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钯酞菁的热激活表面自金属化

Thermally Activated on-Surface Self-Metalation of Pd-Phthalocyanines.

作者信息

Bassotti Mattia, Baronio Stefania, Floreano Luca, Schio Luca, Vesselli Erik, Verdini Alberto

机构信息

Department of Physics and Geology, University of Perugia, Via A. Pascoli, Perugia, 06123, Italy.

Department of Physics, University of Trieste, Via Valerio 2, Trieste, 34127, Italy.

出版信息

Chemistry. 2025 May 19;31(28):e202500944. doi: 10.1002/chem.202500944. Epub 2025 Apr 18.

Abstract

Phthalocyanines (Pcs) are essential organic molecules with wide-ranging applications in fields such as catalysis and optoelectronics, owing to their stable aromatic structure and exceptional thermal stability. Equally important is their versatility, which can be achieved by modifying the central metal atom. In this context, metalation-the process by which a central metal atom is incorporated into the macrocycle-plays a critical role in tailoring both the electronic and structural properties of Pcs. In this work, we investigate the thermally activated on-surface synthesis of palladium phthalocyanine (PdPc) by depositing metal-free phthalocyanine ( ) onto a Pd(001) surface in ultra-high vacuum (UHV) conditions. Using temperature-dependent X-ray photoemission spectroscopy (XPS), we analyze the evolution of the N core level signal, confirming the successful formation of PdPc. The appearance of a secondary peak in the Pd core level, attributed to Pd atoms coordinated within the phthalocyanine molecule after metalation, provides further evidence for the PdPc synthesis. Additionally, near-edge X-ray absorption fine structure (NEXAFS) reveals that no desorption or chemical degradation occurs during the process. We believe this study represents a significant step forward in the scalable synthesis of PdPc, which, like other Pd-containing organic molecules, holds great potential for applications in catalysis and cancer therapy.

摘要

酞菁(Pcs)是重要的有机分子,由于其稳定的芳香结构和出色的热稳定性,在催化和光电子学等领域有着广泛的应用。同样重要的是它们的多功能性,这可以通过修饰中心金属原子来实现。在这种情况下,金属化——将中心金属原子引入大环的过程——在调整酞菁的电子和结构性质方面起着关键作用。在这项工作中,我们研究了在超高真空(UHV)条件下,通过将无金属酞菁沉积到Pd(001)表面上,热活化表面合成钯酞菁(PdPc)的过程。利用温度依赖的X射线光电子能谱(XPS),我们分析了N核能级信号的演变,证实了PdPc的成功形成。Pd核能级中出现的一个次级峰,归因于金属化后酞菁分子内配位的Pd原子,为PdPc的合成提供了进一步的证据。此外,近边X射线吸收精细结构(NEXAFS)表明,在此过程中没有发生脱附或化学降解。我们相信这项研究代表了PdPc可扩展合成的一个重要进展,与其他含钯有机分子一样,PdPc在催化和癌症治疗应用中具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7df7/12089924/525d29d58f0f/CHEM-31-e202500944-g006.jpg

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