首页> 美国卫生研究院文献>Materials >Synthesis of AgInS2-xAg2S-yZnS-zIn6S7 (x y z = 0 or 1) Nanocomposites with Composition-Dependent Activity towards Solar Hydrogen Evolution
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Synthesis of AgInS2-xAg2S-yZnS-zIn6S7 (x y z = 0 or 1) Nanocomposites with Composition-Dependent Activity towards Solar Hydrogen Evolution

机译:AgInS2-xAg2S-yZnS-zIn6S7(xyz = 0或1)纳米复合材料的合成其组成依赖于太阳能的释放

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摘要

Metal sulfides-based nanomaterials have been used as a class of efficient solar driven photocatalysts. However, the H2-production rate observed over these photocatalysts remains problematic. Here, the AgInS2-xAg2S-yZnS-zIn6S7 (x, y, z = 0 or 1) nanocomposites with controlled compositions have been successfully prepared by a simple hydrothermal method with AgI polyhedrons as silver source. The obtained AgInS2-xAg2S-yZnS-zIn6S7 nanocomposites showed a composition-dependent activity for H2 evolution from aqueous solution under simulated sun-light irradiation. The results showed that the optimized product of AgInS2-Ag2S-ZnS nanoparticles synthesized with the precursor ratio of Ag:Zn = 1:1 exhibited the highest H2 evolution rate of 5.4 mmol·g−1·h−1. Furthermore, the catalyst can be used for 20 h without loss of activity, showing its high stability. It opens a new path to achieve highly efficient solar photocatalyst for H2 evolution from water splitting.
机译:基于金属硫化物的纳米材料已被用作一类有效的太阳能驱动的光催化剂。然而,在这些光催化剂上观察到的H 2产生率仍然是有问题的。在这里,已通过简单的水热法,以AgI多面体为银源,成功地制备了组成受控的AgInS2-xAg2S-yZnS-zIn6S7(x,y,z = 0或1)纳米复合材料。所获得的AgInS2-xAg2S-yZnS-zIn6S7纳米复合材料在模拟太阳光照射下从水溶液中析出H2表现出依赖于组成的活性。结果表明,前驱比为Ag:Zn = 1:1的AgInS2-Ag2S-ZnS纳米粒子的优化产物具有最高的H2析出速率5.4mmol·g -1 ·h< sup> -1 。此外,该催化剂可以使用20小时而不会失去活性,显示出其高稳定性。它开辟了一条新途径,以实现从水分解中释放出H2的高效太阳能光催化剂。

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