...
首页> 外文期刊>Catalysis science & technology >p-Cu2S/n-ZnxCd1-xS nanocrystals dispersed in a 3D porous graphene nanostructure: an excellent photocatalyst for hydrogen generation through sunlight driven water splitting
【24h】

p-Cu2S/n-ZnxCd1-xS nanocrystals dispersed in a 3D porous graphene nanostructure: an excellent photocatalyst for hydrogen generation through sunlight driven water splitting

机译:p-Cu2S / n-ZnxCd1-xS纳米晶体分散在3 d多孔石墨烯纳米结构:一个优秀的光催化剂对氢生成阳光驱动水分裂

获取原文
获取原文并翻译 | 示例
           

摘要

A cocktail strategy to design composite semiconductor photocatalysts for high performance sunlight driven photocatalytic water splitting for hydrogen generation was developed. It includes band gap tuning, p-n junction formation, and dispersion of p-n junctions in a 3D well-connected conductive support. An over fourfold improvement in the hydrogen evolution rate was achieved by Zn0.71Cd0.29S over CdS, 13 vs. 2.7 mu mol h(-1) under irradiation with simulated sunlight at 100 mA cm(-2), through compositing and thus band gap tuning. A further improvement, from 13 to 43.4 mu mol h(-1), was achieved by compositing p-type Cu2S with n-type Zn0.71Cd0.29S to form p-Cu2S/n-Zn0.71Cd0.29S composite nanocrystals, to greatly enhance charge separations. Even more improvements were realized, boosting the hydrogen evolution rate up to 60.1 mu mol h(-1), by dispersing the p-Cu2S/n-Zn-0.71Cd0.29S composite nanocrystals in a 3D, highly conductive porous graphene nanostructure. The porous graphene nanostructure attracts the photo-induced electrons to further improve the involved charge separation. A one-order of magnitude improvement in hydrogen generation over CdS, the best known sunlight responsive photocatalyst for water splitting, was thus achieved with this cocktail material design. The highest specific hydrogen evolution rate achieved, 1202 mu mol g(-1) h(-1), is among the highest for metal sulfide based sunlight driven water splitting.
机译:鸡尾酒组合策略设计高性能的半导体催化剂阳光驱动光催化水分解氢代了。包括带隙调优,pn结的形成,和分散的pn结3 d出身名门的导电支持。四倍的改善氢进化率通过Zn0.71Cd0.29S cd, 13岁与2.7μ摩尔h(1)照射下(2)模拟阳光100 mA厘米,通过合成,从而带隙调优。改进,从13到43.4μ摩尔h (1)通过合成的p型和n型的忍耐力Zn0.71Cd0.29S形成p-Cu2S / n-Zn0.71Cd0.29S复合纳米晶体,大大增强分离。意识到,提高氢进化速率60.1μ摩尔h(1),通过分散p-Cu2S / n -锌- 0.71 - cd0.29s复合纳米晶体一个3 d、高导电多孔石墨烯纳米结构。进一步吸引photo-induced电子提高电荷分离。级一阶改进氢代在cd,最著名的阳光响应光催化剂对水分裂,因此这种鸡尾酒材料设计来实现。比氢进化速率最高实现,1202亩摩尔g (1) h(1)中基于金属硫化物的阳光最高水分裂。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号