D
Daniela Iguchi
Researcher at University of Buenos Aires
Publications - 13
Citations - 415
Daniela Iguchi is an academic researcher from University of Buenos Aires. The author has contributed to research in topics: Polymerization & Aryl. The author has an hindex of 7, co-authored 13 publications receiving 268 citations. Previous affiliations of Daniela Iguchi include Case Western Reserve University & Facultad de Ciencias Exactas y Naturales.
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Journal ArticleDOI
Oxazine Ring-Related Vibrational Modes of Benzoxazine Monomers Using Fully Aromatically Substituted, Deuterated, 15N Isotope Exchanged, and Oxazine-Ring-Substituted Compounds and Theoretical Calculations
Lu Han,Daniela Iguchi,Phwey S. Gil,Tyler R. Heyl,Victoria M. Sedwick,Carlos Rodriguez Arza,Seishi Ohashi,Daniel J. Lacks,Hatsuo Ishida +8 more
TL;DR: This study shows that the disappearance of a 960-900 cm-1 band in infrared spectroscopy is a mixture of the O-C2 stretching of the oxazine ring and the phenolic ring vibrational modes, important for polymerization studies of benzoxazines that utilize vibrationalSpectroscopy.
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Making Benzoxazines Greener: Design, Synthesis, and Polymerization of a Biobased Benzoxazine Fulfilling Two Principles of Green Chemistry
María Laura Salum,Daniela Iguchi,Daniela Iguchi,Carlos Rodriguez Arza,Lu Han,Hatsuo Ishida,Pablo Froimowicz,Pablo Froimowicz +7 more
TL;DR: In this article, Sesamol and furfurylamine were used to synthesize a novel benzoxazine monomer as part of the quest to develop greener benzoxazines monomers simultaneously fulfilling two Principles of Green Chemistry, the use of renewable feedstocks and safer solvents and auxiliaries.
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A truly bio-based benzoxazine derived from three natural reactants obtained under environmentally friendly conditions and its polymer properties
Irlaine Machado,Irlaine Machado,Isabel Hsieh,Eric Rachita,María Laura Salum,Daniela Iguchi,Nicholas Pogharian,Analisa Pellot,Pablo Froimowicz,Verônica Calado,Hatsuo Ishida +10 more
TL;DR: In this article, a truly bio-based benzoxazine was synthesized in which all three reactants necessary to synthesize a benzoxazines are from renewable sources for the first time.
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Quantitative studies on the p-substituent effect of the phenolic component on the polymerization of benzoxazines
TL;DR: In this article, pure monofunctional benzoxazines substituted by either electron donating or withdrawing groups are synthesized to verify the electronic effect on the polymerization behaviors without any complicated factors of the impurities.
Journal ArticleDOI
Development of Hydrogen-Rich Benzoxazine Resins with Low Polymerization Temperature for Space Radiation Shielding.
Daniela Iguchi,Seishi Ohashi,Ghizelle Jane Abarro,Ghizelle Jane Abarro,Xianze Yin,Scott Winroth,Chris E. Scott,Molly Gleydura,Lin Jin,Nithya Kanagasegar,Cherie Lo,Carlos Rodriguez Arza,Pablo Froimowicz,Pablo Froimowicz,Hatsuo Ishida +14 more
TL;DR: Newly developed benzoxazine resin can be polymerized at 120 °C, which meets the low-temperature processing requirements for use with ultrahigh molecular weight polyethylene (UHMWPE) fiber, a hydrogen-rich composite reinforcement.