Exploring Alkyl Chains in Benzobisthiazole-Naphthobisthiadiazole Polymers: Impact on Solar-Cell Performance, Crystalline Structures, and Optoelectronics.
Publication type: Journal Article
Publication date: 2017-10-23
scimago Q1
wos Q1
SJR: 1.921
CiteScore: 14.5
Impact factor: 8.2
ISSN: 19448244, 19448252
PubMed ID:
29058404
General Materials Science
Abstract
The shapes and lengths of the alkyl chains of conjugated polymers greatly affect the efficiencies of organic photovoltaic devices. This often results in a trade-off between solubility and self-organizing behavior; however, each material has specific optimal chains. Here we report on the effect of alkyl side chains on the film morphologies, crystallinities, and optoelectronic properties of new benzobisthiazole-naphthobisthiadiazole (PBBT-NTz) polymers. The power conversion efficiencies (PCEs) of linear-branched and all-branched polymers range from 2.5% to 6.6%; the variations in these PCEs are investigated by atomic force microscopy, two-dimensional X-ray diffraction (2D-GIXRD), and transient photoconductivity techniques. The best-performing linear-branched polymer, bearing dodecyl and decyltetradecyl chains (C12-DT), exhibits nanometer-scale fibers along with the highest crystallinity, comprising predominant edge-on and partial face-on orientations. This morphology leads to the highest photoconductivity and the longest carrier lifetime. These results highlight the importance of long alkyl chains for inducing intermolecular stacking, which is in contrast to observations made for analogous previously reported polymers.
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Total citations:
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Citations from 2024:
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(11%)
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Al Naamani E. et al. Exploring Alkyl Chains in Benzobisthiazole-Naphthobisthiadiazole Polymers: Impact on Solar-Cell Performance, Crystalline Structures, and Optoelectronics. // ACS applied materials & interfaces. 2017. Vol. 9. No. 43. pp. 37702-37711.
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Al Naamani E., Gopal A., Ide M., OSAKA I., Saeki A. Exploring Alkyl Chains in Benzobisthiazole-Naphthobisthiadiazole Polymers: Impact on Solar-Cell Performance, Crystalline Structures, and Optoelectronics. // ACS applied materials & interfaces. 2017. Vol. 9. No. 43. pp. 37702-37711.
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TY - JOUR
DO - 10.1021/acsami.7b10619
UR - https://doi.org/10.1021/acsami.7b10619
TI - Exploring Alkyl Chains in Benzobisthiazole-Naphthobisthiadiazole Polymers: Impact on Solar-Cell Performance, Crystalline Structures, and Optoelectronics.
T2 - ACS applied materials & interfaces
AU - Al Naamani, Eman
AU - Gopal, Anesh
AU - Ide, Marina
AU - OSAKA, Issey
AU - Saeki, Akinori
PY - 2017
DA - 2017/10/23
PB - American Chemical Society (ACS)
SP - 37702-37711
IS - 43
VL - 9
PMID - 29058404
SN - 1944-8244
SN - 1944-8252
ER -
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@article{2017_Al Naamani,
author = {Eman Al Naamani and Anesh Gopal and Marina Ide and Issey OSAKA and Akinori Saeki},
title = {Exploring Alkyl Chains in Benzobisthiazole-Naphthobisthiadiazole Polymers: Impact on Solar-Cell Performance, Crystalline Structures, and Optoelectronics.},
journal = {ACS applied materials & interfaces},
year = {2017},
volume = {9},
publisher = {American Chemical Society (ACS)},
month = {oct},
url = {https://doi.org/10.1021/acsami.7b10619},
number = {43},
pages = {37702--37711},
doi = {10.1021/acsami.7b10619}
}
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Al Naamani, Eman, et al. “Exploring Alkyl Chains in Benzobisthiazole-Naphthobisthiadiazole Polymers: Impact on Solar-Cell Performance, Crystalline Structures, and Optoelectronics..” ACS applied materials & interfaces, vol. 9, no. 43, Oct. 2017, pp. 37702-37711. https://doi.org/10.1021/acsami.7b10619.
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