Evaluation of the photocurrent value for poly(2,5-dicyano-p-phenylene-vinylene)-co-(p-phenylene-vinylene) (DCN-PPV/PPV)
A method to obtain poly(2,5-dicyano- p -phenylene-vinylene)-co-( p -phenylene-vinylene) (DCN-PPV/PPV) block copolymer was developed. The structural characteristics of the copolymer and its capability to generate a photocurrent were evaluated. IR spectra indicate the complete conversion of precursor...
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Published in | Journal of solid state electrochemistry Vol. 20; no. 9; pp. 2551 - 2557 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
Berlin/Heidelberg
Springer Berlin Heidelberg
01.09.2016
Springer Nature B.V |
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Abstract | A method to obtain poly(2,5-dicyano-
p
-phenylene-vinylene)-co-(
p
-phenylene-vinylene) (DCN-PPV/PPV) block copolymer was developed. The structural characteristics of the copolymer and its capability to generate a photocurrent were evaluated. IR spectra indicate the complete conversion of precursor copolymer into DCN-PPV/PPV at 250 °C under low-pressure conditions. The DCN-PPV/PPV polymer optical band gap was determined based on the observed UV-Vis spectral data by using Tauc’s equation. The two linear regions in the Tauc curve (E
g
= 2.63 eV and 2.02) revealed the formation of a block copolymer. Thermal analysis showed that DCN-PPV/PPV has a higher stability than PPV and starts to degrade at 317 °C in air. The electronic parameters of DCN-PPV/PPV (IP = 5.25 eV, EA = 3.30 eV, and E
g
= 1.95 eV) indicate that the cyano groups reduce the LUMO energy level without affecting the HOMO energy by much. DCN-PPV/PPV photoactivity measurements show higher photocurrent values compared to those for PPV. |
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AbstractList | A method to obtain poly(2,5-dicyano-p-phenylene-vinylene)-co-(p-phenylene-vinylene) (DCN-PPV/PPV) block copolymer was developed. The structural characteristics of the copolymer and its capability to generate a photocurrent were evaluated. IR spectra indicate the complete conversion of precursor copolymer into DCN-PPV/PPV at 250 °C under low-pressure conditions. The DCN-PPV/PPV polymer optical band gap was determined based on the observed UV-Vis spectral data by using Tauc’s equation. The two linear regions in the Tauc curve (Eg = 2.63 eV and 2.02) revealed the formation of a block copolymer. Thermal analysis showed that DCN-PPV/PPV has a higher stability than PPV and starts to degrade at 317 °C in air. The electronic parameters of DCN-PPV/PPV (IP = 5.25 eV, EA = 3.30 eV, and Eg = 1.95 eV) indicate that the cyano groups reduce the LUMO energy level without affecting the HOMO energy by much. DCN-PPV/PPV photoactivity measurements show higher photocurrent values compared to those for PPV. A method to obtain poly(2,5-dicyano- p -phenylene-vinylene)-co-( p -phenylene-vinylene) (DCN-PPV/PPV) block copolymer was developed. The structural characteristics of the copolymer and its capability to generate a photocurrent were evaluated. IR spectra indicate the complete conversion of precursor copolymer into DCN-PPV/PPV at 250 °C under low-pressure conditions. The DCN-PPV/PPV polymer optical band gap was determined based on the observed UV-Vis spectral data by using Tauc’s equation. The two linear regions in the Tauc curve (E g = 2.63 eV and 2.02) revealed the formation of a block copolymer. Thermal analysis showed that DCN-PPV/PPV has a higher stability than PPV and starts to degrade at 317 °C in air. The electronic parameters of DCN-PPV/PPV (IP = 5.25 eV, EA = 3.30 eV, and E g = 1.95 eV) indicate that the cyano groups reduce the LUMO energy level without affecting the HOMO energy by much. DCN-PPV/PPV photoactivity measurements show higher photocurrent values compared to those for PPV. |
Author | Voinarovicz, Marco A. Pedroso, Alex V. Klider, Karine C. C. W. dos S. Garcia, Jarem R. Péres, Laura O. Santos, Fábio Santana dos Bertuzzi, Diego L. |
Author_xml | – sequence: 1 givenname: Fábio Santana dos surname: Santos fullname: Santos, Fábio Santana dos organization: Departamento de Química, Universidade Estadual de Ponta Grossa – sequence: 2 givenname: Diego L. surname: Bertuzzi fullname: Bertuzzi, Diego L. organization: Departamento de Química, Universidade Estadual de Ponta Grossa – sequence: 3 givenname: Alex V. surname: Pedroso fullname: Pedroso, Alex V. organization: Departamento de Química, Universidade Estadual de Ponta Grossa – sequence: 4 givenname: Marco A. surname: Voinarovicz fullname: Voinarovicz, Marco A. organization: Departamento de Química, Universidade Estadual de Ponta Grossa – sequence: 5 givenname: Karine C. C. W. dos S. surname: Klider fullname: Klider, Karine C. C. W. dos S. organization: Departamento de Química, Universidade Estadual de Ponta Grossa – sequence: 6 givenname: Laura O. surname: Péres fullname: Péres, Laura O. organization: Instituto de Ciências Ambientais, Químicas e Farmacêuticas, Universidade Federal de São Paulo – sequence: 7 givenname: Jarem R. surname: Garcia fullname: Garcia, Jarem R. email: jrgarcia@uepg.br organization: Departamento de Química, Universidade Estadual de Ponta Grossa |
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Snippet | A method to obtain poly(2,5-dicyano-
p
-phenylene-vinylene)-co-(
p
-phenylene-vinylene) (DCN-PPV/PPV) block copolymer was developed. The structural... A method to obtain poly(2,5-dicyano-p-phenylene-vinylene)-co-(p-phenylene-vinylene) (DCN-PPV/PPV) block copolymer was developed. The structural characteristics... |
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SubjectTerms | Analytical Chemistry Block copolymers Characterization and Evaluation of Materials Chemistry Chemistry and Materials Science Condensed Matter Physics Cyano groups Electrochemistry Energy levels Energy Storage Evaluation Infrared spectroscopy Low pressure Molecular orbitals Original Paper Photoelectric effect Photoelectric emission Physical Chemistry Polyphenylene vinylene Stability analysis Thermal analysis |
Title | Evaluation of the photocurrent value for poly(2,5-dicyano-p-phenylene-vinylene)-co-(p-phenylene-vinylene) (DCN-PPV/PPV) |
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