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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Water-Soluble and Highly Luminescent Europium(III) Complexes with Favorable Photostability and Sensitive pH Response Behavior
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Water-Soluble and Highly Luminescent Europium(III) Complexes with Favorable Photostability and Sensitive pH Response Behavior

机译:具有良好的光稳定性和敏感的pH响应行为的水溶性和高发光Euro(III)配合物

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摘要

Two highly luminescent and water-soluble Eu(III) complexes, Eu1 and Eu2, based on novel carboxyl-functionalized 1,5-naphthyridine derivatives 8-hydroxy-1,5-naphthyridine-2-carboxylic acid (H(2)L1) and 7-cyano-8-liydroxy-1,5-naphthyridine-2-carboxylic acid (H(2)L2), respectively, are designed and synthesized. The crystal structure of Eu2 indicates that the central Eu(III) ion is nine-coordinated by three tridentate ligands (O<^>N<^>O). Both Eu1 and Eu2 show strong luminescence in aqueous solution with quantum yields (lifetimes) of 28% (1.1 ms) and 14% (0.76 ms), respectively. The chelates display unique UV-light stability in solution and remain highly emissive after 100 min of strong UV irradiation (similar to 300 W.m(-2) at 345 nm). Moreover, they exhibit reversible luminescence intensity changes with varied pH values, and the response mechanism is investigated. "Turn-on" of the Eu(III) emission upon increasing pH is realized by ligand structure change from keto to enol anion form, resulting in red-shifted absorption band and suppressed quenching from solvents and N-H vibration upon deprotonating. The results show that these novel Eu(III) complexes are quite intriguing for potential application as bioimaging agents and pH probes.
机译:基于新型羧基官能化的1,5-萘啶衍生物8-羟基-1,5-萘啶-2-羧酸(H(2)L1)的两个高发光和水溶性Eu(III)配合物Eu1和Eu2分别设计和合成了7-氰基-8-羟基1,5-萘啶-2-羧酸(H(2)L2)。 Eu 2的晶体结构表明中心Eu(III)离子被三个三齿配体(O 3 N 2 O)九配位。 Eu1和Eu2在水溶液中均显示强发光,量子产率(寿命)分别为28%(1.1毫秒)和14%(0.76毫秒)。螯合物在溶液中显示出独特的紫外线稳定性,并在强紫外线照射100分钟(在345 nm处类似于300 W.m(-2))后仍保持高发射率。此外,随着pH值的变化,它们显示出可逆的发光强度变化,并研究了其响应机理。通过将配体结构从酮基转变为烯醇阴离子,实现了pH值升高时Eu(III)发射的“开启”,从而导致吸收带红移并抑制了溶剂的猝灭和去质子化时的N-H振动。结果表明,这些新颖的Eu(III)配合物作为生物成像剂和pH探针具有潜在的应用前景。

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