Li Wen, Huang Rongjin, Wang Wei, Zhao Yuqiang, Li Shaopeng, Huang Chuanjun, Li Laifeng
Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, P. R. China.
Phys Chem Chem Phys. 2015 Feb 28;17(8):5556-60. doi: 10.1039/c4cp05064a.
The cubic NaZn13-type La(Fe,Al)13 compounds were synthesized, and their linear thermal expansion properties were investigated in the temperature range of 4.2-300 K. It was found that these compounds exhibit abnormal thermal expansion behavior, i.e., pronounced negative thermal expansion (NTE) or zero thermal expansion (ZTE) behavior, below the Curie temperature due to the magnetovolume effect (MVE). Moreover, in the La(Fe,Al)13 compounds, the modification of the coefficient of thermal expansion (CTE) as well as the abnormal thermal expansion (ATE) temperature-window is achieved through optimizing the proportion of Fe and Al. Typically, the average CTE of the LaFe13-xAlx compounds with x = 1.8 reaches as large as -10.47 × 10(-6) K(-1) between 100 and 225 K (ΔT = 125 K). Also, the ZTE temperature-window of the LaFe13-xAlx compounds with x = 2.5 and x = 2.7 could be broadened to 245 K (from 5 to 250 K). Besides, the magnetic properties of these compounds were measured and correlated with the abnormal thermal expansion behavior. The present results highlight the potential application of such La(Fe,Al)13 compounds with abnormal thermal expansion properties in cryogenic engineering.
合成了立方NaZn13型La(Fe,Al)13化合物,并在4.2 - 300 K温度范围内研究了它们的线性热膨胀性能。研究发现,由于磁体积效应(MVE),这些化合物在居里温度以下表现出异常的热膨胀行为,即明显的负热膨胀(NTE)或零热膨胀(ZTE)行为。此外,在La(Fe,Al)13化合物中,通过优化Fe和Al的比例可以实现热膨胀系数(CTE)以及异常热膨胀(ATE)温度窗口的改变。例如,x = 1.8的LaFe13-xAlx化合物在100至225 K(ΔT = 125 K)之间的平均CTE高达-10.47×10(-6) K(-1)。而且,x = 2.5和x = 2.7的LaFe13-xAlx化合物的ZTE温度窗口可以拓宽到245 K(从5到250 K)。此外,还测量了这些化合物的磁性,并将其与异常热膨胀行为相关联。目前的结果突出了这种具有异常热膨胀性能的La(Fe,Al)13化合物在低温工程中的潜在应用。