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具有 3 元环笼的钡氧亚硝磷酸中构建的前所未有沸石状骨架拓扑结构。

Unprecedented zeolite-like framework topology constructed from cages with 3-rings in a barium oxonitridophosphate.

机构信息

Ludwig-Maximilians-Universität München, Department Chemie, Butenandtstrasse 5-13 (D), D-81377 Munich, Germany.

出版信息

J Am Chem Soc. 2011 Aug 10;133(31):12069-78. doi: 10.1021/ja202159e. Epub 2011 Jul 13.

Abstract

A novel oxonitridophosphate, Ba(19)P(36)O(6+x)N(66-x)Cl(8+x) (x ≈ 4.54), has been synthesized by heating a multicomponent reactant mixture consisting of phosphoryl triamide OP(NH(2))(3), thiophosphoryl triamide SP(NH(2))(3), BaS, and NH(4)Cl enclosed in an evacuated and sealed silica glass ampule up to 750 °C. Despite the presence of side phases, the crystal structure was elucidated ab initio from high-resolution synchrotron powder diffraction data (λ = 39.998 pm) applying the charge flipping algorithm supported by independent symmetry information derived from electron diffraction (ED) and scanning transmission electron microscopy (STEM). The compound crystallizes in the cubic space group Fm ̅3c (no. 226) with a = 2685.41(3) pm and Z = 8. As confirmed by Rietveld refinement, the structure comprises all-side vertex sharing P(O,N)(4) tetrahedra forming slightly distorted 3(8)4(6)8(12) cages representing a novel composite building unit (CBU). Interlinked through their 4-rings and additional 3-rings, the cages build up a 3D network with a framework density FD = 14.87 T/1000 Å(3) and a 3D 8-ring channel system. Ba(2+) and Cl(-) as extra-framework ions are located within the cages and channels of the framework. The structural model is corroborated by (31)P double-quantum (DQ) /single-quantum (SQ) and triple-quantum (TQ) /single-quantum (SQ) 2D correlation MAS NMR spectroscopy. According to (31)P{(1)H} C-REDOR NMR measurements, the H content is less than one H atom per unit cell.

摘要

一种新型的氧氮磷酸盐,Ba(19)P(36)O(6+x)N(66-x)Cl(8+x)(x ≈ 4.54),是通过在充满氮气的石英玻璃安瓿中加热由磷酸三酰胺 OP(NH(2))(3)、硫代磷酸三酰胺 SP(NH(2))(3)、BaS 和 NH(4)Cl 组成的多组分反应物混合物至 750°C 而合成的。尽管存在副相,但通过应用由电子衍射 (ED) 和扫描透射电子显微镜 (STEM) 得出的独立对称信息支持的电荷翻转算法,从高分辨率同步辐射粉末衍射数据(λ = 39.998 pm)中首次阐明了晶体结构。该化合物在立方空间群 Fm ̅3c(No. 226)中结晶,a = 2685.41(3) pm,Z = 8。正如 Rietveld 精修所证实的,该结构包含全顶点共享的 P(O,N)(4)四面体,形成略微扭曲的 3(8)4(6)8(12)笼,代表一种新的复合建筑单元 (CBU)。通过它们的 4 环和额外的 3 环相互连接,笼构建了一个具有框架密度 FD = 14.87 T/1000 Å(3)和 3D 8 环通道系统的 3D 网络。Ba(2+)和 Cl(-)作为额外的骨架离子位于笼和骨架的通道内。结构模型得到了 (31)P 双量子(DQ)/单量子(SQ)和三量子(TQ)/单量子(SQ)2D 相关 MAS NMR 光谱的证实。根据 (31)P{(1)H} C-REDOR NMR 测量,H 含量小于每个单元的一个 H 原子。

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