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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >A very fast photodegradation of dyes in the presence of new Schiff's base N-4-macrocyclic Ag-doped Pd(II) complexes under visible-light irradiation
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A very fast photodegradation of dyes in the presence of new Schiff's base N-4-macrocyclic Ag-doped Pd(II) complexes under visible-light irradiation

机译:在可见光照射下新的Schiff基碱基N-4-宏环Ag掺杂Pd(II)配合物存在下染料的非常快速的光降解

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摘要

The macrocyclic Schiff's base metal complexes are very significant due to their out-of-box applications in the photocatalytic mineralization of the organic pollutants to fewer harmful byproducts and oxygen generation such as photosynthesis process. The Pd2+ complexes obtained from Schiff base ligands reacted with donor atoms such as nitrogen under solvothermal conditions. These complexes were thoroughly characterized using the microanalysis, molar conductance studies and various spectral analyses. From these data, it is explained that the compound displays square planar geometry with ligands coordination via azomethine and tertiary nitrogen atoms. The new sequence of Pd(II) complexes was used for the degradation of methyl orange, congo red and Alizarin Red S, as standard pollutants, as model pollutants discharged from textile industries. [Ag/Pd(T'PTTP)] (OAc)(3) complex shows higher activity than [Pd(TPTTP)] (OAc)(2) due to the low bandgap energy, high surface area and more light induced nature for the generation of (OH)-O-center dot radicals throughout the catalytic photodegradation. Mechanistic studies for the fast degradation of dyes were supported in the presence of several scavengers and to the suitable of the bandgap energy for the generation of (OH)-O-center dot radicals through the photocatalytic process. For this reason, fast photodegradation rate of [Ag/Pd(TPTEP)] (OAc)(3) as a very efficient photocatalyst for degradation of azo dyes have been suggested.
机译:由于其在有机污染物的光催化矿化中的箱子外应用,宏观杂志的基础金属络合物非常显着,以减少有害的副产物和诸如光合作用过程的氧气产生。从Schiff碱配体获得的PD2 +复合物在溶剂热条件下与供体原子如氮气反应。使用微量分析,磨牙电导研究和各种光谱分析彻底表征这些复合物。从这些数据中,解释了该化合物通过唑甲甲酰胺和叔氮原子显示配体配位的方形平面几何形状。作为标准污染物,新的Pd(II)配合物的新序列用于降解甲基橙,刚果红色和茜素红S,因为从纺织工业排出的模型污染物。 [Ag / Pd(t'pttp)](OAC)(3)复合物由于低带隙能量,高表面积和更多的光诱导性质而显示比[Pd(TPTTP)](OAC)(2)更高的活动在整个催化光降解中产生(OH)-O中心点基团。在几种清除剂的存在下,支持用于快速降解染料的机械研究,并通过光催化过程产生(OH)-O-中心点自由基的带隙能量。因此,已经提出了[Ag / Pd(TPTEP)](OAC)(3)作为一种非常有效的光催化剂的快速光降解速率,作为偶氮染料降解的非常有效的光催化剂。

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