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Original Articles

The influence of inter-oligomer separation distance on observed hopping mobilities in terthiophene-doped polycarbonate

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Pages 753-766 | Received 20 May 1993, Accepted 01 Jul 1993, Published online: 20 Aug 2006

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A.R. Hepburn. (1995) Study of charge transport in poly[3-(carbazolyl-9-yl)propyl]methylsiloxanes. Philosophical Magazine B 72:1, pages 19-34.
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Articles from other publishers (9)

H.J. Wintle. (1999) Charge motion and trapping in insulators: surface and bulk effects. IEEE Transactions on Dielectrics and Electrical Insulation 6:1, pages 1-10.
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Tetsuya Noda, Ichiro Imae, Naoki Noma & Yasuhiko Shirota. (2004) 5, 5″‐Bis{4‐[bis(4‐methylphenyl)amino]phenyl}2, 2′:5′, 2″‐terthiophene and 5, 5‴‐bis{4‐[Bis(4‐methylphenyl)amino]phenyl}2, 2′:5′, 2″:5″, 2‴‐quaterthiophene as a Novel Family of Amorphous Molecular Materials. Advanced Materials 9:3, pages 239-241.
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P.M. Borsenberger, E.H. Magin & J. Shi. (1996) Charge transport in vapor deposited molecular glasses. Physica B: Condensed Matter 217:3-4, pages 212-220.
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S. Heun & P.M. Borsenberger. (1995) Hole transport in triarylamine doped polymers. Physica B: Condensed Matter 216:1-2, pages 43-52.
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S. Heun, H. Bässler & P. Borsenberger. (1995) The spectral assessment of the origin of the polaronic contribution to charge transport in a highly conjugated triarylamine donor molecule. Chemical Physics 200:1-2, pages 265-270.
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P.M. Borsenberger & M.B. O'Regan. (1995) The role of dipole moments on hole transport in triphenylamine doped poly(styrene). Chemical Physics 200:1-2, pages 257-263.
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P. M. Borsenberger & J. Shi. (2006) Hole Transport in a Vapor Deposited Phenylenediamine Molecular Glass. physica status solidi (b) 191:2, pages 461-469.
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P. M. Borsenberger, W. T. Gruenbaum & E. H. Magin. (2006) Electron Transport in Vapor Deposited Molecular Glasses. The Role of Group Dipole Moments. physica status solidi (b) 190:2, pages 555-563.
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P.M. Borsenberger, W.T. Gruenbaum, E.H. Magin & L.J. Sorriero. (1995) Hole transport in tri-p-tolylamine doped polymers: the role of the polymer dipole moment. Chemical Physics 195:1-3, pages 435-442.
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