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“复杂体系中的化学”:多功能钌多吡啶型敏化剂作为多样化的构建基块。

"Chemistry-on-the-complex": functional Ru polypyridyl-type sensitizers as divergent building blocks.

机构信息

Laboratory of Organic and Macromolecular Chemistry (IOMC), Friedrich Schiller University Jena, Humboldtstraße 10, 07743 Jena, Germany.

出版信息

Chem Soc Rev. 2018 Oct 15;47(20):7577-7627. doi: 10.1039/c8cs00096d.

Abstract

Ruthenium polypyridyl type complexes are potent photoactive compounds, and have found - among others - a broad range of important applications in the fields of biomedical diagnosis and phototherapy, energy conversion schemes such as dye-sensitized solar cells (DSSCs) and molecular assemblies for tailored photo-initiated processes. In this regard, the linkage of RuII polypyridyl-type complexes with specific functional moieties is highly desirable to enhance their inherent photophysical properties, e.g., with a targeting function to achieve cell selectivity, or with a dye or redox-active subunits for energy- and electron-transfer. However, the classical approach of performing ligand syntheses first and the formation of Ru complexes in the last steps imposes synthetic limitations with regard to tolerating functional groups or moieties as well as requiring lengthy convergent routes. Alternatively, the diversification of Ru complexes after coordination (termed "chemistry-on-the-complex") provides an elegant complementary approach. In addition to the Click chemistry concept, the rapidly developing synthesis and purification methodologies permit the preparation of Ru conjugates via amidation, alkylation and cross-coupling reactions. In this regard, recent developments in chromatography shifted the limits of purification, e.g., by using new commercialized surface-modified silica gels and automated instrumentation. This review provides detailed insights into applying the "chemistry-on-the-complex" concept, which is believed to stimulate the modular preparation of unpreceded molecular assemblies as well as functional materials based on Ru-based building blocks, including combinatorial approaches.

摘要

钌多吡啶型配合物是一种有效的光活性化合物,除其他外,在生物医学诊断和光疗、能量转换方案(如染料敏化太阳能电池 (DSSC))和用于定制光引发过程的分子组装等领域得到了广泛的应用。在这方面,将 RuII 多吡啶型配合物与特定功能部分连接起来以增强其固有光物理性质是非常理想的,例如,通过靶向功能实现细胞选择性,或者通过染料或氧化还原活性亚基进行能量和电子转移。然而,首先进行配体合成然后在最后步骤形成 Ru 配合物的经典方法在容忍官能团或部分以及需要长的收敛路线方面存在合成限制。或者,配位后 Ru 配合物的多样化(称为“配合物上的化学”)提供了一种优雅的互补方法。除了点击化学概念外,快速发展的合成和纯化方法允许通过酰胺化、烷基化和交叉偶联反应制备 Ru 缀合物。在这方面,色谱法的最新发展改变了纯化的限制,例如,通过使用新型商业化的表面改性硅胶和自动化仪器。本综述详细介绍了应用“配合物上的化学”概念的情况,该概念有望刺激基于 Ru 基构建块的空前分子组装和功能材料的模块化制备,包括组合方法。

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