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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Water-soluble alkylated bis{4′-(4-pyridyl)-2,2′:6′, 2″-terpyridine}ruthenium(ii) complexes for use as photosensitizers in water oxidation: A complementary experimental and TD-DFT investigation
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Water-soluble alkylated bis{4′-(4-pyridyl)-2,2′:6′, 2″-terpyridine}ruthenium(ii) complexes for use as photosensitizers in water oxidation: A complementary experimental and TD-DFT investigation

机译:在水氧化中用作光敏剂的水溶性烷基化双{4'-(4-吡啶基)-2,2':6',2″-叔吡啶}钌(ii)配合物:补充实验和TD-DFT研究

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摘要

A series of N-alkylated derivatives [RuL_2][PF_6] _4 has been prepared from [Ru(pytpy)_2][PF_6] _2 (N-alkyl substituent = 4-cyanobenzyl, 4-nitrobenzyl, ethyl, cyanomethyl, allyl, octyl). Solution NMR spectroscopic, electrochemical and photophysical properties are reported, along with the single crystal structure of [Ru(4)_2][PF_6]_4·H_2O (4 = 4′-(4-(1-ethylpyridinio))-2,2′:6′,2′-terpyridine). Anion exchange leads to the water-soluble [RuL_2][HSO_4] _4 salts (N-alkyl substituent = benzyl, 4-cyanobenzyl, 4-nitrobenzyl, ethyl, cyanomethyl, allyl, octyl) and the NMR spectroscopic signatures of pairs of hexafluoridophosphate and hydrogensulfate salts are compared. The change in anion has little effect on the energies of absorptions in the electronic spectra, although for all complexes, decreases in extinction coefficients are observed. The emission spectra and lifetimes for the hexafluoridophosphate and hydrogensulfate salts show similar trends; all exhibit an emission close to 720-730 nm (λ_(ex) = 510 nm). For a given ligand, L, the emission lifetime decreases on going from [RuL_2][PF_6]_4 to [RuL_2][HSO_4]_4. However, trends are the same for both salts, i.e. the longest lived emitters are observed for N-ethyl, N-octyl and N-benzyl derivatives, and the shortest lived emitters are those containing cyano or nitro groups. Significantly, in the absorption spectra of the complexes, there is little variation in the energy of the MLCT band, suggesting that the character of the ligand orbital involved in the transition contains no character from the N-substituent. We have addressed this by carrying out a complementary DFT and TD-DFT study. Calculated absorption spectra predict a red shift in λ_(max) on going from [Ru(pytpy) _2]~(2+) to [RuL_2]~(4+), and little variation in λ_(max) within the series of [RuL_2] ~(4+) complexes; these results agree with experimental observations. Analysis of the compositions of the MOs involved in the MLCT transitions explain the experimental observations, showing that there is no contribution from orbitals on the N-alkyl substituents, consistent with the fact that the nature of the N-substituents has little influence on the energy of the MLCT band. The theoretical results also reveal satisfactory agreement between calculated and crystallographic data for [Ru(1)_2]~(4+) (1 = 4′-(4-(1-benzylpyridinio))-2,2′:6′,2′-terpyridine) and [Ru(4)_2]~(4+).
机译:由[Ru(pytpy)_2] [PF_6] _2(N-烷基取代基= 4-氰基苄基,4-硝基苄基,乙基,氰基甲基,烯丙基,辛基)制备了一系列N-烷基化衍生物[RuL_2] [PF_6] _4 )。报告了溶液NMR的光谱,电化学和光物理性质,以及[Ru(4)_2] [PF_6] _4·H_2O(4 = 4'-(4-(1-乙基吡啶基))-2,2的单晶结构′:6′,2′-叔吡啶)。阴离子交换产生水溶性的[RuL_2] [HSO_4] _4盐(N-烷基取代基=苄基,4-氰基苄基,4-硝基苄基,乙基,氰基甲基,烯丙基,辛基)和六氟磷酸根和六氟对的NMR光谱特征。比较硫酸氢盐。阴离子的变化对电子光谱中的吸收能量几乎没有影响,尽管对于所有配合物,都观察到了消光系数的降低。六氟磷酸盐和硫酸氢盐的发射光谱和寿命显示出相似的趋势。全部都显示出接近720-730 nm的发射(λ_(ex)= 510 nm)。对于给定的配体L,发射寿命从[RuL_2] [PF_6] _4变为[RuL_2] [HSO_4] _4降低。然而,两种盐的趋势是相同的,即观察到N-乙基,N-辛基和N-苄基衍生物的寿命最长的发射体,而寿命最短的是含有氰基或硝基的发射体。显着地,在配合物的吸收光谱中,MLCT带的能量几乎没有变化,这表明参与过渡的配体轨道的特征不包含来自N-取代基的特征。我们通过开展补充性的DFT和TD-DFT研究解决了这一问题。计算的吸收光谱预测从[Ru(pytpy)_2]〜(2+)到[RuL_2]〜(4+)时λ_(max)发生红移,并且在[[ RuL_2]〜(4+)配合物;这些结果与实验观察一致。对参与MLCT过渡的MO成分的分析解释了实验观察结果,表明轨道对N-烷基取代基没有贡献,这与N-取代基的性质对能量的影响很小这一事实是一致的MLCT频段。理论结果还表明,[Ru(1)_2]〜(4+)(1 = 4'-(4-(1-苄基吡啶))-2,2':6',2与晶体学数据之间令人满意的一致性′-叔吡啶)和[Ru(4)_2]〜(4+)。

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