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首页> 外文期刊>Journal of Materials Science >Ultrasonic-assisted synthesis of amorphous Bi2S3 coupled (BiO)(2)CO3 catalyst with improved visible light-responsive photocatalytic activity
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Ultrasonic-assisted synthesis of amorphous Bi2S3 coupled (BiO)(2)CO3 catalyst with improved visible light-responsive photocatalytic activity

机译:超声辅助合成的具有改善的可见光响应光催化活性的非晶态Bi2S3偶联(BiO)(2)CO3催化剂

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A series of Bi2S3/(BiO)(2)CO3 composite photocatalysts with different loadings of amorphous Bi2S3 were successfully synthesized through an ultrasonic-assisted ion-exchange reaction between thioacetamide (CH3CSNH2) and (BiO)(2)CO3, and characterized by XRD, XPS, BET, EELS, EDX, SEM, TEM/HRTEM, UV-Vis, and photoluminescence (PL) techniques. The results of TEM/HRTEM, EELS, and EDX indicate that the composite catalyst Bi2S3/(BiO)(2)CO3 has been successfully synthesized with the deposited Bi2S3 present in amorphous state on the surface of (BiO)(2)CO3. The activities of the catalysts for RhB degradation under visible light show that the catalyst prepared under ultrasonic is more active than the one synthesized without ultrasonic. The optimized sample Bi2S3/(BiO)(2)CO3 (U5.0) exhibits a much higher activity, about 4.8 times to that of pure (BiO)(2)CO3. Based upon the band structures of Bi2S3/(BiO)(2)CO3, it is deduced that the migration of the visible light-induced electrons from the conduction band of Bi2S3 to that of (BiO)(2)CO3 should have facilitated the separation of photogenerated carriers, as confirmed by the suppressed photoluminescence spectra. Using different scavengers, the center dot O-2 (-) and holes are clearly identified as the main oxidative species for RhB photodegradation. In light of these observations, a potential photocatalytic mechanism of RhB degradation over Bi2S3/(BiO)(2)CO3 is proposed.
机译:通过硫代乙酰胺(CH3CSNH2)和(BiO)(2)CO3之间的超声辅助离子交换反应,成功合成了一系列不同负载量的非晶态Bi2S3的Bi2S3 /(BiO)(2)CO3复合光催化剂,并通过XRD表征,XPS,BET,EELS,EDX,SEM,TEM / HRTEM,UV-Vis和光致发光(PL)技术。 TEM / HRTEM,EELS和EDX的结果表明,复合催化剂Bi2S3 /(BiO)(2)CO3已成功合成,且沉积的Bi2S3以无定形状态存在于(BiO)(2)CO3表面。可见光下RhB降解催化剂的活性表明,在超声下制备的催化剂比没有超声合成的催化剂更具活性。优化的样品Bi2S3 /(BiO)(2)CO3(U5.0)具有更高的活性,约为纯(BiO)(2)CO3的4.8倍。根据Bi2S3 /(BiO)(2)CO3的能带结构,推断可见光诱导的电子从Bi2S3的导带到(BiO)(2)CO3的导带的迁移应该促进了分离由抑制的光致发光光谱证实的光生载流子的数量。使用不同的清除剂,中心点O-2(-)和空穴被明确标识为RhB光降解的主要氧化物质。鉴于这些观察,提出了潜在的光催化机理,即Bi2S3 /(BiO)(2)CO3对RhB的降解作用。

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