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CAESURA:Measurement of slow molecular dynamics by solid-state nuclear magnetic resonance chemical shift anisotropy modulation amplification

机译:CAESURA:通过固态核磁共振化学位移各向异性调制放大法测量慢分子动力学

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摘要

An alternative magic angle spinning (MAS) exchange NMR experiment based on chemical shift anisotropy (CSA) amplification is described.The CSA amplification experiment correlates a standard MAS spectrum in the omega_2 dimension with a sideband pattern in omega_1 in which the intensities are identical to those expected for a sample spinning at some fraction 1/N of the actual rate omega_r.In common with 2D-PASS,the isotropic shift appears only in the omega_2 dimension,and long acquisition times can be avoided without loss of resolution of different chemical sites.The new CSA amplification exchange experiment provides information about the time scale and geometry of molecular motions via their effect on the sideband intensities in a one-dimensional pattern.The one-dimensional patterns from different chemical sites are separated across two frequency dimensions according to the isotropic shifts.
机译:描述了基于化学位移各向异性(CSA)扩增的另一种魔术角旋转(MAS)交换NMR实验.CSA扩增实验将omega_2维中的标准MAS光谱与omega_1中的边带模式相关,其中强度与那些相同与2D-PASS相同,各向同性位移仅出现在omega_2维度上,可以避免较长的采集时间而不会损失不同化学位点的分辨率,这是预期的结果。新的CSA放大交换实验通过一维模式对边带强度的影响,提供了分子运动的时标和几何形状的信息。来自不同化学位点的一维模式根据各向同性在两个频率维度上分开转变。

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