Department of Chemistry, University of Oxford , Oxford OX1 3QR, United Kingdom.
Centre for Membrane and Film Technology, Graduate School of Science, Technology and Innovation, Kobe University , Kobe 657-8501, Japan.
J Am Chem Soc. 2017 Sep 13;139(36):12670-12680. doi: 10.1021/jacs.7b06856. Epub 2017 Sep 1.
Hydrated niobium oxides are used as strong solid acids with a wide variety of catalytic applications, yet the correlations between structure and acidity remain unclear. New insights into the structural features giving rise to Lewis and Brønsted acid sites are presently achieved. It appears that Lewis acid sites can arise from lower coordinate NbO and in some cases NbO sites, which are due to the formation of oxygen vacancies in thin and flexible NbO systems. Such structural flexibility of Nb-O systems is particularly pronounced in high surface area nanostructured materials, including few-layer to monolayer or mesoporous NbO·nHO synthesized in the presence of stabilizers. Bulk materials on the other hand only possess a few acid sites due to lower surface areas and structural rigidity: small numbers of Brønsted acid sites on HNbO arise from a protonic structure due to the water content, whereas no acid sites are detected for anhydrous crystalline H-NbO.
水合氧化铌可用作具有多种催化应用的强固体酸,但结构与酸度之间的关系仍不清楚。目前已经获得了对导致路易斯酸和布朗斯台德酸位的结构特征的新见解。似乎路易斯酸位可以源自低配位的 NbO 和在某些情况下的 NbO 位,这是由于在薄而灵活的 NbO 系统中形成了氧空位。Nb-O 系统的这种结构灵活性在高表面积纳米结构材料中尤为明显,包括在稳定剂存在下合成的少层至单层或介孔 NbO·nHO。另一方面,由于表面积和结构刚性较低,块状材料仅具有少数酸位:来自于含水量的质子结构的 HNbO 上产生少量的布朗斯台德酸位,而对于无水结晶的 H-NbO 则未检测到酸位。