首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A water-soluble cyclometalated iridium(III) complex for pH sensing based on aggregation-induced enhanced phosphorescence
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A water-soluble cyclometalated iridium(III) complex for pH sensing based on aggregation-induced enhanced phosphorescence

机译:基于聚集诱导的增强磷光的pH感测水溶性环素丙啶(III)复合物

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摘要

The novel water-soluble monoanionic Ir(III) complex Na[Ir(ppy)(2)(SB-COO)] (2; Hppy = phenylpyridine; HSB-COOH = 4-carboxylanilinesalicylaldehyde Schiff base), which was obtained by the reaction of the novel Ir(III) complex [Ir(ppy)(2)(SB-COOH)] (1) with NaOEt, in its aqueous solution, showed hydrogen ion (H+)-responsive aggregation-induced enhanced phosphorescence (AIEP). Both these complexes exhibited very weak and relatively strong emissions in solution and solid states, respectively. The pH-responsiveness of 2 was evaluated from its emission spectra in aqueous solution in the pH range of 8.7-1.8. Above pH 6, 2 showed weak emission with a maximum at 508 nm. Upon decreasing the pH to 4.7, AIEP with a bathochromic shift to 618 nm was induced by the aggregation of 1, whereby the intensity at 618 nm was increased approximately by 50-fold compared to that at pH 6.0. This enhancement is due to restrictions of the geometrical changes in the six-membered chelate ring of the ancillary ligand (Ir-N-C-C-C-O-) and of the intramolecular rotations in the excited state. The enhanced luminescence originates from spin-forbidden metal-to-ligand-ligand charge transfer ((MLLCT)-M-3). Below pH 2.8, the emission intensity decreased owing to the decrease in the population of the emissive complex 1 upon dissociation of the ancillary ligand from the Ir(ppy)(2) unit.
机译:新型水溶性单壬二烯(III)复合物Na [IR(PPY)(2)(2)(2)(SB-COO)](2; HPPY =苯基吡啶; HSB-COOH = 4-羧基硼胺丙基丙醛苯甲醛席基甲醛苯甲醛),其通过反应获得在新的IR(III)复合物[IR(PPY)(2)(2)(SB-COOH)](1)中,在其水溶液中,显示氢离子(H +)响应性聚集诱导的增强磷光(AIEP)。这些复合物的两者都分别在溶液和固态中表现出非常弱和相对强的排放。在pH范围为8.7-1.8的水溶液中从其发射光谱评估2的pH-反应性。在pH 6,6上方,2显示出弱发射,最大排放在508nm。在将pH降至4.7时,通过1的聚集诱导具有碱性转移至618nm的AIFEP,从而与pH6.0相比,618nm的强度大约增加50倍。这种增强是由于辅助配体(IR-N-C-C-C-O-)的六元螯合环的几何变化的限制,并且在激发状态下的分子内旋转。增强的发光源自旋转禁止的金属 - 配体 - 配体电荷转移((MLLCT)-M-3)。低于pH 2.8,由于从IR(PPY)(2)单位的辅助配体解离辅助配体1,发光强度减小了发光复合物1的减少。

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