Smith Anna L, Hen Amir, Magnani Nicola, Sanchez Jean-Pierre, Colineau Eric, Griveau Jean-Christophe, Raison Philippe E, Caciuffo Roberto, Konings Rudy J M, Cheetham Anthony K
European Commission, Joint Research Centre (JRC), Institute for Transuranium Elements (ITU), PO Box 2340, D-76125 Karlsruhe, Germany. Department of Materials Science and Metallurgy, University of Cambridge, 27 Charles Babbage Road, Cambridge CB3 0FS, UK.
J Phys Condens Matter. 2016 Mar 2;28(8):086002. doi: 10.1088/0953-8984/28/8/086002. Epub 2016 Jan 29.
The physical and chemical properties at low temperatures of hexavalent disodium neptunate α-Na2NpO4 are investigated for the first time in this work using Mössbauer spectroscopy, magnetization, magnetic susceptibility, and heat capacity measurements. The Np(VI) valence state is confirmed by the isomer shift value of the Mössbauer spectra, and the local structural environment around the neptunium cation is related to the fitted quadrupole coupling constant and asymmetry parameters. Moreover, magnetic hyperfine splitting is reported below 12.5 K, which could indicate magnetic ordering at this temperature. This interpretation is further substantiated by the existence of a λ-peak at 12.5 K in the heat capacity curve, which is shifted to lower temperatures with the application of a magnetic field, suggesting antiferromagnetic ordering. However, the absence of any anomaly in the magnetization and magnetic susceptibility data shows that the observed transition is more intricate. In addition, the heat capacity measurements suggest the existence of a Schottky-type anomaly above 15 K associated with a low-lying electronic doublet found about 60 cm(-1) above the ground state doublet. The possibility of a quadrupolar transition associated with a ground state pseudoquartet is thereafter discussed. The present results finally bring new insights into the complex magnetic and electronic peculiarities of α-Na2NpO4.
在这项工作中,首次使用穆斯堡尔光谱、磁化强度、磁化率和热容量测量对六价镎酸钠α-Na₂NpO₄在低温下的物理和化学性质进行了研究。通过穆斯堡尔光谱的同质异能位移值确认了Np(VI)价态,并且镎阳离子周围的局部结构环境与拟合的四极耦合常数和不对称参数有关。此外,在12.5 K以下报道了磁超精细分裂,这可能表明在此温度下存在磁有序。热容量曲线在12.5 K处存在一个λ峰,该峰随着磁场的施加向低温移动,表明反铁磁有序,这进一步证实了这种解释。然而,磁化强度和磁化率数据中没有任何异常现象,表明观察到的转变更为复杂。此外,热容量测量表明在15 K以上存在与基态双重态上方约60 cm⁻¹处发现的低能级电子双重态相关的肖特基型异常。此后讨论了与基态伪四重态相关的四极跃迁的可能性。目前的结果最终为α-Na₂NpO₄复杂的磁性和电子特性带来了新的见解。