...
首页> 外文期刊>Materials Chemistry Frontiers >1T-phase MoS2 quantum dots as a superior co-catalyst to Pt decorated on carbon nitride nanorods for photocatalytic hydrogen evolution from water
【24h】

1T-phase MoS2 quantum dots as a superior co-catalyst to Pt decorated on carbon nitride nanorods for photocatalytic hydrogen evolution from water

机译:1 t-phase二硫化钼量子点作为一种优越co-catalyst对氮化碳Pt装饰纳米光催化氢进化从水

获取原文
获取原文并翻译 | 示例
           

摘要

Molybdenum disulfide (MoS2) has been confirmed to be a promising non-precious-metal co-catalyst for photocatalytic hydrogen (H2) evolution; however, its low-density of active sites and poor electron transfer efficiency have essentially limited its photocatalytic properties. Here we report that 1T-MoS2 quantum dots (QDs) can exceed the performance of noble metals like Pt as co-catalysts in assisting photo- catalytic H2 evolution upon forming a heterostructure with C3N4 nanorods (denoted as 1T-MoS2@C3N4 NRs). Thepresenceof1T-MoS2 QDs is found to improve light harvesting, enhance electronic conductivity as well as boost the density of active sites, resulting in an excellent light absorption range up to the near-infrared (NIR) region and a highly efficient spatial charge separation and transfer process. As a result, the optimized 1T-MoS2@C3N4 NR composite (5.0 wt%) exhibits an extraordinary photocatalytic H2 production rate of 565 mmol h1 g1 under simulated solar light irradiation, obviously higher than that of noble metal Pt loaded C3N4 NRs (318 mmol h1 g1 ). Moreover, the 1T-MoS2@C3N4 NR composites exhibit good stability in the cyclic runs for photocatalytic H2 production. This study indicates that the highly active MoS2 as a co-catalyst is highly promising as a substitute for Pt for photocatalytic H2 evolution.
机译:二硫化钼(监理)已被证实是一个有前途的non-precious-metal co-catalyst光催化氢气(H2)进化;其活性中心的低密度和糟糕的电子传输效率本质上是有限的光催化性质。1 t-mos2量子点(量子点)可以超过Pt等稀有金属的性能co-catalysts协助照片-催化H2进化形成的异质结构C3N4纳米(1 t-mos2@c3n4 NRs表示)。量子点Thepresenceof1T-MoS2发现改善光收获,提高电子导电率以及提高活性中心的密度,导致一个优秀的光吸收范围近红外(NIR)地区和高度高效的空间电荷分离和转移的过程。NR复合(5.0 wt %)展示一个非凡的光催化氢气产量565更易h1g1在模拟太阳光线照射下,明显高于贵金属Pt加载C3N4评分量表(318更易h1 g1)。1 t-mos2@c3n4 NR复合材料表现出良好的稳定性在光催化H2的循环运行生产。活跃的二硫化钼作为co-catalyst高度承诺作为光催化氢气代替Pt进化。

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