Mishra S R, Dubenko I, Losby J, Ghosh l K, Khan M, Ali N
Department of Physics, The University of Memphis, Memphis, TN 38152, USA.
J Nanosci Nanotechnol. 2005 Dec;5(12):2076-81. doi: 10.1166/jnn.2005.187.
Defect induced magnetic properties of CoO nanoparticles produced via mechanical ball milling have been assessed by detailed magnetic measurements. A progressive decrease in the particle size and a concomitant increase in the induced strain have been observed with the milling times. The mechanically milled nanoparticles of CoO exhibit anomalous magnetic properties such as FM hysteresis when compared with the unmilled CoO sample. The presence of weak ferromagnetism, with a highest value of magnetization of 0.532 emu/g at 10 K in the 100 h milled sample, is attributed to the uncompensated surface spins resulting from induced surface defects via mechanical milling. The ZFC coercive force, measured at 10 K, increases with milling time reaching a maximum value of 1066 Oe for the 100 h milled sample. The temperature dependent field-cooled (FC) and zero-field-cooled (ZFC) magnetic measurements indicate a presence of an exchange bias field arising from uncompensated moments generated by mechanical strain and the antiferromagnetic (AFM) core. The exchange bias field measured at 10 K reaches a value 210 Oe for the 50 h milled sample and decreases upon prolonged milling. The exchange bias field vanishes at a temperature approximately 200 K, a temperature much lower than the Neel temperature of CoO (TN approximately 291 K). The observed anomalous magnetic behavior of CoO could be interpreted in terms of the exchanged bias FM-AFM model.
通过详细的磁性测量评估了通过机械球磨制备的CoO纳米颗粒的缺陷诱导磁性。随着球磨时间的增加,观察到颗粒尺寸逐渐减小,同时诱导应变相应增加。与未球磨的CoO样品相比,机械球磨的CoO纳米颗粒表现出异常的磁性,如铁磁滞回线。在100小时球磨样品中,10K时的弱铁磁性最高磁化强度值为0.532emu/g,这归因于机械球磨诱导表面缺陷导致的未补偿表面自旋。在10K下测量的零场冷却(ZFC)矫顽力随球磨时间增加,在100小时球磨样品中达到最大值1066Oe。温度依赖的场冷(FC)和零场冷却(ZFC)磁性测量表明存在由机械应变和反铁磁(AFM)核心产生的未补偿磁矩引起的交换偏置场。在50小时球磨样品中,10K时测量的交换偏置场达到210Oe的值,并在长时间球磨后减小。交换偏置场在约200K的温度下消失,该温度远低于CoO的尼尔温度(TN约291K)。观察到的CoO异常磁行为可以用交换偏置铁磁-反铁磁模型来解释。