Lisa Fredin, Ph.D.
Affiliations: | 2012 | Chemistry | Northwestern University, Evanston, IL |
Area:
Catalyic ChemistryGoogle:
"Lisa Fredin"Mean distance: 7.78 | S | N | B | C | P |
Parents
Sign in to add mentorTobin Jay Marks | grad student | 2007-2012 | Northwestern | |
(Nano and Molecular Scale Dielectrics: Encapsulated Inorganic Nanoparticle-Polymer Nanocomposites and Self-Assembled Nanodielectrics, Theory and Experiments.) | ||||
Mark A. Ratner | grad student | 2007-2012 | Northwestern |
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Publications
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Yang WD, Wang C, Fredin LA, et al. (2019) Site-selective CO disproportionation mediated by localized surface plasmon resonance excited by electron beam. Nature Materials |
Yang WD, Wang C, Fredin LA, et al. (2019) Application of Electron-Beam-Excited Localized Surface Plasmon Resonance to Unveil Catalytically Active Sites on Au Nanoparticles Microscopy and Microanalysis. 25: 1450-1451 |
Fredin LA, Li Z, Lanagan MT, et al. (2013) Sustainable high capacitance at high frequencies: metallic aluminum-polypropylene nanocomposites. Acs Nano. 7: 396-407 |
Fredin LA, Li Z, Lanagan MT, et al. (2013) Substantial recoverable energy storage in percolative metallic aluminum-polypropylene nanocomposites Advanced Functional Materials. 23: 3560-3569 |
Fredin LA, Li Z, Ratner MA, et al. (2012) Enhanced energy storage and suppressed dielectric loss in oxide core-shell-polyolefin nanocomposites by moderating internal surface area and increasing shell thickness. Advanced Materials (Deerfield Beach, Fla.). 24: 5946-53 |
Fredin LA, Li Z, Ratner MA, et al. (2012) Energy Storage: Enhanced Energy Storage and Suppressed Dielectric Loss in Oxide Core-Shell-Polyolefin Nanocomposites by Moderating Internal Surface Area and Increasing Shell Thickness (Adv. Mater. 44/2012) Advanced Materials. 24: 5945-5945 |
Schlitz RA, Yoon K, Fredin LA, et al. (2010) Weibull analysis of dielectric breakdown in a self-assembled nanodielectric for organic transistors Journal of Physical Chemistry Letters. 1: 3292-3297 |
Li Z, Fredin LA, Tewari P, et al. (2010) In situ catalytic encapsulation of core-shell nanoparticles having variable shell thickness: Dielectric and energy storage properties of high-permittivity metal oxide nanocomposites Chemistry of Materials. 22: 5154-5164 |