Matthew J. Panzer
Matthew J. Panzer
Chemical & Biological Engineering, Tufts University
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Cited by
Cited by
Ion gel gated polymer thin-film transistors
J Lee, MJ Panzer, Y He, TP Lodge, CD Frisbie
Journal of the American Chemical Society 129 (15), 4532-4533, 2007
Quantum Dot–Polymer Composites for Displays: Inkjet‐Printed Quantum Dot–Polymer Composites for Full‐Color AC‐Driven Displays (Adv. Mater. 21/2009)
V Wood, MJ Panzer, J Chen, MS Bradley, JE Halpert, MG Bawendi, ...
Advanced Materials 21 (21), 2009
Polymer electrolyte-gated organic field-effect transistors: Low-voltage, high-current switches for organic electronics and testbeds for probing electrical transport at high …
MJ Panzer, CD Frisbie
Journal of the American Chemical Society 129 (20), 6599-6607, 2007
Low-voltage operation of a pentacene field-effect transistor with a polymer electrolyte gate dielectric
MJ Panzer, CR Newman, CD Frisbie
Applied Physics Letters 86 (10), 2005
High carrier density and metallic conductivity in poly (3‐hexylthiophene) achieved by electrostatic charge injection
MJ Panzer, CD Frisbie
Advanced Functional Materials 16 (8), 1051-1056, 2006
Selection of metal oxide charge transport layers for colloidal quantum dot LEDs
V Wood, MJ Panzer, JE Halpert, JM Caruge, MG Bawendi, V Bulovic
ACS nano 3 (11), 3581-3586, 2009
Alternating current driven electroluminescence from ZnSe/ZnS: Mn/ZnS nanocrystals
V Wood, JE Halpert, MJ Panzer, MG Bawendi, V Bulovic
Nano letters 9 (6), 2367-2371, 2009
Polymer electrolyte gate dielectric reveals finite windows of high conductivity in organic thin film transistors at high charge carrier densities
MJ Panzer, CD Frisbie
Journal of the American Chemical Society 127 (19), 6960-6961, 2005
Surface chemistry of electrodeposited Cu2O films studied by XPS
C Zhu, A Osherov, MJ Panzer
Electrochimica Acta 111, 771-778, 2013
Exploiting ionic coupling in electronic devices: electrolyte‐gated organic field‐effect transistors
MJ Panzer, CD Frisbie
Advanced Materials 20 (16), 3177-3180, 2008
Air-stable operation of transparent, colloidal quantum dot based LEDs with a unipolar device architecture
V Wood, MJ Panzer, JM Caruge, JE Halpert, MG Bawendi, V Bulovic
Nano letters 10 (1), 24-29, 2010
Highly stretchable and nonvolatile gelatin-supported deep eutectic solvent gel electrolyte-based ionic skins for strain and pressure sensing
H Qin, RE Owyeung, SR Sonkusale, MJ Panzer
Journal of Materials Chemistry C 7 (3), 601-608, 2019
Vibrational spectroscopy reveals electrostatic and electrochemical doping in organic thin film transistors gated with a polymer electrolyte dielectric
LG Kaake, Y Zou, MJ Panzer, CD Frisbie, XY Zhu
Journal of the American Chemical Society 129 (25), 7824-7830, 2007
High charge carrier densities and conductance maxima in single-crystal organic field-effect transistors with a polymer electrolyte gate dielectric
MJ Panzer, CD Frisbie
Applied physics letters 88 (20), 2006
Mass Transfer Properties of Monoliths
R Hahn, M Panzer, E Hansen, J Mollerup, A Jungbauer
Separation Science and Technology 37 (7), 1545-1565, 2002
High-performance, mechanically compliant silica-based ionogels for electrical energy storage applications
AI Horowitz, MJ Panzer
Journal of Materials Chemistry 22 (32), 16534-16539, 2012
Design of stretchable and self-healing gel electrolytes via fully zwitterionic polymer networks in solvate ionic liquids for Li-based batteries
AJ D’Angelo, MJ Panzer
Chemistry of Materials 31 (8), 2913-2922, 2019
Poly (ethylene glycol) diacrylate-supported ionogels with consistent capacitive behavior and tunable elastic response
AF Visentin, MJ Panzer
ACS applied materials & interfaces 4 (6), 2836-2839, 2012
Chemically cross‐linked poly (2‐hydroxyethyl methacrylate)‐supported deep eutectic solvent gel electrolytes for eco‐friendly supercapacitors
H Qin, MJ Panzer
ChemElectroChem 4 (10), 2556-2562, 2017
Poly (dimethylsiloxane)‐supported ionogels with a high ionic liquid loading
AI Horowitz, MJ Panzer
Angewandte Chemie 126 (37), 9938-9941, 2014
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