论文标题
通过SOL凝胶与Pechini合成的TIO2纳米颗粒中CE和CR代塞溶解度和化学均匀性的增强
Enhancement of Ce and Cr Codopant Solubility and Chemical Homogeneity in TiO2 Nanoparticles through Sol Gel versus Pechini Syntheses
论文作者
论文摘要
CE/CR CODOP的TIO2纳米颗粒是使用Sol Gel和Pechini方法在400 C下进行热处理4小时合成的。常规的溶胶凝胶过程产生了良好的结晶酶,而pechini合成产生的混合相结合酶和金红石的有序较低。这表明后一种方法增强了CE溶解度并增加了化学均匀性,但破坏了TIO2晶格的稳定性。 Pechini前体的分解产生的结构破坏更大,形成了更开放的聚集形态,而干溶液凝胶前体的热解的结构破坏水平较低,导致较低表面积的密集凝聚力。晶格的编码和相关的不稳定降低了两个粉末中的结合能。 Pechini粉末中溶胶凝胶粉末和CR6+形成中的CR4+形成表明,这些价变化来自间隔和/或多价电荷转移的协同电子交换。由于CE太大,无法允许替代或间质固体溶解度,因此引入了综合溶解度的概念,其中Ti位点和相邻的杂种被大型CE ION占据。光催化性能数据表明,由于晶格不稳定和表面积的结晶度降低,编号是有害的。可以看到两个机械行为的制度,这归因于较低的代塞剂水平下的不饱和固体解决方案以及较高级别的过饱和固体解决方案。目前的工作表明,Pechini方法提供的处理技术优于溶胶凝胶,因为前者促进了固体溶解度和随之而来的化学均匀性。
Ce/Cr codoped TiO2 nanoparticles were synthesized using sol gel and Pechini methods with heat treatment at 400 C for 4 h. A conventional sol gel process produced well-crystallized anatase, while Pechini synthesis yielded less ordered mixed-phase anatase and rutile; this suggests that the latter method enhances Ce solubility and increases chemical homogeneity but destabilizes the TiO2 lattice. Greater structural disruption from the decomposition of the Pechini precursor formed more open agglomerated morphologies, while the lower levels of structural disruption from pyrolysis of the dried sol gel precursor resulted in denser agglomerates of lower surface areas. Codoping and associated destabilization of the lattice reduced the binding energies in both powders. Cr4+ formation in sol gel powders and Cr6+ formation in Pechini powders suggest that these valence changes derive from synergistic electron exchange from intervalence and/or multivalence charge transfer. Since Ce is too large to allow either substitutional or interstitial solid solubility, the concept of integrated solubility is introduced, in which the Ti site and an adjacent interstice are occupied by the large Ce ion. The photocatalytic performance data show that codoping was detrimental owing to the effects of reduced crystallinity from lattice destabilization and surface area. Two regimes of mechanistic behavior are seen, which are attributed to the unsaturated solid solutions at lower codopant levels and supersaturated solid solutions at higher levels. The present work demonstrates that the Pechini method offers a processing technique that is superior to sol gel because the former facilitates solid solubility and consequent chemical homogeneity.