首页> 外文OA文献 >Polymorphic Phase Transformation of Degussa P25 TiO2 by the Chelation of Diaminopyridine on TiO62- Octahedron: Correlation of Anatase to Rutile Phase Ratio on the Photocatalytic Activity
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Polymorphic Phase Transformation of Degussa P25 TiO2 by the Chelation of Diaminopyridine on TiO62- Octahedron: Correlation of Anatase to Rutile Phase Ratio on the Photocatalytic Activity

机译:二氨基吡啶在TiO62-八面体上的螯合作用对Degussa p25 TiO2的多晶相转变:锐钛矿与金红石相比对光催化活性的影响

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摘要

A series of nitrogen-doped Degussa P25 photocatalysts were synthesized successfully by grinding and calcination method using 2,6-diaminopyridine (DAP) as a nitrogen precursor. The prepared samples were characterized by various analytical methods. The phase contents of anatase and rutile in the Degussa P25 powders have been altered by simply changing the proportion of DAP. A mechanism involving chelated DAP molecule on TiO62- octahedron is discussed. The enhanced activity is attributed to synergistic effect in the two phase solid material. Due to the low activation barrier, the effective inter particle electron transfer between the two polymorphs is quite efficient only when they are in close proximity with similar crystallite sizes. The transfer of electrons from the rutile phase to lattice/electron trapping sites of anatase and also to the Ti3+-Vo defect level created by the dopant favors effective charge separation and enhance the photocatalytic activity under solar illumination.
机译:以2,6-二氨基吡啶(DAP)为氮前驱体,通过研磨和煅烧方法成功合成了一系列氮掺杂的Degussa P25光催化剂。通过各种分析方法对制备的样品进行表征。只需改变DAP的比例即可改变Degussa P25粉末中锐钛矿和金红石的相含量。讨论了涉及在TiO62-八面体上螯合DAP分子的机理。增强的活性归因于两相固体材料中的协同作用。由于低的激活势垒,只有当两个多晶型物具有相似的晶粒尺寸时,它们之间的有效粒子间电子转移才是非常有效的。电子从金红石相到锐钛矿的晶格/电子俘获位点的转移以及由掺杂剂产生的Ti3 + -Vo缺陷能级的转移有利于有效的电荷分离,并增强了在阳光照射下的光催化活性。

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