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在TiO单分子层上组装铁单分子磁体。

Assembling Fe single-molecule magnets on a TiO monolayer.

作者信息

Sorrentino Andrea Luigi, Poggini Lorenzo, Serrano Giulia, Cucinotta Giuseppe, Cortigiani Brunetto, Malavolti Luigi, Parenti Francesca, Otero Edwige, Arrio Marie-Anne, Sainctavit Philippe, Caneschi Andrea, Cornia Andrea, Sessoli Roberta, Mannini Matteo

机构信息

Department of Industrial Engineering - DIEF - and INSTM Research Unit, University of Florence, Via Santa Marta 3, 50139 Florence, Italy.

Department of Chemistry "U. Schiff" - DICUS - and INSTM Research Unit, University of Florence, Via della Lastruccia 3-13, 50019 Sesto Fiorentino, FI, Italy.

出版信息

Nanoscale. 2024 Aug 7;16(30):14378-14386. doi: 10.1039/d4nr02234c.

Abstract

The decoration of technologically relevant surfaces, such as metal oxides, with Single-Molecule Magnets (SMMs) constitutes a persistent challenge for the integration of these molecular systems into novel technologies and, in particular, for the development of spintronic and quantum devices. We used UHV thermal sublimation to deposit tetrairon(III) propeller-shaped SMMs (Fe) as a single layer on a TiO ultrathin film grown on Cu(001). The properties of the molecular deposit were studied using a multi-technique approach based on standard topographic and spectroscopic measurements, which demonstrated that molecules remain largely intact upon deposition. Ultralow temperature X-ray Absorption Spectroscopy (XAS) with linearly and circularly polarized light was further employed to evaluate both the molecular organization and the magnetic properties of the Fe monolayer. X-ray Natural Linear Dichroism (XNLD) and X-ray Magnetic Circular Dichroism (XMCD) showed that molecules in a monolayer display a preferential orientation and an open magnetic hysteresis with pronounced quantum tunnelling steps up to 900 mK. However, unexpected extra features in the XAS and XMCD spectra disclosed a minority fraction of altered molecules, suggesting that the TiO film may be chemically non-innocent. The observed persistence of SMM behaviour on a metal oxide thin film opens new possibilities for the development of SMM-based hybrid systems.

摘要

用单分子磁体(SMM)修饰技术相关表面,如金属氧化物,对于将这些分子系统集成到新技术中,特别是对于自旋电子学和量子器件的开发而言,仍然是一项持久的挑战。我们使用超高真空热升华法,将四铁(III)螺旋桨状SMM(Fe)单层沉积在生长于Cu(001)上的TiO超薄膜上。基于标准形貌和光谱测量,采用多技术方法研究了分子沉积物的性质,结果表明分子在沉积后基本保持完整。进一步利用具有线偏振和圆偏振光的超低温度X射线吸收光谱(XAS)来评估Fe单层的分子排列和磁性。X射线自然线性二色性(XNLD)和X射线磁圆二色性(XMCD)表明,单层中的分子呈现出优先取向,并且在高达900 mK时具有明显量子隧穿台阶的开放磁滞回线。然而,XAS和XMCD光谱中意外出现的额外特征揭示了一小部分分子发生了变化,这表明TiO薄膜在化学性质上可能并非无害。在金属氧化物薄膜上观察到的SMM行为的持续性为基于SMM的混合系统的开发开辟了新的可能性。

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