首页> 外文期刊>Bulletin of the Korean Chemical Society >Solid-State 51V NMR and Infrared Spectroscopic Study of Vanadiurn Oxide Supported on TiO2-ZrO2
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Solid-State 51V NMR and Infrared Spectroscopic Study of Vanadiurn Oxide Supported on TiO2-ZrO2

机译:TiO2-ZrO2负载钒氧化物的固态51V NMR和红外光谱研究

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Vanadium oxide catalyst supported on TiO2-ZrO2 has been prepared by adding Ti(OH)4-Zr(OH)4 powder to an aqueous solution of ammonium metavanadate followed by drying and calcining at high temperatures. The char-acterization ofthe prepared catalysts was performed using solid-state 51V NMR and FTIR.In thecase ofcalci-nation temperature at 773 K, vanadium oxide was in a highly dispersed state for the samples containing low loading V2O5 below 25 wt %, but for samplescontaining high loading V2O5 equal to or above 25 wt %, vana-dium oxidewas well crystallized due to the V2O5 loading exceeding the formation of monolayer on the surface of TiO2-ZrO2.The ZrV2O7 compound was formed through the reactionof V2O5 and ZrO2 at 773-973 K, where-as the V3Ti6O17 compound was formedthrough the reaction of V2O5 and TiO2 at 973-1073 K. The V3Ti6O17 compound decomposed to V2O5 and TiO2 at 1173 K, which were confirmed by FTIR and 51V NMR.
机译:通过将Ti(OH)4-Zr(OH)4粉末添加到偏钒酸铵水溶液中,然后在高温下干燥和煅烧来制备负载在TiO2-ZrO2上的氧化钒催化剂。使用固态51V NMR和FTIR对制得的催化剂进行表征。在773 K的煅烧温度下,钒含量低于25 wt%的低负载V2O5样品的氧化钒处于高度分散状态。样品中的高负载V2O5含量等于或大于25 wt%时,由于V2O5的负载量超过了TiO2-ZrO2表面上单层的形成,因此钒氧化物结晶良好.ZrV2O7化合物是通过V2O5和ZrO2在773- 973 K,而V3Ti6O17化合物是通过973-1073 K处的V2O5和TiO2反应形成的。V3Ti6O17化合物在1173 K时分解为V2O5和TiO2,这已通过FTIR和51V NMR证实。

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