Institute of Molecular Functional Materials (Areas of Excellence Scheme, University Grants Committee (Hong Kong)), and Department of Chemistry, The University of Hong Kong , Pokfulam Road, Hong Kong, P. R. China.
ACS Appl Mater Interfaces. 2017 Oct 18;9(41):36220-36228. doi: 10.1021/acsami.7b11807. Epub 2017 Oct 9.
A series of platinum(II) terpyridine complexes with tetraphenylethylene-modified alkynyl ligands has been designed and synthesized. The introduction of the tetraphenylethylene motif has led to aggregation-induced emission (AIE) properties, which upon self-assembly led to the formation of metal-metal-to-ligand charge transfer (MMLCT) behavior stabilized by Pt···Pt and/or π-π interactions. Tuning the steric bulk or hydrophilicity through molecular engineering of the platinum(II) complexes has been found to alter their spectroscopic properties and result in interesting superstructures (including nanorods, nanospheres, nanowires, and nanoleaves) in the self-assembly process. The eye-catching color and emission changes upon varying the solvent compositions may have potential applications in chemosensing materials for the detection of microenvironment changes. Furthermore, the importance of the directional Pt···Pt and/or π-π interactions on the construction of distinctive superstructures has also been examined by UV-vis absorption and emission spectroscopy and transmission electron microscopy. This work represents the interplay of both inter- and intramolecular interactions as well as the energies of the two different chromophoric/luminophoric systems that may open up a new route for the development of platinum(II)-AIE hybrids as functional materials.
一系列具有四苯乙烯修饰的炔基配体的铂(II) 三联吡啶配合物已被设计和合成。引入四苯乙烯基序导致聚集诱导发光(AIE)性质,通过自组装导致金属-金属到配体电荷转移(MMLCT)行为的形成,该行为由 Pt···Pt 和/或 π-π 相互作用稳定。通过铂(II) 配合物的分子工程来调节空间位阻或亲水性,发现可以改变它们的光谱性质,并在自组装过程中产生有趣的超结构(包括纳米棒、纳米球、纳米线和纳米叶)。在改变溶剂组成时,引人注目的颜色和发射变化可能在用于检测微环境变化的化学传感材料中具有潜在应用。此外,通过紫外-可见吸收和发射光谱以及透射电子显微镜研究了 Pt···Pt 和/或 π-π 相互作用在构建独特超结构中的重要性。这项工作代表了分子内和分子间相互作用以及两个不同发色团/发光团系统能量的相互作用,这可能为开发作为功能材料的铂(II)-AIE 杂化物开辟新途径。