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Structure, phase transition and properties of the one-dimensional antiferromagnet Cu(2,6-dimethylpyrazine)Br2.


ABSTRACT: We report the crystal structure and properties of the one-dimensional S = 1/2 antiferromagnet Cu(2,6-dimethylpyrazine)Br2 with strong intra-chain exchange. At room temperature, its linear spin chains are formed by Cu2+ ions via the non-bonding Br⋯Br contacts. Interestingly, a phase transition from Pmmn to P21/n structure occurs at T S ≈ 248 K below which the [CuBr2] n spin chains become non-linear and the magnetic susceptibility abruptly increases, reflecting the weakening of antiferromagnetic exchange strength. This result evidences the Goodenough-Kanamori rules which claim that a linear super-exchange pathway produces stronger antiferromagnetic coupling. From magnetic susceptibility measurements we find the average intra-chain exchange strength is J/k B ≈ -88.18 K in the low temperature phase. Both magnetic and specific measurements show the absence of magnetic ordering down to 2 K, implying the excellent magnetic one-dimensionality of Cu(2,6-dimethylpyrazine)Br2. We also performed ultra-violet (UV) absorption and photoluminescence measurements which give a semiconducting band gap Δ ≈ 2.79 eV which is consistent with theoretical calculations.

SUBMITTER: Ding F 

PROVIDER: S-EPMC9034352 | biostudies-literature | 2021 Jun

REPOSITORIES: biostudies-literature

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Structure, phase transition and properties of the one-dimensional antiferromagnet Cu(2,6-dimethylpyrazine)Br<sub>2</sub>.

Ding Fei F   Yang Chuanlu C   Gong Xiangnan X   Zheng Hui H   Zhou Xiaoyu X   Li Lingli L   Zhang Lichun L   Wang Dehua D   Pan Bingying B  

RSC advances 20210625 37


We report the crystal structure and properties of the one-dimensional <i>S</i> = 1/2 antiferromagnet Cu(2,6-dimethylpyrazine)Br<sub>2</sub> with strong intra-chain exchange. At room temperature, its linear spin chains are formed by Cu<sup>2+</sup> ions <i>via</i> the non-bonding Br⋯Br contacts. Interestingly, a phase transition from <i>Pmmn</i> to <i>P</i>21/<i>n</i> structure occurs at <i>T</i> <sub>S</sub> ≈ 248 K below which the [CuBr<sub>2</sub>] <sub><i>n</i></sub> spin chains become non-li  ...[more]

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