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首页> 外文期刊>Journal of magnetic resonance >High-field As-75 NMR study of arsenic oxysalts
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High-field As-75 NMR study of arsenic oxysalts

机译:砷含氧盐的高场As-75 NMR研究

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摘要

Arsenic is an important environmental hazard, but there have been few NMR investigations of its molecular scale structure and dynamics, due principally to the large quadrupole moment of (75) As and consequent large quadrupole couplings. We examine here the potential of existing, single-field solid-state NMR technology to investigate solids containing arsenate and arsenite oxyanions. The results show that current techniques have significant potential for arsenates that do not contain both protonated HxAsO4-(3-x) groups and structural water molecules, but that the quadrupole couplings for the arsenites examined here are large enough that interpretation of the spectra is difficult, even at 21.1 T. Compounds that contain both structural H2O molecules and protonated arsenate groups do not yield resolvable signal, likely a result of T-2 effects related to a combination of strong quadrupolar interactions and proton exchange. Spin-echo experiments at 11.7 and 14.1 T were effective for Li3AsO4 and CsH2AsO4, as were whole-pattern spikelet experiments for arsenate oxide (As2O5) at 17.6 and 21.1 T. The central transition resonance of Ca-3(AsO4)(2)center dot 8H(2)O is similar to 6 MHz broad and required a non-conventional, histogram-style spikelet method at high field to improve acquisition efficiency. This approach reduces the acquisition time due to the sensitivity enhancement of the spikelet sequence and a reduction in the number of frequency increments required to map the resonance. Despite the large quadrupole couplings, we have identified a correlation between the (75) As isotropic chemical shift and the electronegativity of the next-nearest neighbor cation in arsenate compounds. (C) 2007 Elsevier Inc. All rights reserved.
机译:砷是一种重要的环境危害,但由于其(75)As的大四极矩和随之而来的大四极偶合,因此对其分子尺度结构和动力学的NMR研究很少。我们在这里检查现有的单场固态NMR技术研究含砷酸根和亚砷酸氧阴离子的固体的潜力。结果表明,当前的技术对于不同时包含质子化的HxAsO4-(3-x)基团和结构水分子的砷酸盐具有巨大的潜力,但是这里检测到的砷的四极杆耦合足够大,以至于难以解析光谱,即使在21.1 T下也是如此。同时包含结构性H2O分子和质子化砷酸根基团的化合物不会产生可分辨的信号,这很可能是T-2效应与强四极相互作用和质子交换相结合的结果。在11.7和14.1 T下的自旋回波实验对Li3AsO4和CsH2AsO4有效,在17.6和21.1 T下对砷酸氧化物(As2O5)的全模式小尖峰实验也是如此。Ca-3(AsO4)(2)中心的中心跃迁共振点8H(2)O类似于6 MHz宽,并且需要在高场下使用非常规的直方图样式的小尖峰方法来提高采集效率。由于小尖峰序列的灵敏度增强以及映射共振所需的频率增量数量的减少,因此该方法减少了采集时间。尽管有很大的四极偶合,但我们已经确定了(75)As各向同性化学位移与砷酸盐化合物中次近邻阳离子的电负性之间的相关性。 (C)2007 Elsevier Inc.保留所有权利。

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