Suppr超能文献

Keggin阴离子[PVnW12 - nO40](3 + n)-的51V魔角旋转核磁共振光谱:抗衡阳离子和钒取代对精细结构常数的影响

51V magic angle spinning NMR spectroscopy of Keggin anions [PVnW12-nO40](3+n)-: effect of countercation and vanadium substitution on fine structure constants.

作者信息

Huang Wenlin, Todaro Louis, Yap Glenn P A, Beer Robert, Francesconi Lynn C, Polenova Tatyana

机构信息

Contribution from the Department of Chemistry and Biochemistry, University of Delaware, Newark, DE 19716, USA.

出版信息

J Am Chem Soc. 2004 Sep 22;126(37):11564-73. doi: 10.1021/ja0475499.

Abstract

Vanadium environments in Keggin oxopolytungstates were characterized by (51)V solid-state MAS NMR spectroscopy. (C(4)H(9))(4)N(+)-, K(+)-, Cs(+)-, as well as mixed Na(+)/Cs(+)- salts of the mono-, di-, and trivanadium substituted oxotungstates, VW(11)O(40), V(2)W(10)O(40), and V(3)W(9)O(40), have been prepared as microcrystalline and crystalline solids. Solid-state NMR spectra report on the local environment of the vanadium site in these Keggin ions via their anisotropic quadrupolar and chemical-shielding interactions. These (51)V fine structure constants in the solid state are determined by the number of vanadium atoms present in the oxoanion core. Surprisingly, the quadrupolar anisotropy tensors do not depend to any significant extent on the nature of the countercations. On the other hand, the chemical-shielding anisotropy tensors, as well as the isotropic chemical shifts, display large variations as a function of the cationic environment. This information can be used as a probe of the local cationic environment in the vanadium-substituted Keggin solids.

摘要

通过(51)V 固体核磁共振波谱对 Keggin 型氧代多钨酸盐中的钒环境进行了表征。制备了单钒、二钒和三钒取代的氧代钨酸盐VW(11)O(40)V(2)W(10)O(40)V(3)W(9)O(40)的(C(4)H(9))(4)N(+) -、K(+) -、Cs(+) -以及混合 Na(+)/Cs(+) -盐,它们为微晶和晶体固体。固体核磁共振谱通过钒位点的各向异性四极和化学屏蔽相互作用报告了这些 Keggin 离子中钒位点的局部环境。这些固体状态下的(51)V 精细结构常数由氧阴离子核中存在的钒原子数决定。令人惊讶的是,四极各向异性张量在很大程度上不依赖于抗衡阳离子的性质。另一方面,化学屏蔽各向异性张量以及各向同性化学位移随阳离子环境的变化而有很大差异。该信息可作为钒取代的 Keggin 固体中局部阳离子环境的探针。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验