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吸附在单层CrI上的酞菁:调控其磁性能

Phthalocyanine Adsorbed on Monolayer CrI: Tailoring Their Magnetic Properties.

作者信息

Bacaksiz Cihan, Fyta Maria

机构信息

Department of Physics & NANOlab Center of Excellence, University of Antwerp, Groenenborgerlaan 171, B-2020 Antwerp, Belgium.

Computational Biotechnology, RWTH Aachen University, Worringerweg 3, 70574 Aachen, Germany.

出版信息

ACS Omega. 2024 Jul 29;9(32):34589-34596. doi: 10.1021/acsomega.4c02708. eCollection 2024 Aug 13.

Abstract

Metallo-phthalocyanines molecules, especially ironphthalocyanines (Fe-Pc), are often examined due to their rich chemical, magnetic, and optoelectronic features. Due to these, Fe-Pc molecules are promising for applications in gas sensors, field-effect transistors, organic LEDs, and data storage. Motivated by this potential, this study investigates Fe-Pc molecules adsorbed on a magnetic monolayer, CrI. Using quantum-mechanical simulations, the aim of this work was to find pathways to selectively tune and engineer the magnetic and electronic properties of the molecules when they form hybrid complexes. The results quantitatively underline how adsorption alters the magnetic properties of the Fe-Pc molecules. Interestingly, the analysis points to changes in the molecular magnetic anisotropy when comparing the magnetic moment of the isolated molecule to that of the molecule/monolayer complex formed after adsorption. The presence of iodine vacancies was shown to enhance the magnetic interactions between the iron of the Fe-Pc molecule and the chromium of the monolayer. Our findings suggest ways to control oxygen capture-release properties through material choice and defect creation. Insights into the stability and charge density depletion on the molecule provide critical information for selective tuning of the magnetic properties and engineering of the functionalities of these molecule/material complexes.

摘要

金属酞菁分子,特别是铁酞菁(Fe-Pc),因其丰富的化学、磁性和光电特性而经常被研究。基于这些特性,Fe-Pc分子在气体传感器、场效应晶体管、有机发光二极管和数据存储等应用中具有广阔前景。受此潜力的驱动,本研究调查了吸附在磁性单层CrI上的Fe-Pc分子。通过量子力学模拟,这项工作的目的是找到在分子形成混合复合物时选择性调节和设计其磁性和电子特性的途径。结果定量地强调了吸附如何改变Fe-Pc分子的磁性。有趣的是,分析表明,将孤立分子的磁矩与吸附后形成的分子/单层复合物的磁矩进行比较时,分子磁各向异性会发生变化。研究表明碘空位的存在增强了Fe-Pc分子的铁与单层的铬之间的磁相互作用。我们的研究结果提出了通过材料选择和缺陷产生来控制氧捕获-释放特性的方法。对分子上稳定性和电荷密度耗尽的深入了解为选择性调节磁性特性和设计这些分子/材料复合物的功能提供了关键信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adbc/11325395/473eb0b111d2/ao4c02708_0001.jpg

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