"A Review of Vegetable Oil-Based Polymers: Synthesis and Applications"
written by Kayode F. Adekunle,
published by Open Journal of Polymer Chemistry, Vol.5 No.3, 2015
has been cited by the following article(s):
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[2] Vegetable oil-based epoxy resins and their composites with bio-based hardener: a short review
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[10] Kinetics and mechanism of the solid-acid catalyzed one-pot conversion of d-fructose to 5, 5′-[oxybis (methylene)] bis [2-furaldehyde] in dimethyl sulfoxide
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[11] Textile: Substrates Modification by Novel Polymers
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[12] Applications of modified biomonomers and biomaterials: a prospective from Africa
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[13] Copolymerization of vegetable oils and bio-based monomers with elemental sulfur: A new promising route for bio-based polymers
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[14] Preparation and studies of pigeon pea stalk/polypropylene composites with and without compatibilizer
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[15] Biofriendly vegetable oil healing agents used for developing self-healing coatings: A review
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[16] Effective and Fast Epoxidation Reaction of Linseed Oil Using 50 wt% Hydrogen Peroxyde
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[17] Synthesis and characterization of a biopolymer of glycerol and macadamia oil
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[18] Síntese e caracterização de um biopolímero a partir de glicerol e óleo de macadâmia
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[19] Oleic acid‐based poly (alkyl methacrylate) as bio‐based viscosity control additive for mineral and vegetable oils
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[20] Magnetic Remote Activation of Shape Recovery in Nanocomposites Based on Tung Oil and Styrene
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[21] Fatty acid-based radically polymerizable monomers: from novel poly (meth) acrylates to cutting-edge properties
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[22] Toughened and hydrophobically modified polyamide 11 copolymers with dimer acids derived from waste vegetable oil
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[23] Epoxidized Vegetable Oils for Thermosetting Resins and Their Potential Applications
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[24] Biobased epoxy/carbon fiber composites: Effect on mechanical, thermo-mechanical and morphological properties
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[25] Sulfuric acid and Amberlyst-H+ catalyzed condensation reactions of renewable keto acids with paraformaldehyde: synthesis of a new dispiro bis-lactone ring …
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[26] Utilization of Crude Palm Oil To Produce Biolubricant Through Process of Epoxydation, Hydroxylation And Acetylation
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[27] The Synthesis and Surface Properties of Newly Eco-Resin Based Coconut Oil for Superhydrophobic Coating
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[28] Understanding the Effect of the Dianhydride Structure on the Properties of Semiaromatic Polyimides Containing a Biobased Fatty Diamine
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[29] Avaliação de óleo vegetal natural e epoxidado em composições elastoméricas para banda de rodagem
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[30] A two-step efficient preparation of a renewable dicarboxylic acid monomer 5, 5′-[oxybis (methylene)] bis [2-furancarboxylic acid] from d-fructose and its application in …
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[31] Preparation and characterization of polymeric dispersants based on vegetable oils for printing ink application
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[32] Sulfuric acid and Amberlyst-H+ catalyzed condensation reactions of renewable keto acids with paraformaldehyde: synthesis of a new dispiro bis-lactone ring …
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[33] Multiblock Thermoplastic Elastomers Derived from Biodiesel, Poly(propylene glycol), and l-Lactide
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[34] A two-step efficient preparation of a renewable dicarboxylic acid monomer 5, 5′-[oxybis (methylene)] bis [2-furancarboxylic acid] from d-fructose and its application in …
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[35] Fracionamento de lignina de bagaço de cana, caracterização e eletrofiação
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[36] Bio-Based Polyurethane Foams for Heat-Insulating Applications
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[37] Cross-linkable Epoxidized Maleinated Castor Oil: A Renewable Resin Alternative to Unsaturated Polyesters
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[38] Renewable polymeric materials for electronic applications
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[39] Terpolymers based on sunflower oil/alkyl acrylate/styrene as sustainable lubricant additive
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[40] 側鏈含共軛寡聚物之醣類嵌段共聚高分子之合成, 形態與電子元件應用
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