A Route toward the On-Surface Synthesis of Organic Ferromagnetic Quantum Spin Chains.

IF 15.6 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Journal of the American Chemical Society Pub Date : 2025-03-05 Epub Date: 2025-02-18 DOI:10.1021/jacs.4c18123
Fabian Paschke, Ricardo Ortiz, Shantanu Mishra, Manuel Vilas-Varela, Florian Albrecht, Diego Peña, Manuel Melle-Franco, Leo Gross
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Abstract

Engineering sublattice imbalance is an intuitive way to induce high-spin ground states in bipartite polycyclic conjugated hydrocarbons (PCHs). Such molecules can be employed as building blocks of quantum spin chains, which are outstanding platforms to study fundamental models in quantum magnetism. This is exemplified by recent reports on the bottom-up synthesis of antiferromagnetic spin chains that provided insights into paradigmatic quantum phenomena such as fractionalization. In contrast to antiferromagnetism, demonstration of ferromagnetic coupling between PCHs has been scarce. Previous attempts in this direction were limited by the formation of nonbenzenoid rings leading to spin quenching or the use of spacer motifs that weaken the magnitude of ferromagnetic exchange. Here, we demonstrate the on-surface synthesis of short ferromagnetic spin chains based on dibenzotriangulene, a triplet PCH. Our synthetic strategy centers on the concept of achieving a direct (without spacer motifs) majority-minority sublattice coupling between adjacent molecules. This leads to a global sublattice imbalance in spin chains scaling with the chain length and therefore a ferromagnetic ground state with a strong intermolecular ferromagnetic exchange. Through scanning probe measurements and quantum chemical calculations, we analyze the electronic and magnetic properties of ferromagnetic dimers and trimers of dibenzotriangulene and confirm their quintet and septet ground states, respectively, with an intermolecular ferromagnetic exchange of 7 meV. Furthermore, we elucidate the role of sublattice coupling on magnetism through complementary experiments on antiferromagnetic dibenzotriangulene dimers with majority-majority and minority-minority sublattice couplings. We expect our study to provide impetus for the design of organic ferromagnetic materials.

Abstract Image

有机铁磁量子自旋链的表面合成途径。
工程亚晶格不平衡是诱导双环多环共轭烃(PCHs)高自旋基态的一种直观方法。这些分子可以作为量子自旋链的基石,是研究量子磁学基本模型的优秀平台。最近关于反铁磁自旋链自下而上合成的报告就证明了这一点,该报告提供了对诸如分数化等范例量子现象的见解。与反铁磁性相反,PCHs之间铁磁性耦合的证明很少。以前在这个方向上的尝试受到非苯甲酸环的形成导致自旋淬火或使用间隔基元削弱铁磁交换幅度的限制。在这里,我们展示了基于二苯并三角烯(一个三重态PCH)的短铁磁自旋链的表面合成。我们的合成策略集中在实现相邻分子之间直接(没有间隔基序)多数-少数亚晶格耦合的概念上。这导致自旋链随链长缩放的整体亚晶格不平衡,从而导致具有强分子间铁磁交换的铁磁基态。通过扫描探针测量和量子化学计算,我们分析了二苯并三角烯铁磁二聚体和三聚体的电子和磁性,并分别确定了它们在分子间铁磁交换为7 meV时的五基态和七基态。此外,我们通过对具有多数-多数和少数-少数亚晶格耦合的反铁磁二苯并三角烯二聚体的互补实验,阐明了亚晶格耦合对磁性的作用。我们期望我们的研究能为有机铁磁材料的设计提供动力。
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来源期刊
CiteScore
24.40
自引率
6.00%
发文量
2398
审稿时长
1.6 months
期刊介绍: The flagship journal of the American Chemical Society, known as the Journal of the American Chemical Society (JACS), has been a prestigious publication since its establishment in 1879. It holds a preeminent position in the field of chemistry and related interdisciplinary sciences. JACS is committed to disseminating cutting-edge research papers, covering a wide range of topics, and encompasses approximately 19,000 pages of Articles, Communications, and Perspectives annually. With a weekly publication frequency, JACS plays a vital role in advancing the field of chemistry by providing essential research.
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