...
首页> 外文期刊>ACS Omega >Artificial Photosynthesis Model: Photochemical Reaction System with Efficient Light-Harvesting Function on Inorganic Nanosheets
【24h】

Artificial Photosynthesis Model: Photochemical Reaction System with Efficient Light-Harvesting Function on Inorganic Nanosheets

机译:人工光合作用模型:在无机纳米片上具有高效集光功能的光化学反应系统

获取原文
           

摘要

In natural photosynthesis system, its complicated photofunctions are achieved with high efficiency through precise arrangements of dye molecules in proteins. However, it is difficult to imitate such reaction systems artificially because of the complexity of the protein structures. As the way to approach this issue, we suggest the self-assembling behavior of photofunctional dyes on inorganic nanosheets. In this study, photochemical reaction system with a light-harvesting function was newly constructed on a clay nanosheet as an artificial photosynthesis system model by using a metalloporphyrin as a photocatalyst and a subporphyrin as a photoanntena. Under the condition of their co-adsorption on the nanosheet, efficient energy transfer from the subporphyrin to the metalloporphyrin of up to 98% was achieved in the case of donor/acceptor ratio of 1:1. By utilizing such dye–clay complexes, the metalloporphyrin photocatalyst could catalyze the photochemical conversion of cyclohexene by the excitation of both the subporphyrin photoantenna and itself. This light-harvesting system enabled the photocatalytic reaction to use a wider range of visible region without any energy loss because of suppression of unexpected other deactivation processes by precise arrangement of dyes in contrast to general co-adsorption systems. These results would be useful in constructing various types of artificial photosynthesis systems using self-assembling behavior.
机译:在自然光合作用系统中,通过蛋白质中染料分子的精确排列,可以高效地实现其复杂的光功能。然而,由于蛋白质结构的复杂性,难以人工模仿这种反应系统。作为解决此问题的方法,我们建议光官能染料在无机纳米片上的自组装行为。在这项研究中,通过使用金属卟啉作为光催化剂和亚卟啉作为光触媒,在粘土纳米片上新构建了具有光捕集功能的光化学反应系统作为人工光合作用系统模型。在它们在纳米片上共吸附的条件下,在供体/受体比例为1:1的情况下,从亚卟啉到金属卟啉的有效能量转移达到了98%。通过利用这种染料-粘土配合物,金属卟啉光催化剂可以通过亚卟啉光天线及其自身的激发来催化环己烯的光化学转化。与一般的共吸附系统相比,该光收集系统使光催化反应能够使用更宽范围的可见光区域而没有任何能量损失,这是因为通过精确排列染料抑制了意外的其他失活过程。这些结果将有助于使用自组装行为构建各种类型的人工光合作用系统。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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