Matthew D. Green, PhD

2014- Chemical Engineering Arizona State University, Tempe, AZ, United States 
"Matthew Green"
Mean distance: 9.69
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Foster AA, Greco CT, Green MD, et al. (2015) Light-Mediated Activation of siRNA Release in Diblock Copolymer Assemblies for Controlled Gene Silencing. Advanced Healthcare Materials. 4: 2605
Foster AA, Greco CT, Green MD, et al. (2015) Light-mediated activation of siRNA Release in diblock copolymer assemblies for controlled gene silencing. Advanced Healthcare Materials. 4: 760-70
Green MD, Foster AA, Greco CT, et al. (2014) Catch and Release: Photocleavable Cationic Diblock Copolymers as a Potential Platform for Nucleic Acid Delivery. Polymer Chemistry
Green MD. (2013) Tailoring ionic block copolymer structure and function for therapeutics delivery and energy applications Education Division 2013 - Core Programming Area At the 2013 Aiche Annual Meeting: Global Challenges For Engineering a Sustainable Future. 151-152
Hemp ST, Allen MH, Green MD, et al. (2012) Phosphonium-containing polyelectrolytes for nonviral gene delivery. Biomacromolecules. 13: 231-8
Young TT, Sarles SA, Wu T, et al. (2012) Study of the effects of ionic liquids on lipid bilayers Proceedings of Spie - the International Society For Optical Engineering. 8339
Green MD, Choi JH, Winey KI, et al. (2012) Synthesis of imidazolium-containing aba triblock copolymers: Role of charge placement, charge density, and ionic liquid incorporation Macromolecules. 45: 4749-4757
Green MD, Wang D, Hemp ST, et al. (2012) Synthesis of imidazolium ABA triblock copolymers for electromechanical transducers Polymer (United Kingdom). 53: 3677-3686
Salas-De La Cruz D, Green MD, Ye Y, et al. (2012) Correlating backbone-to-backbone distance to ionic conductivity in amorphous polymerized ionic liquids Journal of Polymer Science, Part B: Polymer Physics. 50: 338-346
Green MD, Schreiner C, Long TE. (2011) Thermal, rheological, and ion-transport properties of phosphonium-based ionic liquids. The Journal of Physical Chemistry. A. 115: 13829-35
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