首页> 外文期刊>The European physical journal, B. Condensed matter physics >Low temperature specific heat of molecular rings: a study on the effects on the internal guest substitution and on the lattice contribution
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Low temperature specific heat of molecular rings: a study on the effects on the internal guest substitution and on the lattice contribution

机译:分子环的低温比热:对内部客体取代和晶格贡献的影响的研究

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摘要

The effects of the internal guest substitution within hexa-iron molecular rings (Na:Fe6 and Li:Fe6) have been investigated by means of low temperature specific heat (LTSH) measurements. By changing Na to Li as central metal ion, the Schottky anomaly shifts towards lower temperatures. The data analysis is supported by the study of the LTSH of the non-magnetic Na:Ga6 compound which has the same core structure as the iron rings. For the non-magnetic Na:Ga6, significant deviations from the simple C ~ T~3 Debye law were found and the use of conventional C vs. T fitting curves is critically discussed. The singlet-triplet energy gap (E_1/κ_B = 12.1 ± 0.5 K) and its zero-field splitting (D_1/κ_B = 1.5 ± 1 K) evaluated from the magnetic contribution of the Li:Fe6 LTSH are compared to values estimated by high field torque magnetometry.
机译:六铁分子环(Na:Fe6和Li:Fe6)内部客体取代的影响已通过低温比热(LTSH)测量进行了研究。通过将Na转换为Li作为中心金属离子,肖特基异常向更低的温度转变。对非磁性Na:Ga6化合物的LTSH的研究支持了数据分析,该化合物具有与铁环相同的核心结构。对于非磁性的Na:Ga6,发现了与简单的C〜T〜3德拜定律的显着偏差,并严格讨论了传统C对T拟合曲线的使用。根据Li:Fe6 LTSH的磁贡献评估的单重态-三重态能隙(E_1 /κ_B= 12.1±0.5 K)及其零场分裂(D_1 /κ_B= 1.5±1 K)与通过磁场转矩磁力计。

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