Amerigo Scientific
1,6-Heptadien-4-ol can help in synthesizing the derivatives of guanine, adenine, uracil and thymine via Mitsunobu condensation.
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Amerigo Scientific
Polymerization of 1,6-heptadiyne using an insoluble Zeigler-Natta catalyst affords soluble polymer having six-membered ring containing polyene. Ruthenium(II)-catalyzed reaction of a substituted 1,6-heptadiyne with norbornene affords a tandem [2+ 2+ 2]/[4+2] cycloaddition product and a [2+ 2+2] cycloadduct. Cyclocopolymerization of 1,6-heptadiyne with dipropargyl ether under nitrogen atmosphere using KSCN, KBr and KI as initiators in N,N-dimethyl […]
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Amerigo Scientific
1,6-Hexanedithiol (HDT) is a long chained bi-functional alkanethiol with 6 carbon atoms structured in a zig-zag pattern, which forms a tetrahedral configuration. It forms a self-assembled monolayer (SAM) on a variety of substrates and immobilizes the surface atoms.
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Amerigo Scientific
1,7-Dimethyluric acid is an important metabolite of caffeine. Electrochemical oxidation of 1,7-dimethyluric acid was studied over a wide pH range of 2. 2-10. 3 at solid electrodes.
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1,7-Octadiene
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Amerigo Scientific
1,7-Octadiene can serve as a crosslinker and source of ethylene for a variant of Mori′s conditions in CEYM-related reactions.
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Amerigo Scientific
1,7-Octadiyne is a terminal bis-alkyne and participates in the formation of uranium(IV) vinyl complexes. It reacts with frustrated Lewis pair P(o-tolyl)3/B(C6F5)3 by acetylene C-C coupling to yield the zwitterionic product. It undergoes the reductive cyclization during reaction with Re2Cl4(μ-dppm)2 (dppm = Ph2PCH2PPh2) and affords quadruply bonded dirhenium(III) complex Re2Cl3(μ,η2-C8H7)(μ-dppm)2.
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Amerigo Scientific
1,7-Phenanthroline has inhibitory effect on germination and growth of plants. 1,7-Phenanthroline is an aza-analog of phenanthrene, was found to be mutagenic in the Ames test using Salmonella typhimurium TA100 in the presence of a rat liver S9 fraction. Supramolecular assemblies of 1,2,4,5-benzenetetracarboxylic acid with 1,7-phenanthroline (aza donor molecule) were investigated.
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Amerigo Scientific
Two-photon chemistry of 1,8-bis(bromomethyl)naphthalene has been studied by time-delayed, two-color photolysis and argon ion laser-jet photolysis techniques.
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Amerigo Scientific
1,8-Dichlorooctane is a chloroparaffin. The non-exponentiality of proton spin-lattice relaxation in polycrystalline 1,8-dichlorooctane in Zeeman-quadrupole level-crossing experiments at various frequencies is reported. It has important synthetic applications in food, pharmaceutical, biomedical, electrical and electronic sectors.
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