
From Top Left:
Chem. Comm. vol. 19 (2003).
J. Polym. Sci.: Polym. Phys. vol. 41, number 21 (2003).
Chem. Mater. vol. 16, number 23 (2004).
Anal. Bioanal. Chem. vol. 383, number 6 (2005).
“Semiconducting Polymers”, Eds. G. Hadziioannou and G.G. Malliaras, WILEY-VCH (2006).
J. Mater. Chem. vol. 17, number 9 (2007).
Mater. Today, vol. 10, issue 11 (2007).
“Organic Semiconductors in Sensor Applications”, Eds. D.A. Bernards, R.M. Owens, and G.G. Malliaras, Springer (2008).
LIST OF PUBLICATIONS
Key: F: film growth, P:
processing and patterning, I: injection and transport, D: devices, S: sensors,
R: review
|
Key |
Paper |
|
D |
H.H. Fong, V. Pozdin, A.
Amassian, G.G. Malliaras, D. Smilgies, M. He, S. Gasper, F. Zhang, M.
Sorensen, “Tetrathienoacene copolymers as high mobility, soluble organic
semiconductors”, J. Am. Chem. Soc.,
in press. |
|
G,D |
A. Papadimitratos, A.S.
Killampalli, A. Amassian, J.L. Mack, G.G. Malliaras and J.R. Engstrom,
“Organic thin film transistors of pentacene films fabricated from a
supersonic molecular beam source”, Appl. Phys. A, in press. |
|
I |
H.H. Fong, A. Papadimitratos, J.
Hwang, A. Kahn, and G.G. Malliaras, “Hole injection in a model
fluorene-triarylamine copolymer”, Adv. Funct. Mater., in press. |
|
D,S,P |
S. Takamatsu, M. Nikolou, D.A.
Bernards, J. DeFranco, G.G. Malliaras, K. Matsumoto, and I. Shimoyama,
“Flexible, organic light-pen input device with integrated display”, Sens.
Actuators B:Chem., in press. |
|
P |
A.A. Zakhidov, J.-K. Lee, H.H. Fong, J.A. DeFranco, M.
Chatzichristidi, P. Taylor, C.K. Ober and G.G. Malliaras, “Hydrofluoroethers
as orthogonal solvents for chemical processing of organic electronic
materials”, Adv. Mater., in press. |
|
P |
J.-K. Lee, M. Chatzichristidi,
A. Zakhidov, P.G. Taylor, JA. DeFranco, H.S. Hwang, H.H. Fong, A.B. Holmes,
G.G. Malliaras, C.K. Ober, “Acid-sensitive semi-perfluoroalkyl resorcinarene:
An imaging material for organic electronics”, J. Am. Chem. Soc. 130, 11564 (2008). |
|
P |
H.S. Hwang, A.A. Zakhidov, J.-K.
Lee, X. André, J.A. DeFranco, H.H. Fong, A.B. Holmes, G.G. Malliaras, and C.K.
Ober, “Dry photolithographic patterning process for organic electronic devices
using supercritical carbon dioxide as a solvent”, J. Mater Chem. 18, 3087 (2008). |
|
D |
A. Brzezinski, J.-T. Lee, J.D.
Slinker, G.G. Malliaras, P.V. Braun, and P. Wiltzius, “Enhanced emission from
fcc fluorescent photonic crystals”, Phys.
Rev. B 77, 233106 (2008). |
|
G |
S. Hong, A. Amassian, A.R. Woll,
S. Bhargava, J.D. Ferguson, G.G. Malliaras, J.D. Brock, and J.R. Engstrom,
“Real time monitoring of pentacene growth on SiO2 from a
supersonic source”, Appl. Phys. Lett. 92, 253304
(2008). |
|
D |
M.T. Lloyd, Y.-F. Lim, and G.G.
Malliaras, “Two-step exciton dissociation in poly(3-hexyl thiophene)/fullerene
heterojunctions”, Appl. Phys. Lett.
92, 143308 (2008). |
|
S,R |
M. Nikolou, and G.G. Malliaras,
“Applications of PEDOT:PSS transistors in chemical and biological sensors”, Chem. Rec. 8, 13 (2008). |
|
D,P |
G.G. Malliaras, J.A. De Franco,
M.J. Jaquith, W.R. Silveira, Y.-W. Zhong, J.M. Moran-Mirabal, H.G. Craighead,
H.D. Abruña, and J.A. Marohn, “Operating mechanism of light-emitting
electrochemical cells – Authors’ response”, Nature Mater. 7, 168 (2008). |
|
D |
E. Zysman-Colman, J.D. Slinker, J.B.
Parker, G.G. Malliaras, and S. Bernhard, “Improved turn-on times of
light-emitting electrochemical cells”, Chem.
Mater. 20, 388 (2008). |
|
D,S |
D.A. Bernards, D.J. Macaya, M. Nikolou, J.A. DeFranco, S. Takamatsu, and G.G. Malliaras, “Enzymatic sensing with organic electrochemical transistors”, J. Mater Chem. 18, 116 (2008). |
|
D,S |
D.A. Bernards and G.G.
Malliaras, “Steady-state and transient behavior of organic electrochemical
transistors”, Adv. Funct. Mater. 17, 3538 (2007). |
|
D |
M.T. Lloyd, J.E. Anthony, and G.G. Malliaras, “Organic photovoltaics from soluble small molecules”, Mater. Today 10, 34 (2007). |
|
D,P |
J.D. Slinker, J.A. DeFranco, M.J. Jaquith, W. Silveira, Y.W. Zhong, J.M. Moran-Mirabal, H.G. Craighead, H.D. Abruña, J.A. Marohn, and G.G. Malliaras, “Direct measurement of electric field distribution in a light-emitting electrochemical cell”, Nature Mater. 6, 894 (2007). |
|
I |
A. Papadimitratos, H.H. Fong,
G.G. Malliaras, A. Yakimov, and A. Duggal, “Degradation of hole injection at
the contact between a conducting polymer and a fluorene copolymer”, Appl.
Phys. Lett. 91, 042116 (2007). |
|
D,P |
M.T. Lloyd, S. Subramanian, A.C.
Mayer, D.A. Mourey, D.J. Herman, A.V. Bapat, J.E. Anthony, and G.G.
Malliaras, “Efficient solution-processed photovoltaic cells based on an
anthradithiophene:fullerene blend”, J. Am. Chem. Soc. 129, 9144
(2007). |
|
P |
P. Bhatnagar, A.D. Strickland,
I. Kim, G.G. Malliaras, and C.A. Batt, “Integrated reactive ion etching to
pattern cross-linked hydrophilic polymer structures for protein
immobilization”, Appl. Phys. Lett. 90, 144107 (2007). |
|
R,D |
J.D. Slinker, J. Rivnay, J.S.
Moskowitz, S. Berhard, H.D. Abruña, and G.G. Malliaras, “Electroluminescent
devices from ionic transition metal complexes”, Mater. Chem. 17,
2976 (2007). |
|
F,P |
D.R. Blasini, J. Rivnay, D.-M.
Smilgies, J.D. Slinker, S. Flores-Torres, H.D. Abruña, and G.G. Malliaras,
“Observation of intermediate-range order in a nominally amorphous molecular
semiconductor film”, J. Mater. Chem. 17, 1458 (2007). |
|
D |
J.M. Moran-Mirabal, J.D. Slinker, J.A. DeFranco, S.S.
Verbridge, R. Ilic, S. Flores-Torres, H.D. Abruña, G.G. Malliaras, and H.G.
Craighead, “Electrospun, light-emitting nanofibers”, NanoLetters, 7, 458 (2007). |
|
S |
D.J.
Macaya, M. Nikolou, S. Takamatsu, J.T. Mabeck, R.M. Owens, G.G. Malliaras,
“Simple glucose sensors with micromolar sensitivity based on organic
electrochemical transistors”, Sens. Actuators B:Chem. 123, 374
(2007). |
|
D |
J.D.
Slinker, J.-S. Kim, S. Flores-Torres, Jared H. Delcamp, H.D. Abruña, R. H.
Friend, and G.G. Malliaras, “In-situ identification of a quencher in an
organic electroluminescent device”, J. Mater. Chem. 17, 76
(2007). |
|
F |
V.
Ignatescu, J.-C.M. Hsu, A.C. Mayer, J.M. Blakely, and G.G. Malliaras, “Using
atomic steps to induce texture in polycrystalline pentacene films”, Appl.
Phys. Lett. 89, 253116 (2006). |
|
F |
S. Wo,
B. Wang, H. Zhou, Y. Wang, J. Bessette, R.L. Headrick, A.C. Mayer, G.G.
Malliaras, and A. Kazimirov, “Study of the interfacial water layer during
pentacene monolayer deposition”, J. Appl. Phys. 100, 093504
(2006). |
|
I |
H.H.
Fong, A. Papadimitratos, and G.G. Malliaras, “Non-dispersive hole transport
in a polyfluorene copolymer with a mobility of 0.01 cm2/Vs”, Appl.
Phys. Lett. 89, 172116 (2006). |
|
D |
M.T.
Lloyd, A.C. Mayer, A. Tayi, A. Bowen, T. Kasen, D. Herman, J.E. Anthony, and
G.G. Malliaras, “Solution processed pentacene derivatives for organic
photovoltaics”, Org. Electr. 7, 243 (2006). |
|
D,P |
D.A. Bernards, S. Flores-Torres, H.D. Abruña, G.G. Malliaras, “Electroluminescence and photovoltaic response in ionic junctions”, Science 313, 1416 (2006). |
|
F |
A.C. Mayer, A. Kasimirov and G.G. Malliaras, “The dynamics of bimodal growth in pentacene thin films”, Phys. Rev. Lett. 97, 105503 (2006). |
|
S,D,P |
D.A. Bernards, G.G. Malliaras, G.E.S. Toombes, and S.M. Gruner, “Gating of an organic transistor through a bilayer membrane with ion channels”, Appl. Phys. Lett. 89, 053505 (2006). |
|
D |
L. Soltzberg, J.D. Slinker, S. Flores-Torres, D.A. Bernards, G.G. Malliaras, H.D. Abruña, J.S. Kim, R.H. Friend, M. Kaplan and V Goldberg, “Identification of a quenching species in ruthenium tris-bipyridine electroluminescent devices”, J. Am. Chem. Soc. 128, 7721 (2006). |
|
F |
A.C. Mayer, R. Ruiz, H. Zhou, R.L. Headrick, A. Kasimirov and G.G. Malliaras, “Dynamics of pentacene growth: Real-time synchrotron x-ray scattering study”, Phys. Rev. B 73, 205307 (2006). |
|
I |
S.V. Novikov, and G.G. Malliaras, “Energetic disorder at the metal/organic interface”, Phys. Rev. B 73, 033308 (2006). |
|
D |
J. D. Slinker, J. Rivnay, J.A. DeFranco, D.A. Bernards, A. Gorodetsky, S.T. Parker, M. Cox, R. Rohl, S. Flores-Torres, H.D. Abruña and G.G. Malliaras, “Direct 120V, 60Hz operation of an organic light emitting device”, J. Appl. Phys. 99, 074502 (2006). |
|
P |
J.A. DeFranco, B.S. Schmid, M. Lipson and G.G. Malliaras, “Patterning of organic electronic materials using photolithography”, Org. Electr. 7, 22 (2006). |
|
I |
S.V. Novikov and G.G. Malliaras, “Transversal and longitudinal diffusion in polar disordered organic materials”, Phys. Stat. Sol. (b) 243, 391 (2006). |
|
I |
S.V. Novikov and G.G. Malliaras, “Transport energy in disordered organic materials”, Phys. Stat. Sol. (b) 243, 387 (2006). |
|
I |
S.V. Novikov and G.G. Malliaras, “Roughness induced disorder at the metal/organic interface”, Phys. Rev. B 73, 033302 (2006). |
|
S |
J.T. Mabeck, and G.G. Malliaras, “Chemical and biological sensors based on organic thin-film transistors”, Anal. Bioanal. Chem. 384, 343 (2006). |
|
D |
A.R. Hosseini, C.Y. Koh, J.D. Slinker, S. Flores-Torres, H.D. Abruña, and G.G. Malliaras, “Addition of a phosphorescent dopant in electroluminescent devices from ionic transition metal complexes”, Chem. Mater. 17, 6114 (2005). |
|
D |
M.S. Lowry, J.I. Goldsmith, J.D. Slinker, R. Rohl, R.A. Pascal Jr, G.G. Malliaras, and S. Bernhard, “Single-layer electroluminescent devices and photoinduced hydrogen production from an ionic iridium(III) complex”, Chem. Mater. 17, 5712 (2005). |
|
F,D |
R. Ruiz, A. Papadimitratos, A.C. Mayer, and G.G. Malliaras, “Thickness dependence of mobility in pentacene transistors”, Adv. Mater. 17, 1795 (2005). |
|
I,D |
C.R. Swartz, S.R. Parkin, J.E. Bullock, J.E. Anthony, A.C. Mayer, and G.G. Malliaras, “Synthesis and characterization of electron deficient pentacenes”, Org. Lett. 7, 3163 (2005). |
|
P,D,S |
J.T. Mabeck, J.A. DeFranco, D.A. Bernards, G.G. Malliaras, S. Hocdé, and C.J. Chase, “Microfluidic gating of an organic electrochemical transistor”, Appl. Phys. Lett. 87, 13503 (2005). |
|
D |
S.T. Parker, J.D. Slinker, M. Lowry, M.P. Cox, S. Bernhard, and G.G. Malliaras, “Improved turn-on times of iridium electroluminescent devices by use of ionic liquids”, Chem. Mater. 17, 3187 (2005). |
|
D,R |
G.G. Malliaras and R.H. Friend, “An organic electronics primer”, Physics Today 58, 53 (2005). |
|
D |
J.D. Slinker, C.Y. Koh, G.G. Malliaras, M.S. Lowry, and S. Bernhard, “Green electroluminescence from an ionic iridium complex”, Appl. Phys. Lett. 86, 173506 (2005). |
|
I,R |
A. Hosseini, M.H. Wong, Y. Shen, and G.G. Malliaras, “Charge injection in doped organic semiconductors”, J. Appl. Phys. 97, 23705 (2005). |
|
D |
A.C. Mayer, M.T. Lloyd, D.J. Herman, T.G. Kasen, and G.G. Malliaras, “Post-fabrication annealing of pentacene based photovoltaic cells”, Appl. Phys. Lett. 85, 6272 (2004). |
|
F |
R. Ruiz, A.C. Mayer, G.G. Malliaras, B. Nickel, G. Scoles, A. Kazimirov, H. Kim, R.L. Headrick, and Z. Islam, “Structure of pentacene thin films”, Appl. Phys. Lett. 85, 4926 (2004). |
|
F,R |
R. Ruiz, D. Choudhary, B. Nickel, T. Toccoli, K.-C. Chang, A.C. Mayer, P. Clancy, J.M. Blakely, R.L. Headrick, S. Iannotta, and G.G. Malliaras, “Pentacene film growth”, Chem. Mater. 16, 4497 (2004). |
|
F |
A.C. Mayer, R. Ruiz, R.L. Headrick, A. Kazimirov, and G.G. Malliaras, “Early stages of pentacene growth on SiO2”, Org. Electr. 5, 257 (2004). |
|
D |
S.R. Scully, M.T. Lloyd, R. Herrera, E.P. Giannelis, and G.G. Malliaras, “Dye-sensitized solar cells employing a highly conductive and mechanically robust nanocomposite gel-electrolyte”, Synth. Metals 144, 291 (2004). |
|
S |
Z.T. Zhu, J.T. Mason, C. Zhu, N.C. Cady, C.A. Batt, and G.G. Malliaras, “A simple poly(3,4-ethylene dioxythiophene)/poly(styrene sulfonic acid) transistor for glucose sensing at neutral pH”, Chem. Comm. 13, 1556 (2004). |
|
D |
D.A. Bernards, J.D. Slinker, G.G. Malliaras, S. Flores-Torres, and H.D. Abruña, “Cascaded light emitting devices based on ruthenium complexes”, Appl. Phys. Lett. 84, 4980 (2004). |
|
P,I,D |
D.A. Bernards, T. Biegala, Z.A. Samuels, J.D. Slinker, G.G. Malliaras, S. Flores-Torres, H.D. Abruña, and J.A. Rogers, “Organic light emitting devices with laminated top contacts”, Appl. Phys. Lett. 84, 3675 (2004). |
|
D |
J.D. Slinker, G.G. Malliaras, S. Flores-Torres, H.D. Abruña, W. Chunwachirasiri and M.J. Winokur, “Temperature dependence of tris(2,2’-bipyridine)ruthenium (II) device characteristics”, J. Appl. Phys. 95, 4381 (2004). |
|
D |
J.D. Slinker, A.A. Gorodetsky, M.S. Lowry, J. Wang, S. Parker, R. Rohl, S. Bernhard and G.G. Malliaras, “Efficient yellow electroluminescence from a single layer of a cyclo-metalated iridium complex”, J. Am. Chem. Soc. 126, 2763 (2004). |
|
I,D |
A. Gorodetsky, S. Parker, J. Slinker, D. Bernards, M.H. Wong, S. Flores-Torres, H.D. Abruña, and G.G. Malliaras, “Contact issues in electroluminescent devices from transition metal complexes”, Appl. Phys. Lett. 84, 807 (2004). |
|
I,R |
Y. Shen, A. Hosseini, M.H. Wong, and G.G. Malliaras, “How to make ohmic contacts to organic semiconductors”, ChemPhysChem. 5, 16 (2004). |
|
D |
Y. Zhang, J.T. Petta, D. Ralph, and G.G. Malliaras, “30 nm channel length pentacene transistors”, Adv. Mater. 15, 1632 (2003). |
|
D |
J.A. Barron, S.Bernhard, P.L. Houston, H.D. Abruña, J. Ruglovsky, and G.G. Malliaras “Electroluminescence in ruthenium(II) dendrimers”, J. Phys. Chem. 107, 8130 (2003). |
|
D,R |
J. Slinker, D. Bernards, P.L. Houston, H.D. Abruña, S. Bernhard and G.G. Malliaras, “Solid state electroluminescent devices based on transition metal complexes”, Chem. Comm. 19, 2392 (2003). |
|
I |
Y. Shen, K. Diest, M.H. Wong, B.R. Hsieh, D.H. Dunlap, and G.G. Malliaras, “Charge transport in doped organic semiconductors”, Phys. Rev. B. 68, 81204(R) (2003). |
|
D |
K.W. Lee, J. Slinker, A.A. Gorodetsky, S. Flores-Torres, H.D. Abruña, P.L. Houston, and G.G. Malliaras, “Photophysical properties of tris(bipyridyl)ruthenium(II) thin films and devices”, PCCP 5, 2706 (2003). |
|
D,S |
Z.T. Zhu, J.T. Mason, R. Dieckmann, and G.G. Malliaras, “Humidity sensors based on pentacene thin film transistors”, Appl. Phys. Lett. 81, 4643 (2002). |
|
D |
S. Bernhard, J.A. Barron, P.L. Houston, H.D. Abruña, J. Ruglovsky, X. Gao, and G.G. Malliaras, “Electroluminescence in ruthenium(II) complexes”, J. Am. Chem. Soc. 124, 13624 (2002). |
|
D |
S. Bernhard, X. Gao, G.G. Malliaras, and H.D. Abruña, “Efficient electroluminescent devices based on a chelated osmium(II) complex”, Adv. Mater. 14, 433 (2002). |
|
D |
C.H. Lee, S.W. Kim, F. Bloom, G.G. Malliaras, and S.Y. Oh, “Improvement in the efficiency of organic light emitting diodes consisting of copolymer having hole and electron transporting moieties and CsF as an injection material” Mol. Cryst. Liq. Cryst. 377, 77 (2002). |
|
I,D |
M.W. Klein, D.H. Dunlap, and G.G. Malliaras, “Space charge limited current in the single electron regime”, Phys. Rev. B. 64, 195332 (2001). |
|
I |
G.G. Malliaras, Y. Shen, D.H. Dunlap, H. Murata, and Z.H. Kafafi, “Non-dispersive electron transport in Alq3”, Appl. Phys. Lett. 79, 2582 (2001). |
|
F,D |
M.L. Swiggers, G. Xia, J.D. Slinker, A.A. Gorodetsky, G.G. Malliaras, R.L. Headrick, B.T. Weslowski, R.N. Shashidhar, and C.S. Dulcey, “Orientation of pentacene films using surface alignment layers and its influence on thin film transistor characteristics”, Appl. Phys. Lett. 79, 1300 (2001). |
|
I,D |
Y. Shen, D.B. Jacobs, G.G. Malliaras, G. Koley, M.G. Spencer, and A. Ioannidis, “Modification of ITO for improved hole injection in organic light emitting diodes”, Adv. Mater. 13, 1234 (2001). |
|
I,D |
H. Murata, G.G. Malliaras, M. Uchida, Y. Shen,, and Z.H. Kafafi, “Non-dispersive and air-stable electron transport in an amorphous organic semiconductor”, Chem. Phys. Lett. 339, 161 (2001). |
|
I |
Y. Shen, M.W. Klein, D.B. Jacobs, J.C. Scott, and G.G. Malliaras, “Mobility-dependent charge injection into an organic semiconductor”, Phys. Rev. Lett. 86, 3867 (2001). |
|
I |
D.B. Jacobs, Y. Shen, and G.G. Malliaras, “Characterization and improvement of the contact between Indium Tin Oxide and triphenyl diamine doped polycarbonate”, J. Photochem. Photobiol. A: Chem. 144, 53 (2001). |
|
I,D |
P. Piromreun, H. Oh, Y. Shen, G.G. Malliaras, J.C. Scott, and P.J. Brock, “The role of CsF on electron injection into a conjugated polymer”, Appl. Phys. Lett. 77, 2403 (2000). |