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Magnetic Properties of Some Hydrated Transition Metal Oxide and Hydroxide Nanoparticles Synthesized in Different Media

机译:不同培养基中合成的一些水合过渡金属氧化物和氢氧化物纳米颗粒的磁性性能

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Nanoscale particle size of metal oxides and hydroxides showed enhanced various physical properties and performance. We established a simple, cost-effective, room-temperature (RT) precipitation method for the preparation of the magnetic, first-raw transition metal (TM) hydrated oxide and hydroxide nanoparticles. This method is based on the use of the TM nitrate, as the metal source, and cyclohexylamine (CHA), as a precipitating agent, either in the water (H_2O) or ethanol (EtOH) medium. We found that the precipitation medium and the identity of precipitated TM strongly affect the morphology, particle size, and magnetism of the product. The morphology varies from spherical, to rectangular, to rod shape; while the size varies in the range of 5-30 nm. All samples showed paramagnetic behavior with Curie temperatures span over a wide range (20-150K). Huge hysteresis looses has been observed for manganese (Mn) sample, prepared in H_2O. The coercively (Hc) at 4.2K for this sample is about 1.5T, which is comparable to the strongest permanent magnets (Nd-based magnets) available at room temperature. The energy product (Hc*MR) is about 4.5*10~5 (emu/g)Oe.
机译:金属氧化物和氢氧化物的纳米级粒度显示出增强的各种物理性能和性能。我们建立了一种简单,经济效益,室温(RT)沉淀方法,用于制备磁,第一原始过渡金属(TM)水合氧化物和氢氧化物纳米颗粒。该方法基于使用TM硝酸盐,作为金属源和环己胺(CHA),作为沉淀剂,在水(H_2O)或乙醇(ETOH)培养基中。我们发现沉淀介质和沉淀的Tm的身份强烈影响产品的形态,粒度和磁性。形态从球形变化,以矩形,杆状;虽然大小在5-30nm的范围内变化。所有样品均显示居里温度范围在宽范围内(20-150K)的顺磁性行为。已观察到在H_2O中制备的锰(MN)样品中观察到巨大的滞后松弛。该样品的4.2k处的矫顽力(HC)约为1.5T,其与室温可用的最强的永磁体(基于Nd基磁体)相当。能量产品(HC * MR)约为4.5 * 10〜5(EMU / G)OE。

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