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Selective arc-discharge synthesis of Dy2S-clusterfullerenes and their isomer-dependent single molecule magnetism

机译:Dy2S-簇富勒烯的选择性电弧放电合成及其依赖异构体的单分子磁性

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摘要

A method for the selective synthesis of sulfide clusterfullerenes Dy2S@C2n is developed. Addition of methane to the reactive atmosphere reduces the formation of empty fullerenes in the arc-discharge synthesis, whereas the use of Dy2S3 as a source of metal and sulfur affords sulfide clusterfullerenes as the main fullerene products along with smaller amounts of carbide clusterfullerenes. Two isomers of Dy2S@C82 with Cs(6) and C3v(8) cage symmetry, Dy2S@C72-Cs(10528), and a carbide clusterfullerene Dy2C2@C82-Cs(6) were isolated. The molecular structure of both Dy2S@C82 isomers was elucidated by single-crystal X-ray diffraction. SQUID magnetometry demonstrates that all of these clusterfullerenes exhibit hysteresis of magnetization, with Dy2S@C82-C3v(8) being the strongest single molecule magnet in the series. DC- and AC-susceptibility measurements were used to determine magnetization relaxation times in the temperature range from 1.6 K to 70 K. Unprecedented magnetization relaxation dynamics with three consequent Orbach processes and energy barriers of 10.5, 48, and 1232 K are determined for Dy2S@C82-C3v(8). Dy2S@C82-Cs(6) exhibits faster relaxation of magnetization with two barriers of 15.2 and 523 K. Ab initio calculations were used to interpret experimental data and compare the Dy-sulfide clusterfullerenes to other Dy-clusterfullerenes. The smallest and largest barriers are ascribed to the exchange/dipolar barrier and relaxation via crystal-field states, respectively, whereas an intermediate energy barrier of 48 K in Dy2S@C82-C3v(8) is assigned to the local phonon mode, corresponding to the librational motion of the Dy2S cluster inside the carbon cage.
机译:开发了一种选择性合成硫化物簇富勒烯Dy2S @ C2n的方法。将甲烷添加到反应性气氛中可减少电弧放电合成中空富勒烯的形成,而使用Dy2S3作为金属和硫的来源可提供硫化物簇状富勒烯作为主要的富勒烯产物,以及少量的碳化物簇状富勒烯。 Dy2S @ C82具有Cs(6)和C3v(8)笼形对称性的两个异构体Dy2S @ C72-Cs(10528)和碳化物簇富勒烯Dy2C2 @ C82-Cs(6)被分离。通过单晶X射线衍射阐明了Dy2S @ C 82 异构体的分子结构。 SQUID磁力分析表明,所有这些簇富勒烯都表现出磁化滞后作用,其中Dy 2 S @ C 82 -C 3v (8)最强系列中的单分子磁体。使用DC和AC磁化率测量来确定在1.6 K至70 K的温度范围内的磁化弛豫时间。对于Dy <,确定了空前的磁弛豫动力学和三个随后的Orbach过程以及10.5、48和1232 K的能垒。 sub> 2 S @ C 82 -C 3v (8)。 Dy 2 S @ C 82 -C s (6)表现出更快的磁化弛豫,有两个15.2和523 K势垒。从头算用来解释实验数据,并将Dy硫化物簇富勒烯与其他Dy簇富勒烯进行比较。最小和最大的势垒分别归因于交换/偶极势垒和通过晶体场态的弛豫,而在Dy 2 S @ C 82 中的中间能垒为48K。将sub> -C 3v (8)分配给局部声子模式,对应于碳笼内部Dy 2 S团簇的自由运动。

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