Switchable magnetic, dielectric, conductivity, and phase transition properties of charge-transfer crystals

S. S. Yu, H. Zhao, W. Xu, H. Zhang, H. Duan
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Abstract

The properties can be switched between different states and can be used in sensors, displays, and memory devices. In this study, two multi-functional switchable materials [C5-Pmim][Ni(mnt)2] (1) and [C6-Hmim][Ni(mnt)2] (2) (where mnt2- = maleonitriledithiolate, C5-Pmim = 1-pentyl-3-methylimidazolium, and C6-Hmim = 1-hexyl-3-methylimidazolium) have been designed and synthesized, which has segregated cation and anion stacks in the crystal structure. 1 shows two-step switchable dielectric transition with a thermal hysteresis loop accompanying structure phase transition. Dielectric transition of 1 can be attributed to the reorientation of the polar cations and crystal to mesophase transition. Switchable conductivity properties of 1 and 2 were realized by the crystal to mesophase structure transition. The conductivity of the mesophase for 1 and 2 is higher than the corresponding crystal phase. Furthermore, magnetic phase transition with the non-common hysteresis loop for 2 is observed being triggered by the structure and dielectric transition. To the best of our knowledge, this study might be the rare multi-functional switchable examples with dielectric, conductivity, and magnetic transition.
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电荷转移晶体的可切换磁性、介电性、电导率和相变特性
这些属性可以在不同的状态之间切换,并可用于传感器、显示器和存储设备。本研究设计并合成了两种多功能可切换材料[C5-Pmim][Ni(mnt)2](1)和[C6-Hmim][Ni(mnt)2](2)(其中mtn2 - =马来硝基二硫酸盐,C5-Pmim = 1-戊基-3-甲基咪唑,C6-Hmim = 1-己基-3-甲基咪唑),它们在晶体结构上具有分离的正离子和阴离子堆叠。图1显示了两步可切换的介电转变和伴随结构相变的热滞回线。介电转变为1可归因于极性阳离子的重定向和晶体向中间相转变。通过晶体到中间相结构的转变,实现了1和2的可切换电导率特性。中间相1和中间相2的电导率高于相应的晶相。此外,还观察到由结构和介电跃迁触发的磁相变具有2的非常见磁滞回线。据我们所知,这项研究可能是罕见的具有介电、电导率和磁转变的多功能开关示例。
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