Chan Alan Kwun-Wa, Yam Vivian Wing-Wah
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.
Acc Chem Res. 2018 Dec 18;51(12):3041-3051. doi: 10.1021/acs.accounts.8b00339. Epub 2018 Nov 14.
Alkynylplatinum(II) terpyridine complexes have been increasingly explored since the previous decades, mainly arising from their intriguing photophysical properties and aggregation affinities associated with their extensive Pt(II)···Pt(II) and π-π stacking interactions. Through molecular engineering, one can modulate their fundamental properties and assembly behavior by introduction of various functional groups and structural features. They can therefore serve as ideal candidates to construct metal complex-based molecular architectures to provide an alternative to organic compounds. The metal-based framework can be simultaneously built from predetermined building blocks, giving rise to their well-defined, unique, and discrete natures for molecular recognition. The individual constituents can contribute to molecular architectures with their integrated properties, allowing the manipulation of the various noncovalent intermolecular forces and interactions for selective guest capture. In this Account, our recent progress in the development of these metallomolecular frameworks based on the alkynylplatinum(II) terpyridine system and their recognition properties toward different guest molecules will be presented. Phosphorescent molecular tweezers have been constructed from the alkynylplatinum(II) terpyridine moiety to demonstrate host-guest interactions with cationic, charge-neutral and anionic platinum(II), palladium(II), gold(I), and gold(III) complexes and their binding affinities were found to be perturbed by different metal···metal, π-π and electrostatic interactions. The host-guest assembly process has also resulted in dramatic color changes, together with the turning on of near-IR (NIR) emissions as a result of extensive Pt(II)···Pt(II) interactions. Further work has also been performed to demonstrate that the tweezers can selectively recognize π-surfaces of different planar π-conjugated organic guests. The framework of molecular tweezers has been extended to a double-decker tweezers structure, or a triple-decker structure, which can bind two equivalents of square-planar platinum(II) guests cooperatively to induce a significant color change in solution, representing rare examples of discrete Magnus' green-like salts. By the approaches of structural modifications, we have further modulated the host architecture from molecular tweezers to molecular rectangles. The rectangles have been found to show selective encapsulation of different transition metal complex guests based on the size and steric environment of the host cavity. The molecular rectangles also exhibit reversible host-guest association, in which guest capture and ejection processes can be manipulated by the pH environment, illustrating a potential approach for precise and smart delivery of therapeutic reagents to the slightly more acidic cancer cells.
自前几十年以来,炔基铂(II)三联吡啶配合物受到了越来越多的研究,这主要源于其有趣的光物理性质以及与广泛的Pt(II)···Pt(II)和π-π堆积相互作用相关的聚集亲和力。通过分子工程,可以通过引入各种官能团和结构特征来调节其基本性质和组装行为。因此,它们可以作为构建基于金属配合物的分子结构的理想候选物,为有机化合物提供替代方案。基于金属的框架可以同时由预先确定的构建块构建而成,从而产生其明确、独特和离散的分子识别性质。各个组成部分可以通过其综合性质对分子结构做出贡献,从而可以操纵各种非共价分子间力和相互作用以实现选择性客体捕获。在本综述中,将介绍我们在基于炔基铂(II)三联吡啶体系的这些金属分子框架的开发及其对不同客体分子的识别性质方面的最新进展。已从炔基铂(II)三联吡啶部分构建了磷光分子镊子,以证明与阳离子、电荷中性和阴离子铂(II)、钯(II)、金(I)和金(III)配合物的主客体相互作用,并且发现它们的结合亲和力会受到不同的金属···金属、π-π和静电相互作用的干扰。主客体组装过程还导致了显著的颜色变化,以及由于广泛的Pt(II)···Pt(II)相互作用而开启的近红外(NIR)发射。还进行了进一步的工作以证明镊子可以选择性地识别不同平面π共轭有机客体的π表面。分子镊子的框架已扩展到双层镊子结构或三层结构,它们可以协同结合两当量的平面正方形铂(II)客体,从而在溶液中引起显著的颜色变化,这是离散的类马格努斯绿盐的罕见例子。通过结构修饰的方法,我们进一步将主体结构从分子镊子调节为分子矩形。已发现这些矩形基于主体腔的大小和空间环境对不同的过渡金属配合物客体表现出选择性包封。分子矩形还表现出可逆的主客体缔合,其中客体捕获和排出过程可以通过pH环境进行操纵,这说明了一种将治疗试剂精确且智能地递送至酸性稍强的癌细胞的潜在方法。