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Synthesis, characterization and UV-A light photocatalytic activity of 20wt%SrO-CuBi_2O_4 composite

机译:20wt%SrO-CuBi_2O_4复合材料的合成,表征及UV-A光催化活性

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摘要

A novel nanoscale powder 20wt%SrO-CuBi_2O_4 has been successfully synthesized for the first time by ion exchange through doping Sr(NO_3)_2 into CuBi_2O_4 matrix and characterized using TG/DTA, XRD, EDX, SEM and electrical measurements. The as-prepared 20 wt%SrO-CuBi_2O_4 composite exhibit much higher photocatalytic activity than 20 wt%SrO-CuBi_2O_4 synthesized via physical process and pure phase CuBi_2O_4 under UV-A light irradiation (λ = 365 nm) in the course of the photocatalytic redox activity of Congo red (CR). Maximum degradation was achieved within 220 min of irradiation time under UV-A light as a result of 97.22% of photocatalytic efficiency of CR. The mechanisms of the enhancement of photocatalytic activity of the nanocomposite photocatalyst will be discussed by the p-n heteroj unction principle (charge separation and photochemical diode models) and the valance band theory. The pure nanocomposite systems have been also reported for a comparative purpose.
机译:通过将Sr(NO_3)_2掺杂到CuBi_2O_4基体中进行离子交换,首次成功合成了20wt%SrO-CuBi_2O_4纳米级新型粉末,并用TG / DTA,XRD,EDX,SEM和电学测量表征。所制备的20 wt%SrO-CuBi_2O_4复合材料在光催化氧化还原过程中比通过物理过程和纯相CuBi_2O_4在UV-A光照射(λ= 365 nm)下合成的20 wt%SrO-CuBi_2O_4具有更高的光催化活性。刚果红(CR)的活性。由于CR的97.22%的光催化效率,在UV-A光照射下220分钟内可实现最大降解。将通过p-n异质结原理(电荷分离和光化学二极管模型)和价带理论讨论提高纳米复合光催化剂光催化活性的机理。也已经报道了纯纳米复合材料系统用于比较目的。

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