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理解配位聚合物中的结构-性质关系:铜(II)和锌(II)配位机制的比较研究

Understanding structure-property relationships in coordination polymers: a comparative study of the copper(II) and zinc(II) coordination mechanism.

作者信息

Benekou Vasiliki, Zhang Zhe, Sporrer Lukas, Candini Andrea, Monti Filippo, Kovtun Alessandro, Liscio Fabiola, Mannsfeld Stefan C B, Feng Xinliang, Dong Renhao, Palermo Vincenzo

机构信息

Institute for Organic Synthesis and Photoreactivity, National Research Council of Italy, Via Gobetti 101, Bologna, Italy.

Chair of Molecular Functional Materials, Faculty of Chemistry and Food Chemistry Technische Universität Dresden, Mommsenstrasse 4, Dresden 01062, Germany.

出版信息

Nanoscale. 2025 Jun 19;17(24):14816-14826. doi: 10.1039/d5nr01087j.

Abstract

Coordination polymers (CPs) are an interesting class of materials due to their tunable structures and electrical properties where, however, the correlation between the former and latter is still not fully understood. Here we compare the structures and properties of CPs derived from copper(II) and zinc(II) ions coordinating a triphenylene derivative (OHPTP). To focus on the effect of the coordinating ion used and avoid possible differences due to the processing method, we synthesized different CPs using a novel two-step technique, potentially scalable for applications in transistors, sensors, and photovoltaics: first, the organic ligand is deposited using a shear-coating technique which ensures uniform deposition on the macroscopic scale. Then, in the second step, the sample is exposed to solutions of the metal ions, which can penetrate in the organic layer to coordinate with the ligand. Density functional theory (DFT) calculations show that Cu ions have a higher affinity for the ligand and form square-planar CP structures due to their d electronic configuration. Conversely, Zn ions can coordinate with the chelating ligands using only their empty 4s and 4p orbitals to achieve sp hybridisation, thus preferring to adopt a tetrahedral geometry and leading to less ordered structures with significantly hampered conductivity. FT-IR and UV-vis spectra, XPS and conductive atomic force microscopy confirm the distinct coordination behaviour of Cu and Zn ions. Thermal stability analysis further shows that Zn-based CPs retain their structural integrity at temperatures up to 300 °C, whereas Cu-based CPs degrade earlier. These results show how metal-ligand interactions impact the properties of CPs, enhancing the understanding of structure-property relationships, and provide practical insights for designing CPs with desired electronic and thermal properties by varying the coordinating metal ions.

摘要

配位聚合物(CPs)是一类有趣的材料,因其结构和电学性质可调,然而,前者与后者之间的相关性仍未完全理解。在此,我们比较了由铜(II)和锌(II)离子与三亚苯基衍生物(OHPTP)配位形成的CPs的结构和性质。为了聚焦于所用配位离子的影响并避免因加工方法可能产生的差异,我们使用了一种新颖的两步技术合成了不同的CPs,该技术具有潜在的可扩展性,可应用于晶体管、传感器和光伏领域:首先,使用剪切涂层技术沉积有机配体,这确保了在宏观尺度上的均匀沉积。然后,在第二步中,将样品暴露于金属离子溶液中,金属离子可渗透到有机层中与配体配位。密度泛函理论(DFT)计算表明,Cu离子对配体具有更高的亲和力,由于其d电子构型形成平面正方形CP结构。相反,Zn离子仅使用其空的4s和4p轨道与螯合配体配位以实现sp杂化,因此更倾向于采用四面体几何结构,导致结构无序且导电性显著受阻。傅里叶变换红外光谱(FT-IR)和紫外可见光谱、X射线光电子能谱(XPS)以及导电原子力显微镜证实了Cu和Zn离子独特的配位行为。热稳定性分析进一步表明,锌基CPs在高达300°C的温度下仍保持其结构完整性,而铜基CPs则降解得更早。这些结果展示了金属-配体相互作用如何影响CPs的性质,增强了对结构-性质关系的理解,并为通过改变配位金属离子设计具有所需电子和热性质的CPs提供了实际见解。

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