首页> 外文会议>International Conference on Chemistry and Material Science >Molecular Self-Assembly of Group 11 Pyrazolate Complexes as Phosphorescent Chemosensors for Detection of Benzene
【24h】

Molecular Self-Assembly of Group 11 Pyrazolate Complexes as Phosphorescent Chemosensors for Detection of Benzene

机译:第11组吡唑酯配合物作为磷光化学传感器检测苯的分子自组装

获取原文

摘要

We highlight the systematic study on vapochromic sensing of aromatic vapors such as benzene using phosphorescent trinuclear pyrazolate complexes (2) with supramolecular assembly of a weak intermolecular metal-metal interaction consisting of 4-(3,5-dimethoxybenzyl)-3,5-dimethyl pyrazole ligand (1) and group 11 metal ions (Cu(I), Ag(I). Au(I)). The resulting chemosensor 2(Cu) revealed positive response to benzene vapors in 5 mins by blue-shifting its emission band in 44 nm (from 616 to 572 ran) and emitted bright orange to green, where this change cannot be recovered even with external stimuli. Comparing to 2(Ag) with longer metal-metal distance (473 nm) with same sensing time and quenching in 37%, 2(Au) gave quenching in 81% from its original intensity at 612 nm with reusability in 82% without external stimuli and emitted less emissive of red-orange from its original color. The shifting phenomenon in 2(Cu) suggests diffusion of benzene vapors to inside molecules for formation of intermolecular interaction with Cu(I)-Cu(I) interaction while quenching phenomenon in 2(Au) suggests diffusion of benzene vapors to between the Au(l)-Au(I) interaction. These results indicate that suitable molecular structure of ligand and metal ion in pyrazolate complex is important for designing chemosensor in the detection of benzene vapors.
机译:我们使用磷光三核吡络合物(2)与由4-(3,5-二甲氧基苄基)一个弱的分子间的金属 - 金属相互作用的超分子组装体-3,5-二甲基突出芳族蒸气例如苯的vapochromic感测的系统研究吡唑配位体(1)和11族金属离子(铜(I),银(I)。的Au(I))。将得到的化学传感器2(Cu)的由蓝移在44纳米(从616至572,RAN)其发射带和发射明亮的橙色到绿色,其中该变化甚至不能与外部刺激来回收显露苯蒸气的积极响应在5分钟。为2(Ag)的具有更长的金属 - 金属的距离(473纳米)与相同的感测时间进行比较,并在37%,2(Au)的淬火都给以81%在与复用性612纳米淬火从其原始强度在82%以上的无外部刺激和发射的较少发射的红橙色已从其原有颜色。在2(Cu)的换档现象表明苯蒸气内部分子的扩散与铜(I)-Cu(I)的相互作用形成的分子间相互作用的同时淬火在2(Au)的现象表明苯蒸气扩散到在Au之间(升)-Au(I)的相互作用。这些结果表明在吡络合物配体和金属离子的,合适的分子结构是用于在检测苯蒸气的设计化学传感器重要。

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