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通过原位电化学控制包含TTF-TCNQ盐的三维自旋晶格中的准自旋-派尔斯单重态实现磁开关

Magnetic Switching by the In Situ Electrochemical Control of Quasi-Spin-Peierls Singlet States in a Three-Dimensional Spin Lattice Incorporating TTF-TCNQ Salts.

作者信息

Fukunaga Hiroki, Tonouchi Masanori, Taniguchi Kouji, Kosaka Wataru, Kimura Shojiro, Miyasaka Hitoshi

机构信息

Department of Chemistry, Graduate School of Science, Tohoku University, 6-3 Aramaki-Aza-Aoba, Aoba-ku, Sendai, 980-8578, Japan.

Department of Chemistry, Division of Material Sciences, Graduate School of Natural Science and Technology, Kanazawa University, Kakuma-machi, Kanazawa, 920-1192, Japan.

出版信息

Chemistry. 2018 Mar 20;24(17):4294-4303. doi: 10.1002/chem.201704815. Epub 2018 Feb 15.

DOI:10.1002/chem.201704815
PMID:29446499
Abstract

Magnetic phase switching in a coordination polymer is reported, which is demonstrated by combining two processes: (A) the pre-organization of magnetic/redox-active molecules into a framework, and (B) a post-treatment through electrochemical tuning of the pre-organized molecules. A TTF -TCNQ salt (TTF=tetrathiafulvalene; TCNQ=7,7,8,8-tetracyano-p-quinodimethane) was incorporated into a three-dimensional framework with paddlewheel-type dimetal(II, II) units ([M ]; M=Ru with S=1, 1; and Rh with S=0, 2), where the [M ] and TCNQ units form the coordinating framework, and TTF is located in the pores of framework, forming an irregular π-stacking alternating column with the TCNQ in the framework. In 1, the spins of [Ru ] and TCNQ units make a magnetic correlation through the framework upon decreasing the temperature from 300 K, which is, however, suddenly suppressed below 137 K (=T (1)) by the formation of a spin singlet in the TTF -TCNQ columns, as seen in the spin-Peierls transition (T (2)=200 K). This material was incorporated as a cathode in a Li-ion battery (LIB); a long-range ferrimagnetic correlation was formed through the three-dimensional [{Ru } TCNQ] framework at T =78 K in the discharge process. The reversible magnetic phase switching between the non-volatile ferrimagnetic and paramagnetic states, resulting from the local spin tuning of quasi-spin-Peierls singlet, is demonstrated through the discharge/charge cycling of the LIB.

摘要

报道了一种配位聚合物中的磁相切换,这是通过结合两个过程来证明的:(A)将磁性/氧化还原活性分子预组织成一个框架,以及(B)通过对预组织分子进行电化学调谐的后处理。一种TTF-TCNQ盐(TTF = 四硫富瓦烯;TCNQ = 7,7,8,8-四氰基对苯二醌二甲烷)被并入一个具有桨轮型双金属(II,II)单元([M];M = Ru,S = 1,1;Rh,S = 0,2)的三维框架中,其中[M]和TCNQ单元形成配位框架,而TTF位于框架的孔中,与框架中的TCNQ形成不规则的π堆积交替柱。在1中,当温度从300 K降低时,[Ru]和TCNQ单元的自旋通过框架产生磁相关性,然而,如在自旋-派尔斯转变(T(2)=200 K)中所见,由于TTF-TCNQ柱中形成自旋单重态,这种相关性在137 K(=T(1))以下突然被抑制。这种材料被用作锂离子电池(LIB)的阴极;在放电过程中,通过三维[{Ru}TCNQ]框架在T = 78 K时形成了长程亚铁磁相关性。通过LIB的充放电循环,证明了由准自旋-派尔斯单重态的局部自旋调谐导致的非挥发性亚铁磁和顺磁状态之间的可逆磁相切换。

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