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Magnetism of Kesterite Cu2ZnSnS4 Semiconductor Nanopowders Prepared by Mechanochemically Assisted Synthesis Method

机译:通过机械化学辅助合成方法制备的kesterite Cu2zNSS4半导体纳米粉末的磁性

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摘要

High energy ball milling is used to make first the quaternary sulfide Cu ZnSnS raw nanopowders from two different precursor systems. The mechanochemical reactions in this step afford cubic pre-kesterite with defunct semiconducting properties and showing no solid-state Cu and Sn MAS NMR spectra. In the second step, each of the milled raw materials is annealed at 500 and 550 °C under argon to result in tetragonal kesterite nanopowders with the anticipated UV-Vis-determined energy band gap and qualitatively correct NMR characteristics. The magnetic properties of all materials are measured with SQUID magnetometer and confirm the pre-kesterite samples to show typical paramagnetism with a weak ferromagnetic component whereas all the kesterite samples to exhibit only paramagnetism of relatively decreased magnitude. Upon conditioning in ambient air for 3 months, a pronounced increase of paramagnetism is observed in all materials. Correlations between the magnetic and spectroscopic properties of the nanopowders including impact of oxidation are discussed. The magnetic measurements coupled with NMR spectroscopy appear to be indispensable for comprehensive kesterite evaluation.
机译:高能量球磨用于首先从两种不同的前体系中排出季硫化硫化物Cu ZnSns原料纳米粉末。在该步骤中的机械化学反应得到具有缺陷半导体性质的立方体预酯矿石,并且不显示固态Cu和SnMAS NMR光谱。在第二步中,在氩气下在500和550℃下退火每种研磨的原料,以导致四方酮纳米粉末,其中预期的UV-Vis确定能带隙和定性正确的NMR特性。用鱿鱼磁力计测量所有材料的磁性,并确认预酯矿石样品以显示弱铁磁性组分,而所有ketertite样本只能表现出相对减少的级别的副作用。在环境空气中调节3个月后,在所有材料中观察到副名导地位的显着增加。讨论了包括氧化抗冲击的纳米孔的磁性和光谱性质之间的相关性。与NMR光谱相结合的磁性测量似乎是综合克尔酯矿石评估的必不可少的。

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