首页> 外文期刊>ACS Omega >Near-Infrared Photoluminescence and Reversible Trans-to-Cis Photoisomerization of Mononuclear and Binuclear Ytterbium(III) Complexes Functionalized by Azobenzene Groups
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Near-Infrared Photoluminescence and Reversible Trans-to-Cis Photoisomerization of Mononuclear and Binuclear Ytterbium(III) Complexes Functionalized by Azobenzene Groups

机译:偶氮苯官能化的单核和双核Y(III)配合物的近红外光致发光和可逆跨Cis光异构化。

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Two mononuclear and one binuclear ytterbium complexes with dual near-infrared (NIR) photoluminescence and reversible trans-to-cis photoisomerization functions were synthesized and characterized. The central ytterbium(III) ion coordinates with two β-diketonate (4,4,4-trifluoro-1-phenylbutane-1,3-dionate (tfd)) ligands and one deprotonated azobenzene-containing tetradentate ligand [(E )-4-(phenyldiazenyl)-N ,N -bis(pyridin-2-ylmethyl) benzohydrazide (HL), (E )-4-((4-(dimethylamino)phenyl)diazenyl)-N ,N -bis(pyridin-2-ylmethyl)benzohydrazide (HNL), or (E )-4,4′-N ′,N ′-bis(pyridin-2-ylmethyl)benzohydrazide azobenzene (H_(2)DL)] to form a neutral ternary complex ([Yb(tfd)_(2)L], [Yb(tfd)_(2)(NL)], or [Yb_(2)(tfd)_(4)(DL)], respectively), where the ytterbium(III) ion is eight-coordinated to N_(3)O_(5) donor sets. X-ray crystallographic analysis shows that all three complexes form a trigonal dodecahedron geometry with similar ?N═N– distances that are slightly longer than those of the pure azobenzene-containing ligands. The NIR luminescence properties of the Yb(III) complexes were determined at a wavelength of about 980 nm with quantum yields in the range of 0.4–0.6% in ethanol and acetonitrile solutions at room temperature, and trans-to-cis photoisomerization was determined with the quantum yields (Φ_(t→c) = 10~(–2)) at the same level as their pure ligands. The trans-to-cis photoisomerization rates of the complexes (10~(–4) s~(–1)) are slightly higher than those of the pure ligands and similar to azobenzene (10~(–5) to 10~(–4) s~(–1)). From time-dependent density functional theory calculations of the energy levels of the first excited triplet states of the ligands, the energies of the lowest excited triplet states of all of the ligands are higher than the resonance level of Yb~(3+) (2F_(5/2), 1.2722 eV). We suggest that these azo-containing ligands may participate in energy transfer to the ytterbium ion, in addition to the main “antenna effect” ligand tfd. This is the first report of azobenzene group-functionalized ytterbium complexes with dual NIR luminescence and photoisomerization properties, indicating that azobenzene-containing lanthanide(III) complexes have potential applications as dual function materials in biological systems.
机译:合成和表征了两个具有双近红外(NIR)光致发光和可逆的反式-顺式光异构化功能的单核和一个双核配合物。中央离子与两个β-二酮酸酯(4,4,4-三氟-1-苯基丁烷-1,3-二酸酯(tfd))配体和一个去质子化的含偶氮苯的四齿配体[( E )-4-(苯基二氮烯基)-N,N-双(吡啶-2-基甲基)苯并肼(HL),(E)-4-((4-(二甲基氨基)苯基)二氮烯)-N,N-双(吡啶-2-基甲基)苯甲酰肼(HNL)或(I E)-4,4'-N',N'-双(吡啶-2-基甲基)苯甲酰肼偶氮苯(H_(2)DL)]形成中性三元络合物([Yb(tfd)_(2)L],[Yb(tfd)_(2)(NL)] (或分别为[Yb_(2)(tfd)_(4)(DL)]),其中(III)离子与N_(3)O_(5)供体对八配位。 X射线晶体学分析表明,所有三个配合物均形成具有相似的?N═N–距离的三角形十二面体几何形状,其距离比纯含偶氮苯的配体的距离略长。在室温下,在乙醇和乙腈溶液中,在约980 nm的波长下测定Yb(III)配合物的NIR发光性质,其量子产率在0.4-0.6%的范围内,并通过反式-顺式光异构化测定量子产率(Φ_(t→c)= 10〜(–2))与纯配体处于相同水平。配合物(10〜(–4)s〜(–1))的反式至顺式光异构化速率略高于纯配体,与偶氮苯相似(10〜(–5)至10〜(– 4)s〜(–1))。根据配体的第一激发三重态的能级随时间的密度泛函理论计算,所有配体的最低激发三重态的能级均高于Yb〜(3+)(2F_ (5/2),1.2722 eV)。我们建议,除了主要的“天线效应”配体tfd以外,这些含偶氮的配体还可能参与能量转移到y离子上。这是具有双NIR发光和光异构化特性的偶氮苯基官能化complex配合物的首次报道,表明含偶氮苯的镧系元素(III)配合物在生物系统中作为双功能材料具有潜在的应用前景。

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