113
Views
51
CrossRef citations to date
0
Altmetric
Original Articles

Charge transport in molecular solids: dynamic and static disorder

&
Pages 831-841 | Received 21 Oct 1991, Accepted 21 Nov 1991, Published online: 20 Aug 2006

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Mengjiao Pei, Jianhang Guo, Bowen Zhang, Sai Jiang, Ziqian Hao, Xin Xu & Yun Li. (2020) Semiconductor/dielectric interface in organic field-effect transistors: charge transport, interfacial effects, and perspectives with 2D molecular crystals. Advances in Physics: X 5:1.
Read now

Articles from other publishers (49)

Luca Giuggioli & V M Kenkre. (2014) Consequences of animal interactions on their dynamics: emergence of home ranges and territoriality. Movement Ecology 2:1.
Crossref
S. D. Baranovskii. (2014) Theoretical description of charge transport in disordered organic semiconductors. physica status solidi (b) 251:3, pages 487-525.
Crossref
Rocco P. Fornari & Alessandro Troisi. (2014) Theory of charge hopping along a disordered polymer chain. Physical Chemistry Chemical Physics 16:21, pages 9997.
Crossref
Anna Köhler & Heinz Bässler. (2011) What controls triplet exciton transfer in organic semiconductors?. J. Mater. Chem. 21:12, pages 4003-4011.
Crossref
S Nešpůrek, J Nožár, A Kadashchuk & I I Fishchuk. (2009) Polaronic transport in polysilanes. Journal of Physics: Conference Series 193, pages 012108.
Crossref
Debarshi Basu & Ananth Dodabalapur. 2010. Organic Electronics. Organic Electronics 29 44 .
Jui-Fen Chang, Henning Sirringhaus, Mark Giles, Martin Heeney & Iain McCulloch. (2007) Relative importance of polaron activation and disorder on charge transport in high-mobility conjugated polymer field-effect transistors. Physical Review B 76:20.
Crossref
I. I. Fishchuk, V. I. Arkhipov, A. Kadashchuk, P. Heremans & H. Bässler. (2007) Analytic model of hopping mobility at large charge carrier concentrations in disordered organic semiconductors: Polarons versus bare charge carriers. Physical Review B 76:4.
Crossref
Veaceslav Coropceanu, Jérôme Cornil, Demetrio A. da Silva Filho, Yoann Olivier, Robert Silbey & Jean-Luc Brédas. (2007) Charge Transport in Organic Semiconductors. Chemical Reviews 107:4, pages 926-952.
Crossref
Paul E. Parris & V. M. Kenkre. (2004) Variational considerations in the study of carrier transport in organic crystals. Physical Review B 70:6.
Crossref
V.M. Kenkre & L. Giuggioli. (2004) Study of some approximation schemes in the spin-boson problem. Chemical Physics 296:2-3, pages 135-148.
Crossref
I. I. Fishchuk, A. Kadashchuk, H. Bässler & S. Nešpůrek. (2003) Nondispersive polaron transport in disordered organic solids. Physical Review B 67:22.
Crossref
V.M Kenkre. (2002) Finite-bandwidth calculations for charge carrier mobility in organic crystals. Physics Letters A 305:6, pages 443-447.
Crossref
V. M. Kenkre & P. E. Parris. (2002) Saturation of charge carrier velocity with increasing electric fields: Theoretical investigations for pure organic crystals. Physical Review B 65:20.
Crossref
P. E. Parris, V. M. Kenkre & D. H. Dunlap. (2001) Nature of Charge Carriers in Disordered Molecular Solids: Are Polarons Compatible with Observations?. Physical Review Letters 87:12.
Crossref
S. Nešpůrek & A. Eckhardt. (2001) Poly(silylene)s: charge carrier photogeneration and transport. Polymers for Advanced Technologies 12:7, pages 427-440.
Crossref
S. Nespurek, J. Sworakowski & A. Kadashchuk. (2001) The influence of dipolar species on charge carrier transport in a linear polysilicon. IEEE Transactions on Dielectrics and Electrical Insulation 8:3, pages 432-441.
Crossref
S. Nešpůrek, H. Valerián, A. Eckhardt, V. Herden & W. Schnabel. (2001) Charge carrier transport in poly[methyl(phenyl)silylene]: the effect of additives. Polymers for Advanced Technologies 12:5, pages 306-318.
Crossref
Liang-Bih Lin, James M. O’Reilly, Edward H. Magin, David S. Weiss & Samson A. Jenekhe. (2000) Charge transport in tri- p -tolylamine doped trinaphthalylbenzene glass . Journal of Applied Physics 88:6, pages 3501-3505.
Crossref
J Stephan, S Schrader & L Brehmer. (2000) Monte Carlo simulations of charge transport in molecular solids: a modified Miller Abrahams type jump rate approach. Synthetic Metals 111-112, pages 353-357.
Crossref
S.A Visser, W.T Gruenbaum, E.H Magin & P.M Borsenberger. (1999) Hole transport in arylamine doped polymers. Chemical Physics 240:1-2, pages 197-203.
Crossref
Scott Sibley, Mark E. Thompson, Paul E. Burrows & Stephen R. Forrest. 1999. Optoelectronic Properties of Inorganic Compounds. Optoelectronic Properties of Inorganic Compounds 29 54 .
P.M. Borsenberger, W.T. Gruenbaum, U. Wolf & H. Bässler. (1998) Hole trapping in tri-p-tolylamine-doped poly(styrene). Chemical Physics 234:1-3, pages 277-284.
Crossref
I. A. Shkrob, A. D. Liu, M. C. Sauer, K. H. Schmidt & A. D. Trifunac. (1998) Hole Injection and Formation of Polarons in Cycloalkane Liquids. The Journal of Physical Chemistry B 102:18, pages 3363-3370.
Crossref
Oliver Hilt & Laurens D.A Siebbeles. (1998) Time and frequency dependent charge carrier mobility on one-dimensional chains with energetic disorder for polaron and Miller–Abrahams type hopping. Chemical Physics 229:2-3, pages 257-263.
Crossref
P. M. Borsenberger, W. T. Gruenbaum, E. H. Magin & S. A. Visser. (1998) Electron Trapping in Acceptor Doped Polymers. physica status solidi (a) 166:2, pages 835-842.
Crossref
V.M. Kenkre. (1998) Four stages in the study of quasiparticle-phonon interactions. Journal of Luminescence 76-77, pages 511-517.
Crossref
P. E. Parris. (1998) Low-field hopping among randomly-distributed sites with uncorrelated energetic disorder. The Journal of Chemical Physics 108:1, pages 218-226.
Crossref
P.M. Borsenberger, J.R. Cowdery-Corvan, E.H. Magin & J.A. Sinicropi. (1997) Hole transport in poly(styrene) doped with p-diarylaminostilbene molecules. Thin Solid Films 307:1-2, pages 215-220.
Crossref
J.A. Sinicropi, J.R. Cowdery-Corvan, E.H. Magin & P.M. Borsenberger. (1997) Hole transport in vapor deposited enamines and enamine doped polymers. Chemical Physics 218:3, pages 331-339.
Crossref
A. Ioannidis & J. P. Dodelet. (1997) Hole Mobilities in Trivalent Metal Phthalocyanine Thin Films. 1. Activated Charge Transport in Time-of-Flight Measurements between 333 and 213 K for Chloroaluminum Phthalocyanine Films with Various Amounts of Disorder. The Journal of Physical Chemistry B 101:6, pages 891-900.
Crossref
P. M. Borsenberger. 1997. Electrical and Related Properties of Organic Solids. Electrical and Related Properties of Organic Solids 25 38 .
P.M. Borsenberger, W.T. Gruenbaum & E.H. Magin. (1996) Hole transport in vapor deposited bis(ditolylaminostyryl)benzene. Physica B: Condensed Matter 228:3-4, pages 226-232.
Crossref
P. E. Burrows, Z. Shen, V. Bulovic, D. M. McCarty, S. R. Forrest, J. A. Cronin & M. E. Thompson. (1996) Relationship between electroluminescence and current transport in organic heterojunction light-emitting devices. Journal of Applied Physics 79:10, pages 7991-8006.
Crossref
V. M. Kenkre, S. Raghavan, A. R. Bishop & M. I. Salkola. (1996) Memory-function approach to interacting quasiparticle-boson systems. Physical Review B 53:9, pages 5407-5419.
Crossref
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.
Crossref
S. Heun & P.M. Borsenberger. (1995) Hole transport in triarylamine doped polymers. Physica B: Condensed Matter 216:1-2, pages 43-52.
Crossref
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.
Crossref
S. Heun & P.M. Borsenberger. (1995) A comparative study of hole transport in vapor-deposited molecular glasses of N,N′,N″,N‴-tetrakis(4-methylphenyl)-(1,1′-biphenyl)-4,4′-diamine and N,N′-diphenyl-N,N′-bis(3-methylphenyl)-(1,1′-biphenyl)-4,4′-diamine. Chemical Physics 200:1-2, pages 245-255.
Crossref
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.
Crossref
David H. Dunlap. (1995) Explanation for the √ E -dependent mobilities of charge transport in molecularly doped polymers . Physical Review B 52:2, pages 939-954.
Crossref
Ralph H. Young & John J. Fitzgerald. (1995) Effect of polar additives on dielectric properties and charge transport in a molecularly doped polymer: A test of dielectric polarization models. The Journal of Chemical Physics 102:15, pages 6290-6300.
Crossref
Ralph H. Young & John J. Fitzgerald. (1995) Effect of polar additives on charge transport in a molecularly doped polymer: Survey of various additives. The Journal of Chemical Physics 102:5, pages 2209-2221.
Crossref
B. Hartenstein, H. Bässler, S. Heun, P. Borsenberger, M. Van der Auweraer & F.C. De Schryver. (1995) Charge transport in molecularly doped polymers at low dopant concentrations: simulation and experiment. Chemical Physics 191:1-3, pages 321-332.
Crossref
M. Van der Auweraer, G. Verbeek, F.C. De Schryver & P.M. Borsenberger. (1995) An assessment of the role of polaron formation to hole transport in a triarylamine doped polymer. Chemical Physics 190:1, pages 31-41.
Crossref
V. M. Kenkre & L. Cruzeiro-Hansson. (1994) Thermal stability of nonlinear structures: A Gibbs analysis of the semiclassical system. Zeitschrift f�r Physik B Condensed Matter 95:3, pages 379-383.
Crossref
S.V. Novikov & A.V. Vannikov. (1994) Concentration dependence of charge carrier mobility in disordered organic matrices. Comparison of a small polaron hopping model with a dipole trap model. Chemical Physics Letters 224:5-6, pages 501-507.
Crossref
Anatolii V Vannikov, Antonina D Grishina & S V Novikov. (1994) Electron transport and electroluminescence in polymer layers. Russian Chemical Reviews 63:2, pages 103-123.
Crossref
D.H. Dunlap & V.M. Kenkre. (1993) Disordered polaron transport: a theoretical description of the motion of photoinjected charges in molecularly doped polymers. Chemical Physics 178:1-3, pages 67-75.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.