gamma-alumina at fast MAS conditions. It is also important to note that the SR- and iSR-II-PRESTO can greatly lengthen the transverse relaxation times and lead to much higher polarization transfer efficiency compared to R-PRESTO, thanks to their superior tolerance to RF inhomogeneity and homonuclear dipolar coupling.
在此,我们引入了 R 对称序列的超循环(SR 序列)和 R 对称序列的不完全超循环方案(iSR-I 和 iSR-II 序列),以提高 PRESTO 在 MAS NMR 中用于异核极化转移的鲁棒性。SR 和 iSR-I/II 序列的构建基于 R 对称序列的不同相倒置超循环,当将这些超循环纳入 PRESTO 方法中时,它们可以抑制 CSA、共振偏移和 RF 失配的影响。此外,SR 和 iSR-II 序列在抑制同核偶极耦合的干扰方面更有效。通过对 NHHPO 和 γ-氧化铝在快速 MAS 条件下进行数值模拟和 NMR 实验,验证了 SR、iSR-I 和 iSR-II-PRESTO 相对于原始 R-PRESTO 的鲁棒性得到了提高。值得注意的是,由于 SR 和 iSR-II-PRESTO 对 RF 不均匀性和同核偶极耦合具有更好的容忍度,因此与 R-PRESTO 相比,它们可以大大延长横向弛豫时间并导致更高的极化转移效率。