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Ferromagnetic synthesis

Chromium, tetraaquadichloro-chloride dihydrate hydrate isomerism, 1, 183 Chromium, tetrabromo-solvated, 3, 758 synthesis, 3, 763 Chromium, tetrachloro-antiferromagnetic, 3, 761 ferromagnetic magnetic properties, 3,7559 optical properties, 3,759 structure, 3,759 solvated, 3. 758 synthesis. 3, 759 Chromium, tetrachlorooxy-tetraphenylarsenate stereochemistry, 1,44 Chromium, tetrahalo-, 3,889 Chromium, tetrakis(dioxygen)-stereochemistry, 1,94 Chromium, triamminediperoxy-structure. 1, 78 Chromium, tricyanodiperoxy-structure, 1, 78 Chromium, trifluoro-electronic spectra, 3, 757 magnetic properties, 3, 757 structures, 3, 757 synthesis, 3, 756 Chromium, trihalo-clcctronic spectra, 3, 764 magnetic properties, 3, 764 structure, 3, 764 synthesis, 3, 764 Chromium, tris(acetylacetone)-structure. 1, 65 Chromium, tris(bipyridyl)-... [Pg.101]

New natural polymers based on synthesis from renewable resources, improved recyclability based on retrosynthesis to reusable precursors, and molecular suicide switches to initiate biodegradation on demand are the exciting areas in polymer science. In the area of biomolecular materials, new materials for implants with improved durability and biocompatibility, light-harvesting materials based on biomimicry of photosynthetic systems, and biosensors for analysis and artificial enzymes for bioremediation will present the breakthrough opportunities. Finally, in the field of electronics and photonics, the new challenges are molecular switches, transistors, and other electronic components molecular photoad-dressable memory devices and ferroelectrics and ferromagnets based on nonmetals. [Pg.37]

Since the reported synthesis [1] of stable 2-phenyl-4,4,5,5-tetramethylimidazoline-l-oxyl-3-oxide, NitPh, considerable effort has been spent in the physical characterization of nitronyl nitroxide compounds. Their general formula is presented in Figure 1 A. These compounds carry a delocalized, S = 1/2, unpaired electron. Among them, some derivatives were found to be paramagnetic at low temperature (NitPh, [1]), others were found to exhibit an antiferromagnetic or a ferromagnetic behavior [2-7]. [Pg.276]

Since our earlier review1 appeared not so long ago, it makes no sense to repeat here all facets of the radialene family. Therefore, we focus here on the synthesis and chemical transformation of the radialenes, and we suggest the reader consult our earlier review for information on structural and spectroscopic data as well as the use of radialenes as building blocks for organic conductors and organic ferromagnets, as these topics will not... [Pg.930]

The Russell group has applied the template synthesis approach to nanoporous films generated from UV-treated PS-fo-PMMA copolymers [43, 147,233,235,241], which were pre-aligned perpendicular to the substrate by an electric field. Through direct current electrodeposition, they fabricated high-density vertical arrays of ferromagnetic cobalt nanowires (Fig. 10a) [43]. Through subsequent work, they also demonstrated the successful replication... [Pg.227]

Arcon D, Blinc R (2004) The Jahn-Teller Effect and Fullerene Ferromagnets 109 231-276 Aroml G, Brechin EK (2006) Synthesis of 3d Metallic Single-Molecule Magnets. 122 1-67 Atanasov M, Daul CA, Rauzy C (2003) A DFT Based Ligand Field Theory 106 97-125 Atanasov M, see Reinen D (2004) 107 159-178 Atwood DA, see Conley B (2003) 104 181-193... [Pg.209]

The ease of the synthesis maybe disclosed by the experimental procedure. An evacuated 100-mL flask was filled with N2O4/NO2 to a pressure of ca. 650 mbar (296 mg, 6.4 mmol NO2). The sampling flask was connected to an evacuated 1-L flask, which was then connected to an evacuated 10-mL flask that was cooled to 5 °C and contained the nitroxyl 4a or 4b, or the nitroxyl precursor to 7 (500 mg, 2.70 mmol). After 1 h, the cooling bath was removed and excess NO2 and NO were condensed in a cold trap at 77 K for further use. The yield was 665 mg (100%) of pure 6a, 6b, or 7 [19]. Similarly, 2-g quantities of tetra-methylpiperidine-AT-oxyl (TEMPO) or 0.2 g of the ferromagnetic 2-fluoro-phenyl-tetramethylnitronyl nitroxide stable radical [21] were reacted at -10 °C (initial pressure of NO2 0.03 bar) or 5 °C (0.3 bar NO2) in 12 h with a quantitative yield of pure 8 or 9, respectively [19]. [Pg.103]

A new wave of interest and productive research was aroused by synthesis of tricyclic condensed derivative benzobis(l,3,2-dithiazole) (BBDTA) which was shown experimentally to afford at least three distinct oxidation states dication, radical cation, and diradical <86SM233, 86SM239). This has been helpful for developing an approach to ferromagnetic organic metals in which homomolecular stacks are formed from donor-acceptor complexes in which the donor is a triplet and the acceptor a radical ion derived from the donor <86SM233>. Initial experiments showed conductivities lO " -10 S for complexes of BBDTA radicals with TCNQ <86SM239>. [Pg.452]

Moreover, according to this general schematic mechanism, a more detailed picture of the particle formation has been tentatively given in two particular cases (1) synthesis of colloidal silver particles, and (2) formation of bimetallic ferromagnetic metal particles. [Pg.490]

The high stability of TATB favors its use in military and civilian applications where insensitive high explosives are required. In addition to its applications as a HE, TATB is also used to produce the important intermediate benzenehexamine which has been used in the preparation of ferromagnetic organic salts and in the synthesis of new heteropolycyclic molecule such as 1,4,5,8,9,12-hexaazatriphenyl-ene (HAT) that serves as a strong electron acceptor ligand for low-valence transition metals. [Pg.88]

Beads of cross-linked polystyrene containing magnetite crystals (Fe304, a ferromagnetic material) have been prepared and successfully used for solid-phase synthesis [125-127]. The magnetic beads could be readily separated from the reaction mixture with a magnet. [Pg.25]

Organic bulk ferromagnetism was discovered in 1991 [3]. There has been enormous progress in the design and synthesis of molecular-based magnetic... [Pg.232]

A ferromagnetic state of the synthesis products was observed also in case of use of nano-dispersive copper as the catalyst. It should be noted that the CNM can have magnetic properties in case of catalyst-free synthesis, but the magnetization value is within the limits of 1-5 A-m2/kg. The magnetic properties of C6o polymers with relatively low values of magnetization were studied in [8], too. [Pg.174]

It may be safely suggested that origin of the ferromagnetic state in the synthesis products is a result of change in their electronic structure at the high-energy plasmochemistry synthesis. It results in the appearance of carbonic clusters with unpaired electron spins and formation of ferromagnetic domains with equally oriented spins. [Pg.174]

It was discovered that the plasmochemical synthesis products have ferromagnetic properties. The magnetization value of the synthesized carbon nanomaterials amounts the value close to the one of typical ferromagnetics. [Pg.176]


See other pages where Ferromagnetic synthesis is mentioned: [Pg.390]    [Pg.365]    [Pg.419]    [Pg.41]    [Pg.316]    [Pg.146]    [Pg.275]    [Pg.197]    [Pg.622]    [Pg.376]    [Pg.521]    [Pg.49]    [Pg.280]    [Pg.679]    [Pg.79]    [Pg.378]    [Pg.36]    [Pg.554]    [Pg.231]    [Pg.244]    [Pg.682]    [Pg.472]    [Pg.169]    [Pg.174]    [Pg.230]    [Pg.11]    [Pg.12]    [Pg.433]   
See also in sourсe #XX -- [ Pg.9 , Pg.10 ]




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