首页> 外文期刊>RSC Advances >Synthesis, photophysics, and reverse saturable absorption of 7-(benzothiazol-2-yl)-9,9-di(2-ethylhexyl)-9H-fluoren-2-yl tethered [Ir(bpy)(ppy)(2)]PF6 and Ir(ppy)(3) complexes (bpy 2,2 '-bipyridine, ppy=2-phenylpyridine)
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Synthesis, photophysics, and reverse saturable absorption of 7-(benzothiazol-2-yl)-9,9-di(2-ethylhexyl)-9H-fluoren-2-yl tethered [Ir(bpy)(ppy)(2)]PF6 and Ir(ppy)(3) complexes (bpy 2,2 '-bipyridine, ppy=2-phenylpyridine)

机译:7-(苯并噻唑-2-基)-9,9-DI(2-乙基己基)-9H-芴-2-基系重[IR(BPY)(PPY)(2)]的合成,光药和反向可饱和吸收吸收[IR(BPY)(2)] PF6和IR(PPY)(3)配合物(BPY 2,2'-Biphyridine,PPY = 2-苯基吡啶)

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摘要

We report the synthesis, photophysics, and reverse saturable absorption of five iridium(m) complexes 1-5 with 7-(benzothiazol-2-yl)-9,9-di(2-ethylhexyl)-9H-fluoren-2-yl (BTF) pendant attached to the 2-phenylpyridine ligand (1: [Ir(bpy)(BTF-ppy)21PF6; 2: [Ir(bpy)(BTF ppy)21PF6; 3: Ir(ppy)2(BTF-ppy); 4: Ir(ppy)(BTF-ppy)2; 5: (BTF-ppy)3, where bpy = 2,2'-bipyridine and ppy = 2-phenylpyridine). The effects of the extended Tc-conjugation of the ppy ligand and the increased number of BTF-ppy ligand, as well as the effects of neutral complex vs. cationic complex were evaluated. All complexes exhibit predominantly ligand-localized (1)pi,pi* transitions below 430 nm and charge-transfer transitions between 430 and 550 nm. They all emit at room temperature and at 77 K, mainly from the metal-to-ligand charge transfer (3MLCT)/ligand-to-ligand charge transfer ((LLCT)-L-3) states for 1 and 2, and from the BTF-ppy ligand-centered (3)pi-pi* excited states with significant contributions from the 3MLCT states for 3-5. The triplet excited states of 1-5 also manifest broad transient absorption (TA) in the visible to the near-IR spectral region. The electronic absorption, emission, and ns transient absorption are all red-shifted by extending the Tc-conjugation of the ppy ligand or increasing the number of BTF-ppy ligand. The energies of the lowest singlet and triplet excited states of the neutral complex 4 are lowered compared to those of its cationic counterpart 1; while the transient absorbing triplet excited state of 4 is much longer lived than that of 1. These complexes all exhibit strong reverse saturable absorption (RSA) for ns laser pulses at 532 nm, with a trend of 5 < 4 < 1 = 3 < 2. This trend is primarily determined by the ratio of the excited-state absorption cross section to that of the ground state (crjo) at 532 nm with the triplet quantum yield also playing a role for complexes 3-5. It appears that the increased number of BTF-ppy ligand reduces the RSA of the neutral complexes while the increased Tc-conjugation of the ppy ligand in the cationic complexes improves the RSA. However, the neutral complex 4 exhibits a weaker RSA at 532 nm than its cationic counterpart 1.
机译:我们报告的合成,光物理学和反向五个铱(M)可饱和吸收配合物1-5与7-(苯并噻唑-2-基)-9,9-二(2-乙基己基)-9H-芴-2-基(BTF)侧链附接至2-苯基吡啶配位体(1:物[Ir(联吡啶)(BTF-PPY)21PF6; 2:物[Ir(联吡啶)(BTF PPY)21PF6; 3:的Ir(ppy)2(BTF-PPY ); 4:的Ir(ppy)(BTF-PPY)2; 5:(BTF-ppy)3的,其中联吡啶= 2,2'-联吡啶和PPY = 2-苯基吡啶)。聚吡咯配体和BTF-PPY配体的数量增加,以及中性络合物与阳离子络合物的效果的延伸的Tc-缀合的效果进行了评价。所有配合物表现出主要配体的局部(1)P1,P1 *低于430和550纳米之间在430nm与电荷转移过渡的过渡。它们全都发射在室温下和在77K,主要是从金属到配位体电荷转移(3MLCT)/配体 - 配体电荷转移((LLCT)-L-3)1和2,以及从状态BTF-PPY配体为中心的(3)的π-π*激发与来自3MLCT状态显著贡献3-5的状态。三重态在可见光激发1-5还表现广阔瞬态吸收(TA)的状态到近红外光谱区域。电子吸收,发射,和NS瞬态吸收全部红移通过延伸PPY的锝配体缀合或增加BTF-PPY配体的数目。最低单重态的能量和的三重激发态的中性络合物4相比,那些其阳离子对方1的下降;而瞬态吸收的4三重激发态更长住比1。这些复合物都表现出强烈的反饱和吸收(RSA)为在532nm纳秒激光脉冲,用5 <4 <1 = 3 2趋势<这种趋势主要由激发态吸收横截面,在与三重量子产率也打络合物3-5作用532nm的基态(crjo)的的比率来确定。看来,BTF-PPY配体数量的增加降低了中性复合物的RSA,而在阳离子络合物增加PPY配体的Tc-缀合改善了RSA。然而,中性络合物4所呈现出在比其阳离子配对1 532nm的弱RSA。

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  • 来源
    《RSC Advances》 |2016年第47期|共15页
  • 作者单位

    N Dakota State Univ Dept Chem &

    Biochem Fargo ND 58108 USA;

    N Dakota State Univ Dept Chem &

    Biochem Fargo ND 58108 USA;

    N Dakota State Univ Dept Chem &

    Biochem Fargo ND 58108 USA;

    N Dakota State Univ Dept Chem &

    Biochem Fargo ND 58108 USA;

    N Dakota State Univ Dept Chem &

    Biochem Fargo ND 58108 USA;

    N Dakota State Univ Dept Chem &

    Biochem Fargo ND 58108 USA;

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  • 正文语种 eng
  • 中图分类 化学;
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