Armelao Lidia, Barreca Davide, Bottaro Gregorio, Maragno Cinzia, Tondello Eugenio, Caneschi Andrea, Sangregorio Claudio, Gialanella Stefano
ISTM-CNR and INSTM, Department of Chemistry, University of Padova, Italy.
J Nanosci Nanotechnol. 2006 Apr;6(4):1060-7. doi: 10.1166/jnn.2006.147.
Pure and Ca-doped LaCoO3 nanopowders were prepared by a non-alkoxidic sol-gel route using cobalt(II) acetate, lanthanum(III) nitrate and calcium(II) acetate as oxide precursors. The structural evolution and magnetic properties of the samples were studied as a function of thermal treatments in air up to 1273 K. In particular, the microstructure and composition of the systems were analyzed by X-ray Diffraction (XRD), Transmission Electron Microscopy (TEM), and X-ray Photoelectron Spectroscopy (XPS). Both pure and calcium-doped samples annealing at 973 K resulted in the formation of cubic LaCoO3 (average crystallite size <30 nm). This phase was fully retained in the calcium-doped materials even after annealing at higher temperatures, whereas a transition to the rhomboedral polymorph was detected in the pure samples at 1073 K. The magnetic behavior of the nanopowders was investigated as a function of temperature and applied field using both dynamic and static susceptibility measurements. Pure lanthanum cobaltite samples underwent a transition to an ordered state at 88 K, and their magnetic properties changed as a function of thermal treatments. As concerns calcium-doped samples, they ordered ferromagnetically at 171 and 185 K depending on the annealing temperature and displayed open hysteresis loops with coercive fields as large as 1.75 T at low temperatures.
采用非醇盐溶胶 - 凝胶法,以醋酸钴(II)、硝酸镧(III)和醋酸钙(II)作为氧化物前驱体,制备了纯的和钙掺杂的LaCoO₃纳米粉末。研究了样品在高达1273 K的空气中进行热处理时的结构演变和磁性。特别地,通过X射线衍射(XRD)、透射电子显微镜(TEM)和X射线光电子能谱(XPS)对体系的微观结构和组成进行了分析。纯样品和钙掺杂样品在973 K退火均导致立方相LaCoO₃的形成(平均晶粒尺寸<30 nm)。即使在更高温度下退火,该相在钙掺杂材料中仍完全保留,而在1073 K时,纯样品中检测到向菱面体多晶型的转变。使用动态和静态磁化率测量方法,研究了纳米粉末的磁行为随温度和外加磁场的变化。纯钴酸镧样品在88 K时转变为有序状态,其磁性随热处理而变化。对于钙掺杂样品,根据退火温度的不同,它们在171 K和185 K时呈现铁磁有序,并且在低温下显示出矫顽场高达1.75 T的开放磁滞回线。