典型文献
Construction of ZnIn2S4-CdIn2S4 Microspheres for Efficient Photo-catalytic Reduction of CO2 with Visible Light
文献摘要:
ZnIn2S4 has emerged in water splitting and degradation ot dyes due to its good stability and light absorption properties.However,there are still few reports of CO2 photoreduction.Herein,we successfully synthesized Znln2S4 and obtained a series of ZnIn2S4-CdIn2S4 hetero-structured microspheres through the ion exchange method,and first used them in photocatalytic CO2 reduction in noble-metal-free systems.The activity results showed that these ZnIn2S4-CdIn2S4 photocatalysts exhibit excellent catalytic activity under visible light,and the best CO yield is as high as 33.57 μmol.h-1 with a selectivity of 91%.Furthermore,the stability and reusability of ZnIn2S4-CdIn2S4 was firmly confirmed by diverse characterizations,including X-ray diffraction (XRD),scanning electron microscopy (SEM),transmission electron microscopy (TEM),X-ray photoelectron spectroscopy (XPS),energy-dispersive X-ray spectroscopy (EDX) and N2 adsorption measurements.
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作者姓名:
Shitong Han;Bifang Li;Lijuan Huang;Hailing Xi;Zhengxin Ding;Jinlin Long
作者机构:
State Key Laboratory of NBC Protection for Civilian,Beijing 102205,China;State Key Laboratory of Photocatalysis on Energy and Environment,College of Chemistry,Fuzhou University,Fuzhou 3500116,China
文献出处:
引用格式:
[1]Shitong Han;Bifang Li;Lijuan Huang;Hailing Xi;Zhengxin Ding;Jinlin Long-.Construction of ZnIn2S4-CdIn2S4 Microspheres for Efficient Photo-catalytic Reduction of CO2 with Visible Light)[J].结构化学,2022(01):7-13
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Construction,ZnIn2S4,CdIn2S4,Microspheres,Efficient,Photo,Reduction,Visible,Light,has,emerged,water,splitting,degradation,dyes,due,its,good,stability,light,absorption,properties,However,there,are,still,few,reports,photoreduction,Herein,successfully,synthesized,Znln2S4,obtained,series,hetero,structured,microspheres,through,exchange,method,first,used,them,photocatalytic,noble,metal,free,systems,activity,results,showed,that,these,photocatalysts,exhibit,excellent,under,visible,best,yield,high,selectivity,Furthermore,reusability,was,firmly,confirmed,by,diverse,characterizations,including,ray,diffraction,scanning,microscopy,transmission,TEM,photoelectron,spectroscopy,XPS,energy,dispersive,EDX,N2,adsorption,measurements
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0.682126
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