首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >SrSnO3 perovskite obtained by the modified Pechini method-Insights about its photocatalytic activity
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SrSnO3 perovskite obtained by the modified Pechini method-Insights about its photocatalytic activity

机译:SRSNO3钙钛矿由改良的Pechini方法 - 关于其光催化活动的洞察力

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摘要

The use of SrSnO3 as a photocatalyst in different applications has been growing in recent years, particularly for degradation of organic dyes. In the present work, SrSnO3 catalyst was synthesized by the modified Pechini method and applied in the photocatalytic degradation of a textile azo-dye in aqueous solution under ultraviolet irradiation. The dominant photocatalytic species for this system were evaluated, determined from terephthalic acid photohydroxylation and from different scavengers. Moreover, electrochemical data were used to evaluate charge transfer between SrSnO3 and the species involved in the photocatalysis -O-2, H2O and the scavengers. The irradiation time required to achieve 98% decolorization of a Remazol Golden Yellow (RNL) solution was 10 h. The catalyst simultaneously reduced all the absorption bands in the UV-vis spectrum of RNL, suggesting pollutant degradation. Isopropanol, silver and formic acid were all employed to test the importance of different photocatalytic processes and the photohydroxylation of terephthalic acid confirmed the generation of (OH)-O-center dot. A comparison of the SrSnO3 band positions and the potential of relevant redox couples suggests possible mechanisms for (OH)-O-center dot generation from both photogenerated carrier types (electrons and holes), in agreement with the results obtained using the hole/electron scavengers.
机译:近年来,在不同应用中使用SRSNO3作为光催化剂的使用,特别是用于有机染料的降解。在本作工作中,通过改性的Pechini方法合成SRSNO 3催化剂,并在紫外线照射下的纺织偶氮染料中的光催化降解。评估该系统的显性光催化物质,由对苯二甲酸光羟基化和不同的清除剂确定。此外,使用电化学数据来评估SRSNO3和涉及光催化-O-2,H2O和清除剂所涉及的物种之间的电荷转移。实现迁移金黄色(RNL)溶液的98%脱色所需的照射时间为10小时。催化剂同时降低了RNL的UV-Vis光谱中的所有吸收带,表明污染物降解。异丙醇,银和甲酸都是用于测试不同光催化过程的重要性,对苯二甲酸的光致己化证实(OH)-O中心点的产生证实。 SRSNO3带位置的比较和相关氧化还原耦合的电位表明(OH)-O-中心点从光生载流子类型(电子和孔)的可能机制,同时使用孔/电子清除剂获得的结果。

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