蔡丹丹, 万霞, 铁绍龙. Cu2O@Cu4(SO4)(OH)6的制备及黑暗下降解橙黄II[J]. 华南师范大学学报(自然科学版), 2017, 49(2): 102-108. doi: 10.6054/j.jscnun.2017073
引用本文: 蔡丹丹, 万霞, 铁绍龙. Cu2O@Cu4(SO4)(OH)6的制备及黑暗下降解橙黄II[J]. 华南师范大学学报(自然科学版), 2017, 49(2): 102-108. doi: 10.6054/j.jscnun.2017073
CAI D D, WAN X, TIE S L. Preparation and Cataly tic Degradation of Acid Orange 7 in the Dark on Cu2O@Cu4(SO4)(OH)6[J]. Journal of South China Normal University (Natural Science Edition), 2017, 49(2): 102-108. doi: 10.6054/j.jscnun.2017073
Citation: CAI D D, WAN X, TIE S L. Preparation and Cataly tic Degradation of Acid Orange 7 in the Dark on Cu2O@Cu4(SO4)(OH)6[J]. Journal of South China Normal University (Natural Science Edition), 2017, 49(2): 102-108. doi: 10.6054/j.jscnun.2017073

Cu2O@Cu4(SO4)(OH)6的制备及黑暗下降解橙黄II

Preparation and Cataly tic Degradation of Acid Orange 7 in the Dark on Cu2O@Cu4(SO4)(OH)6

  • 摘要: 本文采用液相还原法合成出具有不同摩尔比的Cu2O/Ag(x)复合型催化剂,采用XRD、SEM、UV-Vis-NIR漫反射(DRS)分析手段对样品进行表征。结果显示,纳米金属Ag的存在,使得Cu2O/Ag(x)样品对光的吸收扩展到了整个可见和近红外区,且随样品中Ag含量的增加,该区域的吸收逐渐增强,证明Cu2O/Ag(x)复合催化剂对太阳光具有高的光吸收能力。以甲基橙(MO)为目标降解物,研究催化剂在黑暗条件下的降解性能,结果表明Cu2O/Ag(0.05)催化剂具有最高的降解能力,在120 min内黑暗条件下MO (30 mg?L-1) 降解率达到89.2%。同时对Cu2O/Ag(x)复合催化剂的降解机理进行了探讨。

     

    Abstract: A series of Cu2O/Ag(x) samples with different molar ratios were synthesized by a liquid phase reduction method. The properties of Cu2O/Ag(x) samples were characterized by SEM, XRD and DRS(UV-Vis-NIR) analyzing methods. The results indicated that in the presence of metallic Ag the light absorption of Cu2O/Ag(x) samples was greatly extended to visible and near infrared wavelength region. With increasing molar ratio of Ag the absorption intensities of samples enhanced. This implies that Cu2O/Ag(x) composite catalysts exhibit strong absorption of sunlight. The photocatalytic performances of Cu2O/Ag(x) composite catalysts in the darkness were evaluated using methyl orange (MO) as a degradation target. The results showed that Cu2O/Ag(0.05) sample exhibited the highest photocatalytic activity, while the degradation rate of MO (30 mg?L-1) reached 89.2% in 120 min. Meanwhile, the photocatalytic mechanism in Cu2O/Ag composite catalyst system was proposed.

     

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