Post-complexation Functionalization of Cyclometalated Iridium(III) Complexes and Applications to Biomedical and Material Sciences

IF 7.1 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Shin Aoki, Kenta Yokoi, Yosuke Hisamatsu, Chandrasekar Balachandran, Yuichi Tamura, Tomohiro Tanaka
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引用次数: 5

Abstract

Cyclometalated iridium(III) (Ir(III)) complexes exhibit excellent photophysical properties that include large Stokes shift, high emission quantum yields, and microsecond-order emission lifetimes, due to low-lying metal-to-ligand charge transfer (spin-forbidden singlet–triplet (3MLCT) transition). As a result, analogs have been applied for research not only in the material sciences, such as the development of organic light-emitting diodes (OLEDs), but also for photocatalysts, bioimaging probes, and anticancer reagents. Although a variety of methods for the synthesis and the applications of functionalized cyclometalated iridium complexes have been reported, functional groups are generally introduced to the ligands prior to the complexation with Ir salts. Therefore, it is difficult to introduce thermally unstable functional groups such as peptides and sugars due to the harsh reaction conditions such as the high temperatures used in the complexation with Ir salts. In this review, the functionalization of Ir complexes after the formation of cyclometalated Ir complexes and their biological and material applications are described. These methods are referred to as “post-complexation functionalization (PCF).” In this review, applications of PCF to the design and synthesis of Ir(III) complexes that exhibit blue –red and white color emissions, luminescence pH probes, luminescent probes of cancer cells, compounds that induce cell death in cancer cells, and luminescent complexes that have long emission lifetimes are summarized.

Abstract Image

环金属化铱配合物的络合后功能化及其在生物医学和材料科学中的应用
环金属化铱(III) (Ir(III))配合物表现出优异的光物理性质,包括大的斯托克斯位移,高发射量子产率和微秒级发射寿命,这是由于金属到配体的低空电荷转移(禁止自旋的单重态-三重态(3MLCT)转变)。因此,类似物不仅应用于材料科学的研究,如有机发光二极管(oled)的开发,还应用于光催化剂、生物成像探针和抗癌试剂。虽然已经报道了多种合成和应用功能化环金属化铱配合物的方法,但在与Ir盐络合之前,通常会在配体上引入官能团。因此,由于与Ir盐络合时使用的高温等苛刻的反应条件,很难引入热不稳定的官能团,如肽和糖。本文综述了环金属化Ir配合物形成后Ir配合物的功能化及其在生物和材料方面的应用。这些方法被称为“后络合功能化(PCF)”。本文综述了PCF在设计和合成具有蓝红色和白色发光的Ir(III)配合物、发光pH探针、癌细胞发光探针、诱导癌细胞死亡的化合物以及具有长发光寿命的发光配合物等方面的应用。
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来源期刊
Topics in Current Chemistry
Topics in Current Chemistry Chemistry-General Chemistry
CiteScore
13.70
自引率
1.20%
发文量
48
期刊介绍: Topics in Current Chemistry is a journal that presents critical reviews of present and future trends in modern chemical research. It covers all areas of chemical science, including interactions with related disciplines like biology, medicine, physics, and materials science. The articles in this journal are organized into thematic collections, offering a comprehensive perspective on emerging research to non-specialist readers in academia or industry. Each review article focuses on one aspect of the topic and provides a critical survey, placing it in the context of the collection. Selected examples highlight significant developments from the past 5 to 10 years. Instead of providing an exhaustive summary or extensive data, the articles concentrate on methodological thinking. This approach allows non-specialist readers to understand the information fully and presents the potential prospects for future developments.
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