Michael L. Turner

Affiliations: 
Chemistry University of Manchester, Manchester, England, United Kingdom 
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"Michael Turner"
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Janpatompong Y, Komanduri V, Khan RU, et al. (2023) Synthesis and ring-opening metathesis polymerisation of -alkoxy benzothiadiazole paracyclophane-1,9-dienes. Organic & Biomolecular Chemistry. 21: 3245-3250
Rahmanudin A, Tate DJ, Marcial‐Hernandez R, et al. (2020) Robust High‐Capacitance Polymer Gate Dielectrics for Stable Low‐Voltage Organic Field‐Effect Transistor Sensors Advanced Electronic Materials. 6: 1901127
Neumann PR, Crossley DL, Turner ML, et al. (2019) In vivo optical performance of a new class of near infrared-emitting conjugated polymers: borylated PF8-BT. Acs Applied Materials & Interfaces
Komanduri V, Kumar DR, Tate DJ, et al. (2019) Bidirectional ROMP of Paracylophane-1,9-dienes to Tri- and Penta-Block p-Phenylenevinylene Copolymers Polymer Chemistry. 10: 3497-3502
Dash BP, Hamilton I, Tate DJ, et al. (2019) Benzoselenadiazole and benzotriazole directed electrophilic C–H borylation of conjugated donor–acceptor materials Journal of Materials Chemistry C 7 (3), 718-724. 7: 718-724
Komanduri V, Tate DJ, Marcial-Hernandez R, et al. (2019) Synthesis and ROMP of Benzothiadiazole Paracyclophane-1,9-Dienesto Donor–Acceptor Alternating Arylenevinylene Copolymers Macromolecules. 52: 7137-7144
Renggli C, King P, Henley R, et al. (2019) An experimental study of SO2 reactions with silicate glasses and supercooled melts in the system anorthite-diopside-albite at high temperature Contributions to Mineralogy and Petrology. 174: 3
Ingleson M, Crossley D, Kulapichitr P, et al. (2018) C-H Borylation / Cross Coupling Forms Twisted Donor-Acceptor Compounds Exhibiting Donor Dependent Delayed Emission. Chemistry (Weinheim An Der Bergstrasse, Germany)
Lidster BJ, Hirata S, Matsuda S, et al. (2018) Macrocyclic poly(-phenylenevinylene)s by ring expansion metathesis polymerisation and their characterisation by single-molecule spectroscopy. Chemical Science. 9: 2934-2941
Kumar DR, Lidster BJ, Adams RW, et al. (2018) Understanding the Microstructure of Poly(p-phenylenevinylene)s Prepared by Ring-Opening Metathesis Polymerization Using 13C-Labeled Paracyclophanediene Monomers Macromolecules. 51: 4572-4577
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