The impact of molecular weight on microstructure and charge transport in semicrystalline polymer semiconductors–poly(3-hexylthiophene), a model study

[1]  M. Toney,et al.  A general relationship between disorder, aggregation and charge transport in conjugated polymers. , 2013, Nature materials.

[2]  P. Dubois,et al.  Controllable processes for generating large single crystals of poly(3-hexylthiophene). , 2012, Angewandte Chemie.

[3]  S. Mannsfeld,et al.  Quantitative determination of organic semiconductor microstructure from the molecular to device scale. , 2012, Chemical reviews.

[4]  N. Stingelin On the phase behaviour of organic semiconductors , 2012 .

[5]  Martin Brinkmann,et al.  Structure and morphology control in thin films of regioregular poly(3‐hexylthiophene) , 2011 .

[6]  R. J. Kline,et al.  Quantitative analysis of lattice disorder and crystallite size in organic semiconductor thin films , 2011 .

[7]  P. Smith,et al.  Enhanced Charge-Carrier Mobility in High-Pressure-Crystallized Poly(3-hexylthiophene) , 2011 .

[8]  R. J. Kline,et al.  Structural Origin of Gap States in Semicrystalline Polymers and the Implications for Charge Transport , 2010, 1012.2240.

[9]  Liyan Yu,et al.  Solid‐State Processing of Organic Semiconductors , 2010, Advanced materials.

[10]  Zhenan Bao,et al.  Organic Semiconductor Growth and Morphology Considerations for Organic Thin‐Film Transistors , 2010, Advanced materials.

[11]  M. Toney,et al.  Charge‐Transport Anisotropy Due to Grain Boundaries in Directionally Crystallized Thin Films of Regioregular Poly(3‐hexylthiophene) , 2009 .

[12]  Jenny Clark,et al.  Determining exciton bandwidth and film microstructure in polythiophene films using linear absorption spectroscopy , 2009, 0903.1670.

[13]  Donal D. C. Bradley,et al.  The Effect of Poly(3‐hexylthiophene) Molecular Weight on Charge Transport and the Performance of Polymer:Fullerene Solar Cells , 2008 .

[14]  R. Friend,et al.  Role of intermolecular coupling in the photophysics of disordered organic semiconductors: aggregate emission in regioregular polythiophene. , 2007, Physical review letters.

[15]  Martin Brinkmann,et al.  Effect of Molecular Weight on the Structure and Morphology of Oriented Thin Films of Regioregular Poly(3‐hexylthiophene) Grown by Directional Epitaxial Solidification , 2007 .

[16]  Jenny Clark,et al.  Molecular-weight dependence of interchain polaron delocalization and exciton bandwidth in high-mobility conjugated polymers , 2006 .

[17]  A. Schenning,et al.  Supramolecular Electronic Coupling in Chiral Oligothiophene Nanostructures , 2006 .

[18]  M. Toney,et al.  Highly oriented crystals at the buried interface in polythiophene thin-film transistors , 2006 .

[19]  Bo Li,et al.  Nanostructure dependence of field-effect mobility in regioregular poly(3-hexylthiophene) thin film field effect transistors. , 2006, Journal of the American Chemical Society.

[20]  G. Wegner,et al.  Effect of Molecular Weight on the Structure and Crystallinity of Poly(3-hexylthiophene) , 2006 .

[21]  R. J. Kline,et al.  Morphology and Charge Transport in Conjugated Polymers , 2006 .

[22]  Jean M. J. Fréchet,et al.  Dependence of Regioregular Poly(3-hexylthiophene) Film Morphology and Field-Effect Mobility on Molecular Weight , 2005 .

[23]  J. Pflaum,et al.  Effect of Molecular Weight and Annealing of Poly(3‐hexylthiophene)s on the Performance of Organic Field‐Effect Transistors , 2004 .

[24]  Niyazi Serdar Sariciftci,et al.  Organic solar cells: An overview , 2004 .

[25]  Jean M. J. Fréchet,et al.  Controlling the Field‐Effect Mobility of Regioregular Polythiophene by Changing the Molecular Weight , 2003 .

[26]  Z. Bao,et al.  Synthetic chemistry for ultrapure, processable, and high-mobility organic transistor semiconductors. , 2001, Accounts of chemical research.

[27]  Mena-Osteritz,et al.  Two-Dimensional Crystals of Poly(3-Alkyl- thiophene)s: Direct Visualization of Polymer Folds in Submolecular Resolution This work was supported by the European Union in the framework of Frequent-Esprit 24793. , 2000, Angewandte Chemie.

[28]  S. Forrest,et al.  Highly efficient phosphorescent emission from organic electroluminescent devices , 1998, Nature.

[29]  H. Sirringhaus,et al.  Integrated optoelectronic devices based on conjugated polymers , 1998, Science.

[30]  Gilles Horowitz,et al.  Organic Field‐Effect Transistors , 1998 .

[31]  C. A. Walsh,et al.  Efficient photodiodes from interpenetrating polymer networks , 1995, Nature.

[32]  D. S. Pearson,et al.  Molecular characterization of poly(3-hexylthiophene) , 1991 .

[33]  R. N. Marks,et al.  Light-emitting diodes based on conjugated polymers , 1990, Nature.

[34]  S. Edwards,et al.  The Theory of Polymer Dynamics , 1986 .

[35]  C. Tang Two‐layer organic photovoltaic cell , 1986 .

[36]  A. Keller,et al.  The Crystallization of Ultralong Normal Paraffins: The Onset of Chain Folding , 1985, Science.

[37]  P. Gennes Scaling Concepts in Polymer Physics , 1979 .

[38]  D. Y. Yoon,et al.  Molecular morphology in semicrystalline polymers , 1978 .

[39]  B. Wunderlich,et al.  A Study of Equilibrium Melting of Polyethylene , 1977 .

[40]  C. Buckley,et al.  Melting behaviour of low molecular weight poly (ethylene-oxide) fractions , 1976 .

[41]  D. Bassett,et al.  Crystallization of polyethylene at elevated pressures , 1971 .

[42]  B. Wunderlich,et al.  Extended‐chain crystals. III. Size distribution of polyethylene crystals grown under elevated pressure , 1969 .

[43]  E. Passaglia,et al.  Kinetics of polymer crystallization from solution and the melt , 1969 .

[44]  J. Hoffman,et al.  Rate of Spherulitic Crystallization with Chain Folds in Polychlorotrifluoroethylene , 1962 .

[45]  P. Flory On the Morphology of the Crystalline State in Polymers , 1962 .

[46]  P. Geil,et al.  Recrystallization of polyethylene during annealing , 1960 .

[47]  B. Warren,et al.  The Separation of Cold‐Work Distortion and Particle Size Broadening in X‐Ray Patterns , 1952 .

[48]  B. Warren,et al.  The Effect of Cold‐Work Distortion on X‐Ray Patterns , 1950 .

[49]  Garry Rumbles,et al.  The influence of solid-state microstructure on the origin and yield of long-lived photogenerated charge in neat semiconducting polymers , 2012 .

[50]  heterojunctions,et al.  Polymer photovoltaic cells - enhanced efficiencies via a network of internal donor-acceptor heterojunctions , 2001 .