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控制炔基铂(II)三联吡啶配合物的超分子共聚合:从等键反应到协同机制。

Controlling supramolecular copolymerization of alkynylplatinum(ii) terpyridine complexes: from isodesmic to cooperative mechanisms.

作者信息

Kim Sehee, Kim Minhye, Woo Seojeong, Kim Juyeong, Jung Sung Ho, Jung Jong Hwa

机构信息

Department of Chemistry, Research Institute of Natural Sciences, Gyeongsang National University Jinju 52828 Korea

出版信息

Nanoscale Adv. 2024 Feb 29;6(7):1917-1925. doi: 10.1039/d3na01140b. eCollection 2024 Mar 26.

Abstract

Recently, cooperative supramolecular polymerization has garnered considerable attention due to its significant potential for enabling controlled chain-growth polymerization, which offers a route to achieving a well-defined degree of polymerization and low polydispersity. In this study, we synthesized two distinct alkynylplatinum(ii) complexes, one bearing a saturated long alkyl chain (Pt-Sat-C18) and another containing a diacetylene moiety within a long alkyl chain (Pt-DA-C25). Spectroscopic analyses revealed that Pt-Sat-C18 undergoes supramolecular polymerization an isodesmic pathway, while Pt-DA-C25 assembles cooperatively. Intriguingly, the mechanism of supramolecular copolymerization could be tuned by varying the composition ratios: transitioning from an isodesmic to a cooperative pathway was achieved by increasing the proportion of Pt-DA-C25. Moreover, UV irradiation prompted a shift from an isodesmic to a cooperative assembly mechanism. Morphologically, self-assembled Pt-Sat-C18 resulted in left-handed fibrillar structures, whereas Pt-DA-C25 led to left-handed tubular assemblies. Supramolecular co-assembly further revealed helical ribbon or tubular structures. Photoluminescent properties were also observed, with emission spectra centered at approximately 650 nm, attributed to the formation of excimer species facilitated by strong Pt⋯Pt interactions. To elucidate the mechanisms underlying these supramolecular polymerizations, temperature-dependent UV-visible spectroscopy was conducted during the cooling/heating processes, and thermodynamic parameters for both isodesmic and cooperative pathways were quantitatively assessed through curve fitting.

摘要

最近,由于协同超分子聚合在实现可控链增长聚合方面具有巨大潜力,因而备受关注,可控链增长聚合为实现明确的聚合度和低多分散性提供了一条途径。在本研究中,我们合成了两种不同的炔基铂(II)配合物,一种带有饱和长烷基链(Pt-Sat-C18),另一种在长烷基链中含有二乙炔部分(Pt-DA-C25)。光谱分析表明,Pt-Sat-C18通过等键途径进行超分子聚合,而Pt-DA-C25则协同组装。有趣的是,超分子共聚的机制可以通过改变组成比例来调节:通过增加Pt-DA-C25的比例实现了从等键途径到协同途径的转变。此外,紫外线照射促使组装机制从等键转变为协同。在形态上,自组装的Pt-Sat-C18形成左手纤维状结构,而Pt-DA-C25则导致左手管状组装。超分子共组装进一步揭示了螺旋带或管状结构。还观察到光致发光特性,发射光谱中心位于约650nm处,这归因于由强Pt⋯Pt相互作用促进的准分子物种的形成。为了阐明这些超分子聚合的潜在机制,在冷却/加热过程中进行了温度依赖性紫外可见光谱分析,并通过曲线拟合定量评估了等键和协同途径的热力学参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e87/10964763/9e0a188cf2c7/d3na01140b-f1.jpg

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