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High-Energy-Density Liquid Spiro-Norbornanes from Methylenenorbornane

М. А. Рудакова, Danil P. Zarezin, Sergey V. Shorunov, Vadim O. Samoilov, Sergey O. Ilyin, A. L. Maximov, Maxim V. Bermeshev

2022Energy & Fuels22 citationsDOI

Abstract

We report a synthetic scheme for obtaining new spiro-hydrocarbons from a versatile norbornane derivative, methylenenorbornane. As a result, four new spiro-hydrocarbons and the isomeric-related norbornanes for the comparison have been obtained in moderate or good yields through [4π + 2π] and cyclopropanation reactions. The effect of introducing a spiro-center is dependent on the nature of carbocycles at a spiro-carbon atom. There is no obvious advantage in properties for spirocycloalkenes consisting of norbornane and cyclopropane rings at the spiro-carbon atom compared to isomeric hydrocarbons. At the same time, spirocycloalkenes with two norbornane motifs at a spiro-center have exhibited much higher values of densities and energy densities (0.992–1.023 g/mL, 41.79–43.28 MJ/L) than the related hydrocarbons without a spiro-center and JP-10. The obtained results can provide insight and an opportunity to further expand this work to bring new high-performance jet fuels to market.

Topics & Concepts

NorbornaneCyclopropaneChemistryDegree of unsaturationCarbon fibersCarbon atomJet fuel2-Norbornyl cationAtom (system on chip)Derivative (finance)HydrocarbonCyclopropanationOrganic chemistryRing (chemistry)Computational chemistryMaterials scienceCatalysisFinancial economicsEmbedded systemEconomicsComposite numberComputer scienceComposite materialCatalysis for Biomass ConversionOrganic Chemistry Cycloaddition ReactionsCatalysis and Oxidation Reactions
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