van Wüllen Leo, Tricot Grégory, Wegner Sebastian
Institut für Physikalische Chemie, Westfälische Wilhelms-Universität Münster, Correnstrasse 30-36, 48149 Münster, Germany.
Solid State Nucl Magn Reson. 2007 Oct;32(2):44-52. doi: 10.1016/j.ssnmr.2007.07.004. Epub 2007 Aug 15.
In this work a combination of complementary advanced solid-state nuclear magnetic resonance (NMR) strategies is employed to analyse the network organization in aluminophosphate glasses to an unprecedented level of detailed insight. The combined results from MAS, MQMAS and (31)P-{(27)Al}-CP-heteronuclear correlation spectroscopy (HETCOR) NMR experiments allow for a detailed speciation of the different phosphate and aluminate species present in the glass. The interconnection of these local building units to an extended three-dimensional network is explored employing heteronuclear dipolar and scalar NMR approaches to quantify P-O-Al connectivity by (31)P{(27)Al}-heteronuclear multiple quantum coherence (HMQC), -rotational echo adiabatic passage double resonance (REAPDOR) and -HETCOR NMR as well as (27)Al{(31)P}-rotational echo double resonance (REDOR) NMR experiments, complemented by (31)P-2D-J-RESolved MAS NMR experiments to probe P-O-P connectivity utilizing the through bond scalar J-coupling. The combination of the results from the various NMR approaches enables us to not only quantify the phosphate units present in the glass but also to identify their respective structural environments within the three-dimensional network on a medium length scale employing a modified Q notation, Q(n)(m),(AlO)(x), where n denotes the number of connected tetrahedral phosphate, m gives the number of aluminate species connected to a central phosphate unit and x specifies the nature of the bonded aluminate species (i.e. 4, 5 or 6 coordinate aluminium).
在这项工作中,采用了多种互补的先进固态核磁共振(NMR)策略,以前所未有的详细程度深入分析铝磷酸盐玻璃中的网络结构。魔角旋转(MAS)、多量子魔角旋转(MQMAS)和磷-铝-交叉极化异核相关光谱(HETCOR)NMR实验的综合结果,使得能够详细确定玻璃中存在的不同磷酸盐和铝酸盐物种。利用异核偶极和标量NMR方法,通过磷-铝-异核多量子相干(HMQC)、旋转回波绝热通道双共振(REAPDOR)和HETCOR NMR以及铝-磷-旋转回波双共振(REDOR)NMR实验,探索这些局部结构单元如何连接成扩展的三维网络,以量化P-O-Al连接性,并辅以磷-二维J分辨MAS NMR实验,利用通过键的标量J耦合来探测P-O-P连接性。各种NMR方法的结果相结合,使我们不仅能够量化玻璃中存在的磷酸盐单元,还能够使用改进的Q符号Q(n)(m),(AlO)(x),在中等长度尺度上识别它们在三维网络中各自的结构环境,其中n表示连接的四面体磷酸盐的数量,m表示连接到中心磷酸盐单元的铝酸盐物种的数量,x指定键合铝酸盐物种的性质(即4、5或6配位铝)。