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In-situ synthesis of amorphous silver silicate/carbonate composites for selective visible-light photocatalytic decomposition

机译:原位合成无定形硅酸银/碳酸盐复合材料用于选择性可见光光催化分解

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摘要

Coupling two different semiconductors to form composite photocatalysts is an extremely significant technique for environmental remediation. Here, a one-step in-situ precipitation method has been developed to prepare amorphous silver silicate/carbonate (AgSiO/Ag2CO3) nanoparticles (NPs) composites, which are well dispersed sphere-like particles with the sizes of around ~50–100 nm. The high-efficiency photocatalytic activities under visible light (VL) have been carefully evaluated, and the AgSiO/Ag2CO3 NPs composites exhibit selective photocatalytic degradations on Methylene Blue (MB) and Rhodamine B (RhB). The maximum degradation rate for MB can reach ~99.1% within ~40 min under VL irradiation, much higher than that of RhB (~12%) in the same condition, which can be ascribed to (I) the smaller molecule size of MB than that of RhB, (II) the fast charge separation between AgSiO NPs and Ag2CO3 NPs, abundant heterojunction interfaces as well as fully exposed reactive sites. These composites are proposed to be an example for the preparation of other silicate composite photocatalysts for practical applications in environmental remediation.
机译:耦合两种不同的半导体以形成复合光催化剂是一种非常重要的环境修复技术。在这里,已经开发出了一种单步原位沉淀方法来制备无定形的硅酸银/碳酸盐(AgSiO / Ag2CO3)纳米颗粒(NPs)复合材料,它们是分散良好的球形颗粒,尺寸约为50-100nm 。仔细评估了可见光(VL)下的高效光催化活性,并且AgSiO / Ag2CO3 NPs复合材料在亚甲基蓝(MB)和若丹明B(RhB)上表现出选择性的光催化降解作用。在VL照射下,MB的最大降解率在约40 min内可达到〜99.1%,远高于相同条件下RhB的最大降解率(〜12%),这可归因于(I)MB的分子尺寸小于(II)AgSiO NPs和Ag2CO3 NPs之间的快速电荷分离,丰富的异质结界面以及完全暴露的反应位点。提出将这些复合材料作为制备其他在环境修复中实际应用的硅酸盐复合光催化剂的实例。

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