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在高旋转速度和弱辐照场下,高效旋转回波双共振再耦合同自旋 1/2 和四极自旋。

Efficient rotational echo double resonance recoupling of a spin-1/2 and a quadrupolar spin at high spinning rates and weak irradiation fields.

机构信息

School of Chemistry, Raymond and Beverly Sackler Faculty of Exact Sciences, Tel Aviv University, Ramat Aviv 69978, Tel Aviv, Israel.

出版信息

J Magn Reson. 2010 Sep;206(1):52-8. doi: 10.1016/j.jmr.2010.05.019. Epub 2010 Jun 8.

Abstract

A modification of the rotational echo (adiabatic passage) double resonance experiments, which allows recoupling of the dipolar interaction between a spin-1/2 and a half integer quadrupolar spin is proposed. We demonstrate efficient and uniform recoupling at high spinning rates (nu(r)), low radio-frequency (RF) irradiation fields (nu(1)), and high values of the quadrupolar interaction (nu(q)) that correspond to values of alpha=nu(1)(2)/nu(q)nu(r), the adiabaticity parameter, which are down to less than 10% of the traditional adiabaticity limit for a spin-5/2 (alpha=0.55). The low-alpha rotational echo double resonance curve is obtained when the pulse on the quadrupolar nucleus is extended to full two rotor periods and beyond. For protons (spin-1/2) and aluminum (spin-5/2) species in the zeolite SAPO-42, a dephasing curve, which is significantly better than the regular REAPDOR experiment (pulse length of one-third of the rotor period) is obtained for a spinning rate of 13 kHz and RF fields down to 10 and even 6 kHz. Under these conditions, alpha is estimated to be approximately 0.05 based on an average quadrupolar coupling in zeolites. Extensive simulations support our observations suggesting the method to be robust under a large range of experimental values.

摘要

提出了一种改进的旋转回波(绝热通道)双共振实验方法,该方法允许自旋-1/2 和半整数 quadrupolar 自旋之间的偶极相互作用重新耦合。我们证明了在高旋转速率(nu(r))、低射频(RF)辐射场(nu(1))和高 quadrupolar 相互作用(nu(q))下,有效且均匀地重新耦合,这些条件对应于 alpha=nu(1)(2)/nu(q)nu(r),即绝热性参数,其值低至传统 spin-5/2(alpha=0.55)的绝热性极限的 10%以下。当 quadrupolar 核上的脉冲扩展到完整的两个转子周期及更长时间时,即可获得低 alpha 旋转回波双共振曲线。对于沸石 SAPO-42 中的质子(自旋-1/2)和铝(自旋-5/2)物种,在旋转速率为 13 kHz 且 RF 场低至 10 甚至 6 kHz 的情况下,获得了比常规 REAPDOR 实验(脉冲长度为转子周期的三分之一)明显更好的去相位曲线。在这些条件下,基于沸石中的平均 quadrupolar 耦合,估计 alpha 约为 0.05。广泛的模拟支持我们的观察结果,表明该方法在广泛的实验值范围内具有稳健性。

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