Switchable Catalysis Improves the Properties of CO2-Derived Polymers: Poly(cyclohexene carbonate-b-ε-decalactone-b-cyclohexene carbonate) Adhesives … GS Sulley, GL Gregory, TTD Chen, L Peña Carrodeguas, G Trott, ... Journal of the American Chemical Society 142 (9), 4367-4378, 2020 | 228 | 2020 |
Sequence control from mixtures: switchable polymerization catalysis and future materials applications AC Deacy, GL Gregory, GS Sulley, TTD Chen, CK Williams Journal of the American Chemical Society 143 (27), 10021-10040, 2021 | 156 | 2021 |
Polymers from sugars: cyclic monomer synthesis, ring-opening polymerisation, material properties and applications GL Gregory, EM López-Vidal, A Buchard Chemical Communications 53 (14), 2198-2217, 2017 | 152 | 2017 |
2020 roadmap on solid-state batteries M Pasta, D Armstrong, ZL Brown, J Bu, MR Castell, P Chen, A Cocks, ... Journal of Physics: Energy 2 (3), 032008, 2020 | 135 | 2020 |
Polymers from Sugars and CO2: Synthesis and Polymerization of a d-Mannose-Based Cyclic Carbonate GL Gregory, LM Jenisch, B Charles, G Kociok-Kohn, A Buchard Macromolecules 49 (19), 7165-7169, 2016 | 122 | 2016 |
Synthesis of 5-to 8-membered cyclic carbonates from diols and CO2: A one-step, atmospheric pressure and ambient temperature procedure TM McGuire, EM López-Vidal, GL Gregory, A Buchard Journal of CO2 Utilization 27, 283-288, 2018 | 101 | 2018 |
Bio‐based and degradable block polyester pressure‐sensitive adhesives TTD Chen, LP Carrodeguas, GS Sulley, GL Gregory, CK Williams Angewandte Chemie 132 (52), 23656-23661, 2020 | 100 | 2020 |
Easy access to oxygenated block polymers via switchable catalysis T Stößer, GS Sulley, GL Gregory, CK Williams Nature communications 10 (1), 2668, 2019 | 99 | 2019 |
Triblock polyester thermoplastic elastomers with semi-aromatic polymer end blocks by ring-opening copolymerization GL Gregory, GS Sulley, LP Carrodeguas, TTD Chen, A Santmarti, ... Chemical Science 11 (25), 6567-6581, 2020 | 96 | 2020 |
Synthesis of 6-membered cyclic carbonates from 1, 3-diols and low CO 2 pressure: A novel mild strategy to replace phosgene reagents GL Gregory, M Ulmann, A Buchard Rsc Advances 5 (49), 39404-39408, 2015 | 85 | 2015 |
Polymers from sugars and CO 2: Ring-opening polymerisation and copolymerisation of cyclic carbonates derived from 2-deoxy-d-ribose GL Gregory, G Kociok-Köhn, A Buchard Polymer Chemistry 8 (13), 2093-2104, 2017 | 84 | 2017 |
High elasticity, chemically recyclable, thermoplastics from bio-based monomers: carbon dioxide, limonene oxide and ε-decalactone LP Carrodeguas, TTD Chen, GL Gregory, GS Sulley, CK Williams Green Chemistry 22 (23), 8298-8307, 2020 | 76 | 2020 |
Catalytic synergy using Al (III) and group 1 metals to accelerate epoxide and anhydride ring-opening copolymerizations WT Diment, GL Gregory, RWF Kerr, A Phanopoulos, A Buchard, ... ACS Catalysis 11 (20), 12532-12542, 2021 | 57 | 2021 |
CO 2-Driven stereochemical inversion of sugars to create thymidine-based polycarbonates by ring-opening polymerisation GL Gregory, EM Hierons, G Kociok-Köhn, RI Sharma, A Buchard Polymer Chemistry 8 (10), 1714-1721, 2017 | 52 | 2017 |
Buffering Volume Change in Solid-State Battery Composite Cathodes with CO2-Derived Block Polycarbonate Ethers GL Gregory, H Gao, B Liu, X Gao, GJ Rees, M Pasta, PG Bruce, ... Journal of the American Chemical Society 144 (38), 17477-17486, 2022 | 47 | 2022 |
Polymers from sugars and CS 2: synthesis and ring-opening polymerisation of sulfur-containing monomers derived from 2-deoxy-d-ribose and d-xylose EM López-Vidal, GL Gregory, G Kociok-Köhn, A Buchard Polymer Chemistry 9 (13), 1577-1582, 2018 | 45 | 2018 |
Block Poly (carbonate‐ester) Ionomers as High‐Performance and Recyclable Thermoplastic Elastomers GL Gregory, GS Sulley, J Kimpel, M Łagodzińska, L Häfele, ... Angewandte Chemie International Edition 61 (47), e202210748, 2022 | 29 | 2022 |
Exploiting Sodium Coordination in Alternating Monomer Sequences to Toughen Degradable Block Polyester Thermoplastic Elastomers GL Gregory, CK Williams Macromolecules 55 (6), 2290-2299, 2022 | 26 | 2022 |
Switchable Polymerization Catalysis Using a Tin(II) Catalyst and Commercial Monomers to Toughen Poly(l-lactide) N Yuntawattana, GL Gregory, LP Carrodeguas, CK Williams ACS Macro Letters 10 (7), 774-779, 2021 | 23 | 2021 |
Toughening CO2‐Derived Copolymer Elastomers Through Ionomer Networking KC Poon, GL Gregory, GS Sulley, F Vidal, CK Williams Advanced Materials 35 (36), 2302825, 2023 | 16 | 2023 |