Novak, Bruce M.
Permanent URI for this collectionhttps://hdl.handle.net/10735.1/4017
Bruce Novak holds the Distinguished Chair in Natural Sciences and Mathematics and serves as Dean of the school. His research involves polymers and currently encompasses projects in materials chemistry, including macromolecular chirality, optical switches and molecular machines.
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Browsing Novak, Bruce M. by Subject "Monomers"
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Item Synthesis and Characterization of a Novel Fluorinated Bismaleimide via a Nucleophilic Addition-Elimination Reaction and its Polymeric Networks(Royal Society of Chemistry, 1905-07-07) Wu, Jingbo; Xi, Yang; McCandless, Gregory T.; Kulikov, Oleg V.; Menon, Remya; Novak, Bruce M.; Wu, Jingbo; Xi, Yang; McCandless, Gregory T.; Kulikov, Oleg V.; Menon, Remya; Novak, Bruce M.The commercially available octafluorocyclopentene (OFCP) as both a fluorinated building block and a linker has been successfully utilized to prepare a new fluorinated bismaleimide monomer OFCP-BMIvia a nucleophilic addition-elimination reaction. The resulting OFCP-BMI is characterized by 1H, 13C, 19F nuclear magnetic resonance (NMR) spectroscopy, attenuated total reflectance Fourier transform infrared spectroscopy (ATR-FTIR), and high resolution mass spectrometry. The monomer OFCP-BMI reacts with a free radical initiator or self-cures to prepare its resins. No obvious glass transition temperature (Tg) below 260°C was observed for the self-curing resin suggesting that a highly cross-linked polymeric network was formed. The self-curing resin exhibits excellent thermal stability with the on-set weight loss temperature (Ton-setd) of 445°C and a 50% char yield at 800°C under a nitrogen atmosphere. The resin obtained by a free radical polymerization process exhibits less thermal stability and a lower char yield than the self-curing resin due to its lower cross-linking density. The self-curing resin exhibits a low dielectric constant (Dk = 2.5).Item Utilization of a Meldrum's Acid Towards Functionalized Fluoropolymers Possessing Dual Reactivity for Thermal Crosslinking and Post-Polymerization Modification(2015-04-30) Wu, Jingbo; Iacono, Scott T.; McCandless, Gregory T.; Smith, Dennis W., Jr.; Novak, Bruce M.; 253728855 (Smith, DW); 116300023 (Novak, BM); Wu, Jingbo; Iacono, Scott T.; McCandless, Gregory T.; Smith, Dennis W., Jr.; Novak, Bruce M.New thermally cross-linkable and/or post-functionalizable perfluorocyclobutyl (PFCB) polymers containing Meldrum's acid moieties have been successfully prepared via the thermal cyclopolymerization of a new Meldrum's acid functionalized aromatic trifluorovinyl ether (TFVE) monomer.