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~(19)F-NMR study Al-oxyhydroxide surfaces and reactions

机译:〜(19)F-NMR研究Al-羟基氧化物表面和反应

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~(19)F-NMR spectroscopy is a potentially useful technique for characterizing the surface structure of diamagnetic materials. ~(19)F is a very sensitive, 100% naturally abundant NMR-active nucleus, which allows spectra to be obtained at relatively low concentrations, such as on mineral surfaces of moderate specific surface areas and modest loadings. Dissolved fluoride substitutes for both terminal water and bridging hydroxyl groups on Al-oxyhydroxide surfaces and could serve as a probe of reactive sites. A main problem is uncertainty in NMR peak assignments, and we show here that ~(19)F{~(27)Al} double-resonance techniques could help distinguish fluoride signals arising from terminal vs. bridging configurations. Application to formation of Al-oxyhydroxide gels from the "GaAl_(12)" polyoxocation in the presence of fluoride suggests that most terminal fluorides are converted to bridging sites by water-eliminating condensation reactions during precipitation.
机译:〜(19)F-NMR光谱是一种用于表征二磁材料的表面结构的潜在有用的技术。 〜(19)F是一个非常敏感的100%天然丰富的NMR-活性核,其允许在相对低的浓度下获得光谱,例如在适度的特定表面积和适度载荷的矿物表面上。溶解的氟化物代替末端水和桥羟基表面上的氢氧基替代物,可以用作反应性位点的探针。主要问题是NMR峰值分配的不确定性,我们在这里展示〜(19)F {〜(27)A1}双谐振技术可以帮助区分从端子与桥接配置产生的氟信号。在氟化物存在下,从“Gaal_(12)”中形成α-羟基氧化物凝胶的施用表明,在沉淀过程中通过除水分缩合反应将大多数末端氟化物转化为桥接部位。

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