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用于可见光光催化还原解毒六价铬的 n 型(AgIn)(x)Zn(2(1-x))S2/p 型 Ag2S 纳米复合材料的简便合成。

Facile Synthesis of n-type (AgIn)(x)Zn(2(1-x))S2/p-type Ag2S Nanocomposite for Visible Light Photocatalytic Reduction To Detoxify Hexavalent Chromium.

机构信息

Department of Materials Science and Engineering, National Taiwan University of Science and Technology , No. 43, Sec. 4, Keelung Road, Taipei 10607, Taiwan.

出版信息

ACS Appl Mater Interfaces. 2015 Dec 9;7(48):26941-51. doi: 10.1021/acsami.5b09647. Epub 2015 Nov 25.

DOI:10.1021/acsami.5b09647
PMID:26575792
Abstract

n-type (AgIn)(x)Zn(2(1-x))S2/p-type Ag2S nanocomposites with 10%, 20%, and 30% Ag2S loading were successfully synthesized via the simple solvothermal and sol gel methods. The as-prepared nanocomposites were characterized, and their visible light photocatalytic reductions were tested for detoxification of hexavalent chromium (Cr(VI)). The results showed only 20 mg of the as-prepared nanocomposites could reduce 100 mL of 20 ppm potassium dichromate by almost 100% in less than 90 min without adding any hole scavenger agents and pH adjustment (pH = 7). The good photocatalytic reduction was related to the narrower bandgap of (AgIn)(x)Zn(2(1-x))S2 solid solution because of the hybridized orbitals of Ag, In, Zn, and S and low recombination rate of photogenerated electron and hole pairs due to the effectiveness of p-type Ag2S and n-type (AgIn)(x)Zn(2(1-x))S2 nanoheterojunctions. This work not only gives a contribution to the creation of visible light photocatalysis for wide-bandgap semiconductors, but also extends our technological viewpoints in designing highly efficient metal sulfide photocatalyst. To the best of our knowledge, this work is the first finding of a high photocatalytic reduction of hexavalent chromium under visible light illumination by simultaneously using both concepts of p-n nanoheterojunction and solid solution in our photocatalyst design. In this present work, these concepts were used to replace the use of hole scavenger agents, which were commonly used by many other works to retard the recombination rate of photoinduced electron and hole pairs for photodegradation of hexavalent chromium.

摘要

n 型(AgIn)(x)Zn(2(1-x))S2/p 型 Ag2S 纳米复合材料,其中 Ag2S 负载量分别为 10%、20%和 30%,通过简单的溶剂热和溶胶凝胶法成功合成。所制备的纳米复合材料进行了表征,并对其可见光光催化还原性能进行了测试,用于六价铬(Cr(VI))解毒。结果表明,在不到 90 分钟的时间内,只需 20mg 制备的纳米复合材料就可以将 100ml 20ppm 的重铬酸钾还原近 100%,而无需添加任何空穴捕获剂和 pH 调节(pH=7)。良好的光催化还原性能与(AgIn)(x)Zn(2(1-x))S2 固溶体的更窄带隙有关,因为 Ag、In、Zn 和 S 的杂化轨道以及光生电子和空穴对的低复合率,因为 p 型 Ag2S 和 n 型(AgIn)(x)Zn(2(1-x))S2 纳米异质结的有效性。这项工作不仅为宽带隙半导体可见光光催化的创造做出了贡献,而且扩展了我们在设计高效金属硫化物光催化剂方面的技术观点。据我们所知,在可见光照射下,同时利用 p-n 纳米异质结和固溶体的概念来实现六价铬的高光催化还原,这在我们的光催化剂设计中是首次发现。在本工作中,这些概念被用来代替许多其他工作中常用的空穴捕获剂来延迟光诱导电子和空穴对的复合率,以实现六价铬的光降解。

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