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21.
M.L. Foo Q. Huang Wei-Li Lee I.S. Hagemann N.P. Ong 《Journal of solid state chemistry》2006,179(2):563-572
The synthesis, structure, and physical properties of five R-type Ru ferrites with chemical formula BaMRu5O11 (M=Li and Cu) and BaM′2Ru4O11 (M′=Mn, Fe and Co) are reported. All the ferrites crystallize in space group P63/mmc and consist of layers of edge sharing octahedra interconnected by pairs of face sharing octahedra and isolated trigonal bipyramids. For M=Li and Cu, the ferrites are paramagnetic metals with the M atoms found on the trigonal bipyramid sites exclusively. For M′=Mn, Fe and Co, the ferrites are soft ferromagnetic metals. For M′=Mn, the Mn atoms are mixed randomly with Ru atoms on different sites. The magnetic structure for BaMn2Ru4O11 is reported. 相似文献
22.
Simultaneous determination of cobalt,copper, iron and vanadium in crude petroleum oils by HPLC 总被引:1,自引:0,他引:1
Summary A method has been developed for the simultaneous formation and solvent extraction of cobalt (II), copper (II), iron (II) and vanadium (IV) complexes of bis (acetylpivalylmethane)ethylenediamine (H2APM2en) in methyl isobutyl ketone. The complexes are eluted from a reversed phase HPLC column with a mixture of methanol:water:acetonitrile and detection was at 260 nm. The method has been applied to the simultaneous determination of cobalt, copper, iron and vanadium in crude petroleum oils at the ng level. 相似文献
23.
IntroductionTherehasbeenrecentresearchinterestincrystalen gineeringandthedesignofsupramoleculararchitectures .1Byselectingthechemicalstructureofligandsandtheco ordinationgeometryoftransitionmetalions ,theorganic/inorganichybridmaterialsmayyieldaseriesofn… 相似文献
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Pt3Co核-Pt壳型纳米粒子的制备及磁性 总被引:1,自引:1,他引:1
Pt3Co alloy nanoparticles were prepared by the reduction of H2PtCl6 and Co(OOCCH3)2 using NaBH4 as a reducing agent. The Pt3Co core-Pt shell nanoparticles (Pt3Co@Pt) were synthesized using hydrogen absorption reduction and characterized by plasma-atomic emission spectrometry (ICP), transmission electron microscopy (TEM), X-ray diffraction (XRD) and SQUID magnetometer. The results show that average size of Pt3Co@Pt nanoparticles is 3.6 nm with a standard deviation of 0.9 nm. Heating Pt3Co nanoparticles in air at 700 ℃ for 1 h, Co in Pt3Co nanoparticles was oxidized to Co3O4 and CoO; while no oxidation tendency was detected for Pt3Co@Pt nanoparticles. The crystallize structure of Pt3Co@Pt changed from the face centered cube (fcc) to the face centered tetragonal (fct) after the heating treatment. The coercivity of the heated Pt3Co@Pt reached to 276 Oe at room temperature. 相似文献
26.
Mosstafa Kazemi 《合成通讯》2020,50(13):1899-1935
AbstractCatalysis research under magnetically recoverable nanocatalysts is a well-known topic in organic synthesis. In recent times, catalysis research has clearly experienced a renaissance in the area of utility of ferrite nanoparticles based on their ability to recovery and reusability. In this review, the focus is on the fabrication, characterization and of application the MFe2O4 (M=Co, Cu, and Ni) nanocatalysts in synthesis of heterocyclic structural scaffolds. 相似文献
27.
A simple, sensitive and rapid derivative spectrophotometric method using 2-(5-bromo-2-pyridylazo)-5-diethylaminophenol (5-Br-PADAP) has been developed for simultaneous determination of Co(II), Ni(II) and Fe(II) which have very similar chemical behavior and appear together in many real samples. The complexes of all these metal ions with 5-Br-PADAP were formed immediately at pH 7.0 ammonium acetate buffered solution and were stable for at least 24 h. Second derivative spectra were selected for evaluation, because working wavelength determination was more precise and spectral overlap was less than in the ordinary and first derivative spectra. Three wavelengths at which the complexes exhibit extremum 2D values for Co(II), Ni(II) and Fe(II) were selected as analytical wavelengths, i.e., 640, 600 and 740 nm, respectively. Calibration curves drawn with zero-to-peak values at mentioned wavelengths were linear between 80 and 2000 ng ml−1 for each metal ion. Concentrations of Co(II) and Ni(II) were calculated from the total 2D values and the sum of the linear equations for these three cations at 640 and 600 nm, after Fe(II) assay by making use of the 2D value at 740 nm. Limits of detection (LOD) for Co(II), Ni(II) and Fe(II) were 2.7, 13.9 and 3.0 ng ml−1, respectively. The method has been applied to tool steel and heater resistance wire samples successfully. 相似文献
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以水滑石及类水滑石为前体的Mg/Al、Co/Al及Co/Mg/Al混合氧化物的合成、表征和异丙醇催化性能 总被引:11,自引:0,他引:11
以共沉淀法合成的水滑石(HT)和类水滑石(HTLc)为前体制备了镁铝、钴铝、钴镁铝混合氧化物,采用了BET、XRD、TG-DTA、TPR、FTIR和微量量热吸附及异丙醇催化反应进行了研究。结果表明:以HT和HTLc为前体制备的混合氧化物,其比表面积较大、并随着钴含量的增加而降低。在HT中引入Co2+离子后,由于Co2+离子的氧化还原属性,削弱了水滑石层对阴离子的键合能力,从而使其热分解温度及热稳定性降低,导至焙烧后生成的混合氧化物的比表面积比不含钴的2Mg/Al混合氧化物的低。在TPR过程中,镁铝混合氧化物不被还原,而含钴的混合氧化物的还原是经由Co3+ → Co2+ → Co0的过程。混合氧化物表面含有酸性位和碱性位,并随着钴含量的变化而得到调变。含钴氧化物样品的表面以L酸为主和含有很少量的B酸。异丙醇催化反应生成丙酮的选择性最高,表明样品表面的氧化还原位是主要的,随着钴的加入及含量的增大,异丙醇催化反应的转化率也是增大的。 相似文献
30.
On dehydration of La[Co(CN)6]·5H2O, the color of the complex, changes from white to pale blue at around 230°C. Heating the pale blue specimen, the color changes
to deep blue at around 290°C. This deep blue specimen is easily rehydrated to a pink one. As reported previously, in the pale
blue specimen, Co3+ ions are situated in the center of the D4h crystal field formed by six CN- ions.
The deep blue specimen is due to the presence of [Co(CN)4]2- ions in which Co2+ was situated in a Td coordination field formed by four CN- ions and the Co-C bond length is 1.67 Ĺ. The pink species corresponded to trans-[Co(CN)4(H2O)2]2- and the bond lengths of Co-C and Co-O are 1.89 and 1.85 Ĺ, respectively.
The Raman spectra of the complex observed at 25°C displays two bands at 2157 and 2176 cm-1 associated with the vibration of C-N bond, and the band of 2157 cm-1 was split into two bands, 2150 and 2156 cm-1, at around 100°C. When the complex was heated to around 230°C, three new bands were observed at 2103, 2116 and 2141 cm-1.
The bands of 2103 and 2116 cm-1 were assigned to the stretching vibration of C=N bonding to Co2+. The band of 2141 cm-1 was assigned to the stretching vibration of the inverted CN- as follows: Co-C=N-La→Co-N=C-La. The activation energy for the inversion of CN- was estimated as 67 kJ mol-1.
This revised version was published online in August 2006 with corrections to the Cover Date. 相似文献