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A high-resolution natural abundance 33S MAS NMR study of the cementitious mineral ettringite

机译:胶结矿物钙矾石的高分辨率自然丰度33S MAS NMR研究

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摘要

Despite the widespread occurrence of sulfur in both natural and man-made materials, the 33S nucleus has only rarely been utilised in solid-state NMR spectroscopy on account of its very low natural abundance (0.76%), low NMR frequency (ν0 = 30.7 MHz at B0 = 9.4 T), and significant nuclear quadrupole moment (spin I = 3/2, Q = −69.4 mb). Satellite-transition magic angle spinning (STMAS) is an NMR method for obtaining high-resolution spectra of half-integer quadrupolar nuclei (spin I > 1/2) in solids and is notable for its intrinsic sensitivity advantage over the similar multiple-quantum (MQMAS) method, especially for nuclei with low NMR frequencies. In this work we demonstrate the feasibility of natural abundance 33S STMAS NMR experiments at B0 = 9.4 T and 20.0 T using a model sulfate sample (Na2SO4 + K2SO4 in a 1 : 1 molar ratio). Furthermore, we undertake a natural abundance 33S STMAS NMR study of the cement-forming mineral ettringite (Ca6Al2(SO4)3(OH)12·26H2O) at B0 = 9.4 T and 20.0 T, resolving a discrepancy in the literature between two previous conventional 33S MAS NMR studies and obtaining an alternative set of 33S NMR parameters that is simultaneously consistent with the MAS and STMAS data at both field strengths.
机译:尽管天然和人造材料中都普遍存在硫,但由于其33S核的自然丰度很低(0.76%),NMR频率很低(ν0= 30.7 MHz),因此很少用于固态NMR光谱分析中。在B0 = 9.4 T时)和明显的核四极矩(自旋I = 3/2,Q = -69.4 mb)。卫星跃迁魔角旋转(STMAS)是一种NMR方法,用于获得固体中半整数四极核(自旋I> 1/2)的高分辨率光谱,并且以其固有的灵敏度优势(优于类似的多量子( MQMAS)方法,尤其适用于低NMR频率的核。在这项工作中,我们证明了使用模型硫酸盐样品(摩尔比为Na2SO4 + K2SO4)在B0 = 9.4 T和20.0 T时进行自然丰度33S STMAS NMR实验的可行性。此外,我们对形成水泥的钙矾石(Ca6Al2(SO4)3(OH)12·26H2O)在B0 = 9.4 T和20.0 T时进行了自然丰度的33S STMAS NMR研究,从而解决了文献中两个先前常规方法之间的差异。 33S MAS NMR研究并获得了一套33S NMR参数集,这些参数在两个场强下均与MAS和STMAS数据同时一致。

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