Cadars Sylvian, Brouwer Darren H, Chmelka Bradley F
Department of Chemical Engineering, University of California, Santa Barbara, California 93106, USA.
Phys Chem Chem Phys. 2009 Mar 21;11(11):1825-37. doi: 10.1039/b815361b. Epub 2009 Jan 28.
Subtle structural details of siliceous zeolites are probed by using two-bond scalar (J) coupling constants to characterize covalently bonded 29Si-O-29Si site pairs and local framework order. Solid-state two-dimensional (2D) 29Si{29Si} NMR measurements and first-principles calculations of 2J(29Si-O-29Si) couplings shed insights on both the local structures of siliceous zeolites Sigma-2 and ZSM-12, as well as the sensitivity of J couplings for detailed characterization analyses. DFT calculations on a model linear silicate dimer show that 2J(Si-O-Si) couplings have complicated multiple angular dependencies that make semi-empirical treatments impractical, but which are amenable to cluster approaches for accurate J-coupling calculations in zeolites. DFT calculations of 2J(29Si-O-29Si) couplings of the siliceous zeolite Sigma-2, whose framework structure is known to high accuracy from single-crystal X-ray diffraction studies, yield excellent agreement between calculated and experimentally measured 2J(Si-O-Si) couplings. For the siliceous zeolite ZSM-12, calculated 2J(29Si-O-29Si) couplings based on less-certain powder X-ray diffraction analyses deviate significantly from experimental values, while a refined structure based on 29Si chemical-shift-tensor analyses shows substantially improved agreement. 29Si J-coupling interactions can be used as sensitive probes of local structures of zeolitic frameworks and offer new opportunities for refining and solving complicated structures, in combination with complementary scattering, modeling, and other nuclear spin interactions.
通过使用双键标量(J)耦合常数来探测硅质沸石的细微结构细节,以表征共价键合的29Si-O-29Si位点对和局部骨架有序性。固态二维(2D)29Si{29Si} NMR测量以及2J(29Si-O-29Si)耦合的第一性原理计算,揭示了硅质沸石Sigma-2和ZSM-12的局部结构,以及J耦合对于详细表征分析的敏感性。对模型线性硅酸盐二聚体的密度泛函理论(DFT)计算表明,2J(Si-O-Si)耦合具有复杂的多重角度依赖性,这使得半经验处理不切实际,但适用于簇方法,以在沸石中进行准确的J耦合计算。对硅质沸石Sigma-2的2J(29Si-O-29Si)耦合进行DFT计算,其骨架结构已通过单晶X射线衍射研究高精度确定,计算得到的和实验测量的2J(Si-O-Si)耦合之间具有极好的一致性。对于硅质沸石ZSM-12,基于不太确定的粉末X射线衍射分析计算得到的2J(29Si-O-29Si)耦合与实验值有显著偏差,而基于29Si化学位移张量分析的精制结构显示出显著改善的一致性。29Si J耦合相互作用可用作沸石骨架局部结构的灵敏探针,并结合互补散射、建模和其他核自旋相互作用,为精制和求解复杂结构提供新的机会。