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Predicting Charge Mobility of Organic Semiconductors with Complex Morphology
- Publication Year :
- 2018
-
Abstract
- We introduce a mesoscopic model to predict the charge mobility of organic semiconductors characterized by a coexistence of crystalline and amorphous phases. First, we validate our scheme by reproducing the trends in charge mobility observed in thin films of poly(3-hexylthiophene) (P3HT) polymers. Next, we address the problem of predicting the morphologies that lead to the highest mobility. Our main finding is the identification of a region of the model's multidimensional parameter space, in which the charge mobility effectively depends on a single morphological feature: the average intercrystallite distance. This scaling behavior provides insight into the main physical mechanism limiting charge mobility in organic semiconductors. Our proposed framework can be adapted to study a wide class of polymeric systems and used to guide the manufacturing of new, high-performing organic semiconductor materials.
- Subjects :
- Materials Chemistry2506 Metals and Alloys
Imagination
Multiscale
Stochastic Modeling
Materials science
Chemical substance
Polymers and Plastics
media_common.quotation_subject
02 engineering and technology
Parameter space
Charge transport
010402 general chemistry
01 natural sciences
Inorganic Chemistry
Materials Chemistry
Organic semiconductor
Scaling
Conducting Polymer
media_common
Mesoscopic physics
Polymers and Plastic
Organic Chemistry
Charge (physics)
021001 nanoscience & nanotechnology
0104 chemical sciences
Amorphous solid
Chemical physics
0210 nano-technology
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....ca72eb38135d085e63ecfefeb69ade44