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Isoxazole Derivatives With Potential Applications in Polymers and Semiconductors.
Isoxazole Derivatives With Potential Applications in Polymers and Semiconductors.
Vilela, G. D.; Rosa, R. R. da; Merlo, A. A.
Abstract:
Organic semiconductors have been receiving significant attention as a new class of electronic materials for organic light emitting diodes (OLEDs), organic field-effect transistors (OFETs), and photovoltaic cells. The success this technologies in contrast with conventional inorganic semiconductors depends on the way of the deposition of the semiconducting layers, the conjugated -electron system with high electron affinity, packing geometry; good filmforming properties; chemical stability and purity, etc. These issues are of primary importance in the field of organic electronic materials-OEM. The purpose of this communication is to show our preliminary results of the synthesis of new liquid crystals through the increase of p-conjugation using the Pd-catalyzed cross-coupling reactions and increase the molecular stability of crystal SmE phase by polymerization or to prepare tripodal molecules.
Organic semiconductors have been receiving significant attention as a new class of electronic materials for organic light emitting diodes (OLEDs), organic field-effect transistors (OFETs), and photovoltaic cells. The success this technologies in contrast with conventional inorganic semiconductors depends on the way of the deposition of the semiconducting layers, the conjugated -electron system with high electron affinity, packing geometry; good filmforming properties; chemical stability and purity, etc. These issues are of primary importance in the field of organic electronic materials-OEM. The purpose of this communication is to show our preliminary results of the synthesis of new liquid crystals through the increase of p-conjugation using the Pd-catalyzed cross-coupling reactions and increase the molecular stability of crystal SmE phase by polymerization or to prepare tripodal molecules.
Palavras-chave:
DOI: 10.5151/chempro-14bmos-R0032-1
Referências bibliográficas
- [1] 1 Vilela, G. D. 2010. M.Sc. PPGQuímica, UFRGS, Porto Alegre, 97.
- [2] 2 He-Lou Xie, Chang-Kai Jie, Zhen-Qiang Yu, Xuan-Bo Liu, Hai-Liang Zhang, J. Am. Chem. Soc., 2010, 132, 8071-8080.
- [3] 3 Czerniawski, T., Eur. Polymer J., 2000, 36, 635-642.
Como citar:
Vilela, G. D.; Rosa, R. R. da; Merlo, A. A.; "Isoxazole Derivatives With Potential Applications in Polymers and Semiconductors.", p-32-32.
In: In Blucher Chemistry Proceedings, São Paulo, v. 1, n. 1, Setembro.2013.
São Paulo: Blucher,
2013.
ISSN 23184043,
DOI 10.5151/chempro-14bmos-R0032-1
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TY - CONF T1 - Isoxazole Derivatives With Potential Applications in Polymers and Semiconductors. JO - Blucher Chemistry Proceedings VL - 1 IS - 1 SP - 32 EP - 32 PY - 2013 T2 - Brazilian Meeting on Organic Synthesis 2011 AU - , , SN - 23184043 DO - http://dx.doi.org/10.5151/chempro-14bmos-R0032-1 UR - www.proceedings.blucher.com.br/article-details/isoxazole-derivatives-with-potential-applications-in-polymers-and-semiconductors-7908 KW - ER -
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@article{Vilela20144,
title="Isoxazole Derivatives With Potential Applications in Polymers and Semiconductors.",
journal="Blucher Chemistry Proceedings",
volume="1",
number="1",
pages="32 - 32",
year="2013",
note="",
issn="23184043",
doi="http://dx.doi.org/10.5151/chempro-14bmos-R0032-1",
url="www.proceedings.blucher.com.br/article-details/isoxazole-derivatives-with-potential-applications-in-polymers-and-semiconductors-7908",
author="G. D. Vilela", "R. R. da Rosa", "A. A. Merlo",
keywords="",
}
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G. D. Vilela, R. R. da Rosa, A. A. Merlo, Isoxazole Derivatives With Potential Applications in Polymers and Semiconductors., Blucher Chemistry Proceedings, Volume 1, 2013, Pages 32-32, ISSN 23184043, http://dx.doi.org/10.5151/chempro-14bmos-R0032-1 (www.proceedings.blucher.com.br/article-details/isoxazole-derivatives-with-potential-applications-in-polymers-and-semiconductors-7908) Palavras-chave:: ;