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  Exciton and polaron dynamics in a step-ladder polymeric semiconductor: the influence of interchain order

Silva, C., Russell, D. M., Dhoot, A. S., Herz, L. M., Daniel, C., Greenham, N. C., et al. (2002). Exciton and polaron dynamics in a step-ladder polymeric semiconductor: the influence of interchain order. Journal of Physics-Condensed Matter, 14(42), 9803-9824.

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Silva, C., Author
Russell, D. M., Author
Dhoot, A. S., Author
Herz, L. M., Author
Daniel, C., Author
Greenham, N. C., Author
Arias, A. C., Author
Setayesh, S.1, Author           
Müllen, Klaus1, Author           
Friend, R. H., Author
Affiliations:
1MPI for Polymer Research, Max Planck Society, ou_1309545              

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 Abstract: We present combined results of femtosecond transient photoluminescence (PL), femtosecond transient absorption and quasi-steady-state photoinduced absorption spectroscopy on the organic semiconductor poly-6, 6', 12, 12'-tetraalkyl-2, 8- indenofluorene (PIF). By control of interchain order via the choice of the side-chain substituents, we have investigated its effect on exciton and polaron dynamics in this model, electronic material. We show that interfaces between ordered and disordered domains play a significant role in the photophysics. At high photoexcitation fluence, a high yield (similar to10%) of polarons is only observed in the ordered semiconductor. This process arises from two-step photoexcitation, first to the lowest exciton, and then to a high-energy state of opposite symmetry. In contrast, triplet exciton population is generated via sequential excitation with smaller yield (<1%) in both ordered and disordered materials. In the low fluence regime, triplet excitons are found to arise from evolution of polarons generated with low efficiency (also <1%) by diffusion-limited processes. The triplet generation yield is strongly dependent on order, with the disordered material displaying a higher yield. Polaron decay is found to be thermally activated, with a higher activation energy and lower room-temperature recombination rate in the ordered material. Furthermore, we do not find that emissive keto defects play a defining role in the PL properties of our PIF samples. Instead, absorption features of aggregate-like species, which we believe to lead to sub-gap emission, are evident in the photocurrent action spectrum of the more ordered PIF derivative.

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Language(s): eng - English
 Dates: 2002-10-28
 Publication Status: Issued
 Pages: -
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 Table of Contents: -
 Rev. Type: No review
 Identifiers: eDoc: 28440
ISI: 000179480700003
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Title: Journal of Physics-Condensed Matter
  Alternative Title : J. Phys.-Condes. Matter
Source Genre: Journal
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Pages: - Volume / Issue: 14 (42) Sequence Number: - Start / End Page: 9803 - 9824 Identifier: ISSN: 0953-8984