Michael L. McGraw Data-verified
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Assistant Professor of Organic Chemistry
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Biography and Research Information
OverviewAI-generated summary
Michael L. McGraw's research focuses on the precision synthesis of polymers, particularly cyclic block copolymers and thermosets. His work investigates mechanisms for controlling polymer chain length, sequence, and topology through techniques like Lewis pair polymerization. McGraw has published on the orthogonal (de)polymerization of hybrid monomers and the development of biomass-derivable thermosets for applications such as wind blade recycling. He also studies the thermomechanical properties and synergistic dual-cure reactions for fabricating advanced thermoset materials. McGraw's scholarship metrics include an h-index of 15, with 24 total publications and over 1,000 citations. He collaborates with other researchers at the University of Arkansas at Fayetteville, including Braden D. Pickle, Mohsen Saeidi, and Nicholas J. Tabbah.
Metrics
- h-index: 15
- Publications: 24
- Citations: 1,042
Selected Publications
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Sustainable Polyaddition Path to Polyesters via Catalytic Homocoupling of Renewable Dicrotonate Monomers (2025)
Collaboration Network
Top Collaborators
- Closing the “One Monomer–Two Polymers–One Monomer” Loop via Orthogonal (De)polymerization of a Lactone/Olefin Hybrid
- Synchronous Control of Chain Length/Sequence/Topology for Precision Synthesis of Cyclic Block Copolymers from Monomer Mixtures
- Manufacture and testing of biomass-derivable thermosets for wind blade recycling
- Mechanism of Spatial and Temporal Control in Precision Cyclic Vinyl Polymer Synthesis by Lewis Pair Polymerization
- Thermomechanical activation achieving orthogonal working/healing conditions of nanostructured tri-block copolymer thermosets
Showing 5 of 9 shared publications
- Closing the “One Monomer–Two Polymers–One Monomer” Loop via Orthogonal (De)polymerization of a Lactone/Olefin Hybrid
- Synchronous Control of Chain Length/Sequence/Topology for Precision Synthesis of Cyclic Block Copolymers from Monomer Mixtures
- Mechanism of Spatial and Temporal Control in Precision Cyclic Vinyl Polymer Synthesis by Lewis Pair Polymerization
- Thermomechanical activation achieving orthogonal working/healing conditions of nanostructured tri-block copolymer thermosets
- <b>Compounded Interplay of Kinetic and Thermodynamic Control over Comonomer Sequences by Lewis Pair Polymerization</b>
Showing 5 of 7 shared publications
- Mechanism of Spatial and Temporal Control in Precision Cyclic Vinyl Polymer Synthesis by Lewis Pair Polymerization
- <b>Compounded Interplay of Kinetic and Thermodynamic Control over Comonomer Sequences by Lewis Pair Polymerization</b>
- Cyclic and Linear Tetrablock Copolymers Synthesized at Speed and Scale by Lewis Pair Polymerization of a One-Pot (Meth)acrylic Mixture and Characterized at Multiple Levels
- Mechanism of Spatial and Temporal Control in Precision Cyclic Vinyl Polymer Synthesis by Lewis Pair Polymerization
- Mechanism of Spatial and Temporal Control in Precision Cyclic Vinyl Polymer Synthesis by Lewis Pair Polymerization
- <b>Compounded Interplay of Kinetic and Thermodynamic Control over Comonomer Sequences by Lewis Pair Polymerization</b>
- Mechanism of Spatial and Temporal Control in Precision Cyclic Vinyl Polymer Synthesis by Lewis Pair Polymerization
- Mechanism of Spatial and Temporal Control in Precision Cyclic Vinyl Polymer Synthesis by Lewis Pair Polymerization
- <b>Compounded Interplay of Kinetic and Thermodynamic Control over Comonomer Sequences by Lewis Pair Polymerization</b>
- Mechanism of Spatial and Temporal Control in Precision Cyclic Vinyl Polymer Synthesis by Lewis Pair Polymerization
- <b>Compounded Interplay of Kinetic and Thermodynamic Control over Comonomer Sequences by Lewis Pair Polymerization</b>
- Cyclic and Linear Tetrablock Copolymers Synthesized at Speed and Scale by Lewis Pair Polymerization of a One-Pot (Meth)acrylic Mixture and Characterized at Multiple Levels
- Manufacture and testing of biomass-derivable thermosets for wind blade recycling
- Synergistic Dual-Cure Reactions for the Fabrication of Thermosets by Chemical Heating
- Thermomechanical activation achieving orthogonal working/healing conditions of nanostructured tri-block copolymer thermosets
- Closing the “One Monomer–Two Polymers–One Monomer” Loop via Orthogonal (De)polymerization of a Lactone/Olefin Hybrid
- <b>Compounded Interplay of Kinetic and Thermodynamic Control over Comonomer Sequences by Lewis Pair Polymerization</b>
- <b>Compounded Interplay of Kinetic and Thermodynamic Control over Comonomer Sequences by Lewis Pair Polymerization</b>
- Cyclic and Linear Tetrablock Copolymers Synthesized at Speed and Scale by Lewis Pair Polymerization of a One-Pot (Meth)acrylic Mixture and Characterized at Multiple Levels
- Cyclic and Linear Tetrablock Copolymers Synthesized at Speed and Scale by Lewis Pair Polymerization of a One-Pot (Meth)acrylic Mixture and Characterized at Multiple Levels
- Cyclic and Linear Tetrablock Copolymers Synthesized at Speed and Scale by Lewis Pair Polymerization of a One-Pot (Meth)acrylic Mixture and Characterized at Multiple Levels
- Synergistic Dual-Cure Reactions for the Fabrication of Thermosets by Chemical Heating
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