Academic literature on the topic 'Nickel(II) Precursors'

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Journal articles on the topic "Nickel(II) Precursors"

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RAMASAMY, KARTHIK, WEERAKANYA MANEEPRAKORN, NASIR IQBAL, MOHAMMAD AZAD MALIK, and PAUL O'BRIEN. "COBALT(II)/NICKEL(II) COMPLEXES OF DITHIOACETYLACETONE [M(SacSac)2](M = Co, Ni) AS SINGLE SOURCE PRECURSORS FOR COBALT/NICKEL SULFIDE NANOSTRUCTURES." International Journal of Nanoscience 10, no. 04n05 (2011): 815–22. http://dx.doi.org/10.1142/s0219581x11009234.

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Cobalt(II)/Nickel(II) complexes of 4-thiopent-3-ene-2-thione (SacSac), [ M(SacSac) 2]( M = Co, Ni ) have been used as single source precursors (SSPs) for the preparation of cobalt/nickel sulfide thin films by aerosol-assisted chemical vapor deposition (AACVD). Cobalt or nickel sulfide nanoparticles were grown by thermal decomposition of the precursor in hot trioctylphosphine oxide (TOPO) or hexadecylamine (HDA). XRD analysis showed that all samples of cobalt or nickel sulfide are of the sulfur deficient phases ( Ni9S8, Co9S8, Ni7S6 , or Ni3S2 ). SEM and TEM analysis showed that nickel sulfide
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NIKITIN, A. P., S. A. SOZINOV, E. V. MATUS, and Z. R. ISMAGILOV. "DEVELOPMENT OF SUPPORTED NICKEL-CERIUM CATALYSTS FOR RESOURCE-SAVING CONVERSION OF METHANE INTO HYDROGEN-CONTAINING GAS." Chemistry for Sustainable Development 31, no. 5 (2023): 552–60. http://dx.doi.org/10.15372/csd2023500.

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To develop an effective catalyst for the resource-saving conversion of coal-industry methane into hydrogen-containing gas, the materials Ce0.2Ni0.8O1.2/Al2O3 were synthesized, their physicochemical and functional properties were studied depending on the nature of the precursors of active components (nickel(II) nitrate hexahydrate, nickel(II) ammonium oxide) and promoters (cerium(III) nitrate hexahydrate, ammonium cerium(IV) nitrate). It is shown that the nature of the precursor affects the textural and structural characteristics of the samples, their catalytic activity in the steam-carbon diox
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Fadeeva, I. V., O. V. Prokopova, E. V. Volchkova, et al. "Heterometallic (Nickel, Titanium)-dimethylglyoximates as precursors for nickel titanate coating." Perspektivnye Materialy 8 (2023): 57–67. http://dx.doi.org/10.30791/1028-978x-2023-8-57-67.

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Heterometallic (nickel, titanium) dimethylglyoximate (II) with a nickel:titanium ratio of 1, was synthesized. based on nickel dimethylglyoximate (I) and titanium tetrachloride TiCl4 in chloroform The obtained complex II was characterized by XRD, IR and EPR spectroscopy, and elemental analysis. It was shown that the synthesized complex II is a solvate. On the basis of the analysis results, an assumption was made about the possible structure of complex II. It was found that the thermal decomposition of complex II starts at 44 °C. A constant mass of the decomposition product is observed in the te
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Rodríguez, Alejandro A., Jorge A. Garduño, and Juventino J. García. "Nickel(ii) and nickel(0) complexes as precursors of nickel nanoparticles for the catalytic hydrogenation of benzonitrile." New Journal of Chemistry 44, no. 3 (2020): 1082–89. http://dx.doi.org/10.1039/c9nj05221f.

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Ahmad Dar, Tawseef, Mandeep, and Muniappan Sankar. "Synthesis, spectral and electrochemical redox properties of N-methyl fused nickel(II) porphyrin." Journal of Porphyrins and Phthalocyanines 22, no. 12 (2018): 1106–10. http://dx.doi.org/10.1142/s1088424618501109.

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[Formula: see text]-methyl fused nickel(II) porphyrin was synthesized by a facile synthetic route in excellent yield. The effect of the electron-donating methyl group on spectral and electrochemical redox properties was analyzed by comparing the electrochemistry with that of its precursors. [Formula: see text]-methylated fused nickel(II) porphyrin exhibited a red-shifted absorption spectrum ([Formula: see text] 6–13 nm) and a 180[Formula: see text]mV anodic shift in the first ring oxidation as well as a 210[Formula: see text]mV shift in reduction with respect to its Ni(II)-fused porphyrin prec
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Miecznikowski, John R., Olivier J. C. Nicaise, Brandon Q. Mercado, et al. "Synthesis and Characterization of ONO Pincer Ligand Precursors and Metal Complexes with Ethyl, Isopropyl and Tert-Butyl Wingtip Groups." Crystals 15, no. 3 (2025): 227. https://doi.org/10.3390/cryst15030227.

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We have synthesized novel cobalt(II) and nickel(II) pincer ligand complexes containing novel tridentate ligand precursors that coordinate via oxygen, nitrogen, and oxygen donor atoms. The novel tridentate ONO ligands, which are neutral, incorporate a carbonyl-substituted imidazole functionality and contain R groups of ethyl, isopropyl, or tert-butyl. The ligand precursors were thoroughly characterized using NMR spectroscopy, ESI-MS, and IR spectroscopy. The metal complexes were thoroughly characterized using single crystal X-ray diffraction, elemental analysis, ESI-MS, and cyclic voltammetry.
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Jobbágy, Matías, Galo J. de A. A. Soler-Illia, Alberto E. Regazzoni, and Miguel A. Blesa. "Synthesis of Copper(II)-Containing Nickel(II) Hydroxide Particles as Precursors of Copper(II)-Substituted Nickel(II) Oxides." Chemistry of Materials 10, no. 6 (1998): 1632–37. http://dx.doi.org/10.1021/cm970820j.

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Yin, H., and G. M. Chow. "Nonhydrolytic sol-gel synthesis: Microstructural and morphological study on nickel ferrite nanocrystals coated with oleic acid." Journal of Materials Research 23, no. 7 (2008): 1922–30. http://dx.doi.org/10.1557/jmr.2008.0239.

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Nickel ferrite nanostructured particles coated with chemisorbed oleic acid were successfully synthesized by nonhydrolytic sol-gel method. By varying the composition of metal precursors, two microstructures were obtained, i.e., dispersed nanocrystals (9.7 ± 1.8 nm) and submicron aggregates (152 ± 21 nm) consisted of many nanocrystals (8.1 ± 1.3 nm). Because oleic acid could form complex with iron (III) ions, but not with nickel (II), increasing the concentration of iron precursor consumed more oleic acid and led to insufficient oleic acid coating on particle surface. Strong intercrystallite int
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Rodiansono, Rodiansono, Atina Sabila Azzahra, Sadang Husain, and Pathur Razi Ansyah. "Effect of Precursor and Temperature Annealing on the Catalytic Activity of Intermetallic Ni3Sn2 Alloy." Bulletin of Chemical Reaction Engineering & Catalysis 17, no. 4 (2022): 743–54. http://dx.doi.org/10.9767/bcrec.17.4.15923.743-754.

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The effect of nickel precursors and the temperature annealing to obtain intermetallic Ni3Sn2 alloy catalysts on its activity and selectivity in the selective hydrogenation of biomass-derived furfural (FFald) were investigated. Two types of nickel precursors (c.a., i) nickel metal (Ni°) derived from Raney®nickel and ii) nickel ion (Ni2+) derived from nickel chloride) were employed as the starting materials via hydrothermal at 423 K for 24 h followed by reduction with H2 at the elevated temperature of 573-873 K for 1.5 h. The physico-chemical properties of the intermetallic Ni3Sn2 were character
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Wenz, Jan, Hubert Wadepohl, and Lutz H. Gade. "Regioselective hydrosilylation of epoxides catalysed by nickel(ii) hydrido complexes." Chemical Communications 53, no. 31 (2017): 4308–11. http://dx.doi.org/10.1039/c7cc01655g.

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Dissertations / Theses on the topic "Nickel(II) Precursors"

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Perry, Richard John. "Structural studies on high oxidation state nickel complexes and their nickel(II) precursors using EXAFS spectroscopy." Thesis, University of Southampton, 1991. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.358484.

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Sialvi, Muhammad Z. "Enhanced electrochromic performance of nickel oxide-based ceramic precursor films." Thesis, Loughborough University, 2013. https://dspace.lboro.ac.uk/2134/12779.

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An electrochromic (EC) material is able to change colour under the influence of an electric potential. The development of energy efficient smart windows for architectural applications is at present the subject of intense research for both economic and environmental reasons. Thus there is now a considerable research effort to develop smart windows with natural colour switching properties, i.e. shades of grey. In this regard, a promising metal oxide with a brown-black anodic colouring state is NiO or hydrated nickel oxide (also called nickel hydroxide , Ni(OH)2). The present work outlines the pr
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Conference papers on the topic "Nickel(II) Precursors"

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Baker, Kaiya, Hayden Brown, Fisseha Gebre, and JiaJun Xu. "Atomic Layer Deposition of Nickel Using Ni(dmamb)2 on the Top of ZnO Adhesion Layer Without Plasma." In ASME 2024 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2024. https://doi.org/10.1115/imece2024-146262.

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Abstract In this study, the Atomic Layer Deposition (ALD) technique was employed to deposit Nickel. Initially, the experiment utilized Diethylzinc (C4H10ZnO) with H2O to create a ZnO adhesion layer. This deposition process was carried out on a Silicon wafer with a crystal structure of <001>. The deposition of ZnO served as a precursor for the subsequent process, which involved the deposition of vaporized Nickel (II) 1-dimethylamino-2-methyl-2-butoxide (Ni(dmamb)2) along with H2 as a carrier gas. This step aimed to achieve the uniform deposition of Nickel (Ni) layers on top of the
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