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1.
Nano Lett ; 12(3): 1566-70, 2012 03 14.
Artículo en Inglés | MEDLINE | ID: mdl-22375600

RESUMEN

We compare the solar cell performance of several polymers with the conventional electron acceptor phenyl-C61-butyric acid methyl ester (PCBM) to fullerenes with one to three indene adducts. We find that the multiadduct fullerenes with lower electron affinity improve the efficiency of the solar cells only when they do not intercalate between the polymer side chains. When they intercalate between the side chains, the multiadduct fullerenes substantially reduce solar cell photocurrent. We use X-ray diffraction to determine how the fullerenes are arranged within crystals of poly-(2,5-bis(3-tetradecylthiophen-2-yl)thieno[3,2-b]thiophene) (PBTTT) and suggest that poor electron transport in the molecularly mixed domains may account for the reduced solar cell performance of blends with fullerene intercalation.


Asunto(s)
Suministros de Energía Eléctrica , Fulerenos/química , Nanoestructuras/química , Nanoestructuras/ultraestructura , Polímeros/química , Energía Solar , Transferencia de Energía , Diseño de Equipo , Análisis de Falla de Equipo , Tamaño de la Partícula
2.
J Am Chem Soc ; 134(14): 6177-90, 2012 04 11.
Artículo en Inglés | MEDLINE | ID: mdl-22372611

RESUMEN

We use a systematic approach that combines experimental X-ray diffraction (XRD) and computational modeling based on molecular mechanics and two-dimensional XRD simulations to develop a detailed model of the molecular-scale packing structure of poly(2,5-bis (3-tetradecylthiophene-2-yl)thieno[3,2-b]thiophene) (PBTTT-C(14)) films. Both uniaxially and biaxially aligned films are used in this comparison and lead to an improved understanding of the molecular-scale orientation and crystal structure. We then examine how individual polymer components (i.e., conjugated backbone and alkyl side chains) contribute to the complete diffraction pattern, and how modest changes to a particular component orientation (e.g., backbone or side-chain tilt) influence the diffraction pattern. The effects on the polymer crystal structure of varying the alkyl side-chain length from C(12) to C(14) and C(16) are also studied. The accurate determination of the three-dimensional polymer structure allows us to examine the PBTTT electronic band structure and intermolecular electronic couplings (transfer integrals) as a function of alkyl side-chain length. This combination of theoretical and experimental techniques proves to be an important tool to help establish the relationship between the structural and electronic properties of polymer thin films.

3.
J Am Chem Soc ; 132(33): 11437-9, 2010 Aug 25.
Artículo en Inglés | MEDLINE | ID: mdl-20677750

RESUMEN

High-performance, solution-processed transistors fabricated from semiconducting polymers containing indacenodithiohene repeat units are described. The bridging functions on the backbone contribute to suppressing large-scale crystallization in thin films. However, charge carrier mobilities of up to 1 cm(2)/(V s) for a benzothiadiazole copolymer were reported and, coupled with both ambient stability and long-wavelength absorption, make this family of polymers particularly attractive for application in next-generation organic optoelectronics.


Asunto(s)
Polímeros/química , Tiofenos/química , Transistores Electrónicos , Aire , Estructura Molecular , Semiconductores
4.
Nano Lett ; 9(12): 4153-7, 2009 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-19780570

RESUMEN

We demonstrate that intercalation of fullerene derivatives between the side chains of conjugated polymers can be controlled by adjusting the fullerene size and compare the properties of intercalated and nonintercalated poly(2,5-bis(3-hexadecylthiophen-2-yl)thieno[3,2-b]thiophene (pBTTT):fullerene blends. The intercalated blends, which exhibit optimal solar-cell performance at 1:4 polymer:fullerene by weight, have better photoluminescence quenching and lower absorption than the nonintercalated blends, which optimize at 1:1. Understanding how intercalation affects performance will enable more effective design of polymer:fullerene solar cells.


Asunto(s)
Suministros de Energía Eléctrica , Fulerenos/química , Nanoestructuras/química , Nanoestructuras/ultraestructura , Nanotecnología/instrumentación , Nanotecnología/métodos , Energía Solar , Cristalización/métodos , Diseño de Equipo , Análisis de Falla de Equipo , Sustancias Macromoleculares/química , Ensayo de Materiales , Conformación Molecular , Tamaño de la Partícula , Propiedades de Superficie
5.
Adv Mater ; 24(45): 6071-9, 2012 Nov 27.
Artículo en Inglés | MEDLINE | ID: mdl-22949357

RESUMEN

The molecular packing in a polymer: fullerene bimolecular crystal is determined using X-ray diffraction (XRD), molecular mechanics (MM) and molecular dynamics (MD) simulations, 2D solid-state NMR spectroscopy, and IR absorption spectroscopy. The conformation of the electron-donating polymer is significantly disrupted by the incorporation of the electron-accepting fullerene molecules, which introduce twists and bends along the polymer backbone and 1D electron-conducting fullerene channels.


Asunto(s)
Cristalización/métodos , Fulerenos/química , Espectroscopía de Resonancia Magnética/métodos , Modelos Químicos , Modelos Moleculares , Difracción de Rayos X/métodos , Simulación por Computador , Dimerización , Ensayo de Materiales/métodos
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