Mitchell A. Winnik

Affiliations: 
1970- Chemistry University of Toronto, Toronto, ON, Canada 
Area:
polymer science, self-assembly, and nanochemistry
Website:
https://www.chem.utoronto.ca/ppl/faculty_profile.php?id=74
Google:
"Mitchell A Winnik"
Bio:

https://www.chem.utoronto.ca/staff/MAW/
https://www.chem.utoronto.ca/staff/MAW/biography.htm

Mean distance: 6.5
 
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Publications

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Xu J, Zhou H, Yu Q, et al. (2019) Synergistic self-seeding in one-dimension: a route to patchy and block comicelles with uniform and controllable length. Chemical Science. 10: 2280-2284
Gould OEC, Box SJ, Boott CE, et al. (2019) Manipulation and Deposition of Complex, Functional Block Copolymer Nanostructures using Optical Tweezers. Acs Nano
Winnik MA, Jia L, Guérin G, et al. (2018) Creating biomorphic barbed and branched mesostructures in solution through block copolymer crystallization. Angewandte Chemie (International Ed. in English)
Boott CE, Leitao EM, Hayward DW, et al. (2018) Probing the Growth Kinetics for the Formation of Uniform 1D Block Copolymer Nanoparticles by Living Crystallization-Driven Self-Assembly. Acs Nano
Cruz M, Xu J, Yu Q, et al. (2018) Visualizing Nanoscale Coronal Segregation in Rod-Like Micelles Formed by Co-Assembly of Binary Block Copolymer Blends. Macromolecular Rapid Communications. e1800397
Guerin G, Rupar PA, Manners I, et al. (2018) Explosive dissolution and trapping of block copolymer seed crystallites. Nature Communications. 9: 1158
Xu J, Zhou H, Yu Q, et al. (2018) Competitive Self-Assembly Kinetics as a Route To Control the Morphology of Core-Crystalline Cylindrical Micelles. Journal of the American Chemical Society
Li X, Wolanin PJ, MacFarlane LR, et al. (2017) Erratum: Uniform electroactive fibre-like micelle nanowires for organic electronics. Nature Communications. 8: 16142
Li X, Wolanin PJ, MacFarlane LR, et al. (2017) Uniform electroactive fibre-like micelle nanowires for organic electronics. Nature Communications. 8: 15909
He X, He Y, Hsiao MS, et al. (2017) Complex and Hierarchical 2D Assemblies via Crystallization-Driven Self-Assembly of Poly(L-lactide) Homopolymers with Charged Termini. Journal of the American Chemical Society
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