首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Template-assisted in-situ synthesis of porous AgBr/Ag composite microspheres as highly efficient visible-light photocatalyst
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Template-assisted in-situ synthesis of porous AgBr/Ag composite microspheres as highly efficient visible-light photocatalyst

机译:模板辅助原位合成多孔AgBr / Ag复合微球作为高效可见光光催化剂

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A novel one step template-assisted in-situ synthetic route was established to synthesize porous AgBr/Ag composite microsphere. Herein, CuBr microsphere was selected as a chemical template to generate porous AgBr/Ag composite microsphere via one step in-situ reaction, where, CuBr not only provided Br- ion to generate AgBr but also released Cu+ ion to reduce Ag+ ion into elemental Ag. The experimental results revealed that the AgBr/Ag composite microsphere could be obtained easily and quickly with the established in-situ synthetic route, while the composition (the ratio of AgBr to Ag) of the final products could be tuned through changing the ratio of CuBr template to Ag+ ion in the precursor solution. Besides, the in-situ formation procedure of porous AgBr/Ag composite microsphere was investigated and found that the template-assisted in-situ synthesis of porous AgBr/Ag composite microsphere was dominated by a kind of synergistic in-situ reaction mechanism involving the ion-exchange reaction between CuBr microsphere and Ag+ as well as follow-up in-situ reduction reaction of Ag+ ion by Cu+ ion released from the CuBr template. The photocatalytic performance of the as-synthesized AgBr/Ag composite microspheres with different compositions were evaluated by monitoring the decolorization of methyl orange (an organic dye; denoted as MO) and the degradation of phenol under visible-light irradiation, and the as-synthesized porous AgBr/Ag composite microsphere with AgBr/Ag ratio of 1:1 was capable of bleaching 94% MO within 20 min while it can decompose 79% of phenol in 180 min, showing excellent visible-light photocatalytic activity. (C) 2015 Elsevier B.V. All rights reserved.
机译:建立了新颖的一步模板辅助原位合成路线,合成了多孔AgBr / Ag复合微球。在此,选择CuBr微球作为化学模板,通过一步原位反应生成多孔的AgBr / Ag复合微球,其中,CuBr不仅提供Br-离子生成AgBr,而且释放Cu +离子将Ag +离子还原成元素Ag。 。实验结果表明,通过建立的原位合成路线,可以轻松,快速地获得AgBr / Ag复合微球,而通过改变CuBr的比例可以调节最终产物的组成(AgBr与Ag的比例)模板以制备前体溶液中的Ag +离子。此外,研究了多孔AgBr / Ag复合微球的原位形成过程,发现模板辅助原位合成多孔AgBr / Ag复合微球是由一种涉及离子的协同原位反应机理决定的。 CuBr微球与Ag +之间的离子交换反应,以及从CuBr模板释放的Cu +离子进行的Ag +离子的后续原位还原反应。通过监测甲基橙(一种有机染料;表示为MO)的脱色和可见光照射下苯酚的降解情况,评估了不同组成的合成AgBr / Ag复合微球的光催化性能。 AgBr / Ag比例为1:1的多孔AgBr / Ag复合微球能够在20分钟内漂白94%的MO,而在180分钟内可以分解79%的苯酚,显示出优异的可见光光催化活性。 (C)2015 Elsevier B.V.保留所有权利。

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