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Isomerism and coordination mode effects on two-photon absorption of tris(picolyl)amine-based fluorescent probes for zinc ions

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【作者】 赵珂宋军朱美玉张瀚王传奎

【Author】 Ke Zhao;Jun Song;Mei-Yu Zhu;Han Zhang;Chuan-Kui Wang;School of Physics and Electronics,Shandong Normal University;

【通讯作者】 赵珂;

【机构】 School of Physics and Electronics,Shandong Normal University

【摘要】 One-photon absorption and two-photon absorption(TPA) properties of three tris(picolyl)amine-based zinc ion sensors are investigated by employing the density functional response theory in combination with the polarizable continuum model.The different isomer and coordination geometry of each probe are taken into account. Special emphasis is placed on the effects of isomerism and the coordination mode on the optical properties. The intra-molecular charge transfer(ICT)properties are specified by natural bond orbital charge analysis. It is shown that the isomerism has non-negligible effects on TPA properties of free ligands. It is found that both the TPA wavelength and the cross section are highly dependent on the coordination mode. When the zinc ion connects with the picolyl unit in the middle of a ligand, the zinc complex has a large TPA intensity in a long wavelength range due to the increased ICT mechanism.

【Abstract】 One-photon absorption and two-photon absorption(TPA) properties of three tris(picolyl)amine-based zinc ion sensors are investigated by employing the density functional response theory in combination with the polarizable continuum model.The different isomer and coordination geometry of each probe are taken into account. Special emphasis is placed on the effects of isomerism and the coordination mode on the optical properties. The intra-molecular charge transfer(ICT)properties are specified by natural bond orbital charge analysis. It is shown that the isomerism has non-negligible effects on TPA properties of free ligands. It is found that both the TPA wavelength and the cross section are highly dependent on the coordination mode. When the zinc ion connects with the picolyl unit in the middle of a ligand, the zinc complex has a large TPA intensity in a long wavelength range due to the increased ICT mechanism.

【基金】 Project supported by the Natural Science Foundation of Shandong Province,China(Grant No.ZR2014AM026);the Taishan Scholar Project of Shandong Province,China
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2018年10期
  • 【分类号】TH742
  • 【被引频次】2
  • 【下载频次】12
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