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Published in: Polymer Science, Series B 5/2021

01-09-2021 | REVIEWS

Gas Sensors Based on Conjugated Oligomers and Polymers as Promising Sensitive Elements for Toxic Gases Monitoring in the Atmosphere

Authors: A. A. Trul, E. V. Agina, S. A. Ponomarenko

Published in: Polymer Science, Series B | Issue 5/2021

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Abstract

The review is devoted to conjugated oligomers and polymers used as functional materials in gas sensors based on organic field-effect transistors. The review lists the main types of sensors for portable gas analyzers, describes the parameters characterizing them, gives their main advantages and disadvantages. Gas sensors based on semiconducting polymers, oligomers and small molecules are presented. Methods of functional sensory layers formation as well as possible ways of increasing their sensitivity and selectivity are considered, mechanisms of sensory response are described. The most promising directions for further development of polymer gas sensors are suggested.

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Literature
1.
go back to reference S. G. Surya, H. N. Raval, R. Ahmad, P. Sonar, K. N. Salama, and V. R. Rao, Trends Anal. Chem. 111, 27 (2019).CrossRef S. G. Surya, H. N. Raval, R. Ahmad, P. Sonar, K. N. Salama, and V. R. Rao, Trends Anal. Chem. 111, 27 (2019).CrossRef
2.
go back to reference I. Ruiz, M. Sprowls, Y. Deng, D. Kulick, H. Destaillats, and E. S. Forzani, J. Breath Res. 12, 036012 (2018).PubMedCrossRef I. Ruiz, M. Sprowls, Y. Deng, D. Kulick, H. Destaillats, and E. S. Forzani, J. Breath Res. 12, 036012 (2018).PubMedCrossRef
3.
go back to reference A.-M. Andringa, C. Piliego, I. Katsouras, P. W. M. Blom, and D. M. D. Leeuw, Chem. Mater. 26, 773 (2014).CrossRef A.-M. Andringa, C. Piliego, I. Katsouras, P. W. M. Blom, and D. M. D. Leeuw, Chem. Mater. 26, 773 (2014).CrossRef
4.
5.
go back to reference B. de Lacy Costello, A. Amann, H. Al-Kateb, C. Flynn, W. Filipiak, T. Khalid, D. Osborne, and N. M. Ratcliffe, J. Breath Res. 8, 014001 (2014).PubMedCrossRef B. de Lacy Costello, A. Amann, H. Al-Kateb, C. Flynn, W. Filipiak, T. Khalid, D. Osborne, and N. M. Ratcliffe, J. Breath Res. 8, 014001 (2014).PubMedCrossRef
8.
go back to reference S. M. Cristescu, J. Mandon, F. J. Harren, P. Merilainen, and M. Hogman, J. Breath Res. 7, 017104 (2013).PubMedCrossRef S. M. Cristescu, J. Mandon, F. J. Harren, P. Merilainen, and M. Hogman, J. Breath Res. 7, 017104 (2013).PubMedCrossRef
9.
10.
go back to reference J. Dai, O. Ogbeide, N. Macadam, Q. Sun, W. Yu, Y. Li, B. L. Su, T. Hasan, X. Huang, and W. Huang, Chem. Soc. Rev. 49, 1756 (2020).PubMedCrossRef J. Dai, O. Ogbeide, N. Macadam, Q. Sun, W. Yu, Y. Li, B. L. Su, T. Hasan, X. Huang, and W. Huang, Chem. Soc. Rev. 49, 1756 (2020).PubMedCrossRef
11.
go back to reference J. A. J. Brunink, C. Di Natale, F. Bungaro, F. A. M. Davide, A. D’Amico, R. Paolesse, T. Boschi, M. Faccio, and G. Ferri, Anal. Chim. Acta 325, 53 (1996)CrossRef J. A. J. Brunink, C. Di Natale, F. Bungaro, F. A. M. Davide, A. D’Amico, R. Paolesse, T. Boschi, M. Faccio, and G. Ferri, Anal. Chim. Acta 325, 53 (1996)CrossRef
12.
go back to reference C. Dinatale, R. Paolesse, and A. Damico, Sens. Actuators, B 121, 238 (2007).CrossRef C. Dinatale, R. Paolesse, and A. Damico, Sens. Actuators, B 121, 238 (2007).CrossRef
13.
14.
go back to reference O. Yassine, O. Shekhah, A. H. Assen, Y. Belmabkhout, K. N. Salama, and M. Eddaoudi, Angew Chem., Int. Ed. Engl. 55, 15879 (2016).CrossRef O. Yassine, O. Shekhah, A. H. Assen, Y. Belmabkhout, K. N. Salama, and M. Eddaoudi, Angew Chem., Int. Ed. Engl. 55, 15879 (2016).CrossRef
15.
17.
go back to reference N. N. Samotaev, B. I. Podlepetsky, A. A. Vasiliev, A. V. Pisliakov, and A. V. Sokolov, Autom. Remote Control 74, 308 (2013).CrossRef N. N. Samotaev, B. I. Podlepetsky, A. A. Vasiliev, A. V. Pisliakov, and A. V. Sokolov, Autom. Remote Control 74, 308 (2013).CrossRef
18.
go back to reference V. V. Malyshev, A. V. Pislyakov, I. F. Krestnikov, V. A. Krutov, and S. N. Zaitsev, J. Anal. Chem. 56, 864 (2001).CrossRef V. V. Malyshev, A. V. Pislyakov, I. F. Krestnikov, V. A. Krutov, and S. N. Zaitsev, J. Anal. Chem. 56, 864 (2001).CrossRef
19.
go back to reference K. I. Lundström, M. S. Shivaraman, and C. M. Svensson, J. Appl. Phys. 46, 3876 (1975).CrossRef K. I. Lundström, M. S. Shivaraman, and C. M. Svensson, J. Appl. Phys. 46, 3876 (1975).CrossRef
20.
go back to reference L. Torsi, A. Dodabalapur, L. Sabbatini, and P. G. Zambonin, Sens. Actuators, B 67, 312 (2000).CrossRef L. Torsi, A. Dodabalapur, L. Sabbatini, and P. G. Zambonin, Sens. Actuators, B 67, 312 (2000).CrossRef
21.
go back to reference A. S. Sizov, E. V. Agina, and S. A. Ponomarenko, Russ. Chem. Rev. 87, 1226 (2018).CrossRef A. S. Sizov, E. V. Agina, and S. A. Ponomarenko, Russ. Chem. Rev. 87, 1226 (2018).CrossRef
22.
go back to reference A.-M. Andringa, J. R. Meijboom, E. C. P. Smits, S. G. J. Mathijssen, P. W. M. Blom, D. M. de Leeuw, Adv. Funct. Mater. 21, 100 (2011).CrossRef A.-M. Andringa, J. R. Meijboom, E. C. P. Smits, S. G. J. Mathijssen, P. W. M. Blom, D. M. de Leeuw, Adv. Funct. Mater. 21, 100 (2011).CrossRef
24.
go back to reference C. Nylander, M. Armgarth, and I. Lundstrom, Anal. Chem. Symp. Ser. 17, 203 (1983). C. Nylander, M. Armgarth, and I. Lundstrom, Anal. Chem. Symp. Ser. 17, 203 (1983).
25.
go back to reference M. R. Cavallari, J. E. Izquierdo, G. S. Braga, E. A. Dirani, M. A. Pereira-Da-Silva, E. F. Rodriguez, and F. J. Fonseca, Sensors (Basel) 15, 9592 (2015).CrossRef M. R. Cavallari, J. E. Izquierdo, G. S. Braga, E. A. Dirani, M. A. Pereira-Da-Silva, E. F. Rodriguez, and F. J. Fonseca, Sensors (Basel) 15, 9592 (2015).CrossRef
26.
go back to reference S. Han, X. Zhuang, W. Shi, X. Yang, L. Li, and J. Yu, Sens. Actuators, B 225, 10 (2016).CrossRef S. Han, X. Zhuang, W. Shi, X. Yang, L. Li, and J. Yu, Sens. Actuators, B 225, 10 (2016).CrossRef
28.
go back to reference Y. Yang, G. Zhang, H. Luo, J. Yao, Z. Liu, and D. Zhang, ACS Appl. Mater. Interfaces 8, 3635 (2016).PubMedCrossRef Y. Yang, G. Zhang, H. Luo, J. Yao, Z. Liu, and D. Zhang, ACS Appl. Mater. Interfaces 8, 3635 (2016).PubMedCrossRef
29.
31.
go back to reference H. J. Cheon, X. Li, Y. J. Jeong, M. J. Sung, Z. Li, I. Jeon, X. Tang, H. G. Girma, H. Kong, S.-K. Kwon, T. K. An, S. H. Kim, and Y.-H. Kim, J. Mater. Chem. C 8, 8410 (2020).CrossRef H. J. Cheon, X. Li, Y. J. Jeong, M. J. Sung, Z. Li, I. Jeon, X. Tang, H. G. Girma, H. Kong, S.-K. Kwon, T. K. An, S. H. Kim, and Y.-H. Kim, J. Mater. Chem. C 8, 8410 (2020).CrossRef
32.
go back to reference S. Tiwari, A. K. Singh, L. Joshi, P. Chakrabarti, W. Takashima, K. Kaneto, and R. Prakash, Sens. Actuators, B 171–172, 962 (2012).CrossRef S. Tiwari, A. K. Singh, L. Joshi, P. Chakrabarti, W. Takashima, K. Kaneto, and R. Prakash, Sens. Actuators, B 171–172, 962 (2012).CrossRef
34.
go back to reference R. D. Yang, J. Park, C. N. Colesniuc, I. K. Schuller, J. E. Royer, W. C. Trogler, and A. C. Kummel, J. Chem. Phys. 130, 164703 (2009).PubMedCrossRef R. D. Yang, J. Park, C. N. Colesniuc, I. K. Schuller, J. E. Royer, W. C. Trogler, and A. C. Kummel, J. Chem. Phys. 130, 164703 (2009).PubMedCrossRef
35.
go back to reference F. Zhang, G. Qu, E. Mohammadi, J. Mei, and Y. Diao, Adv. Funct. Mater. 27, 1701117 (2017).CrossRef F. Zhang, G. Qu, E. Mohammadi, J. Mei, and Y. Diao, Adv. Funct. Mater. 27, 1701117 (2017).CrossRef
36.
go back to reference C. Cano-Raya, Z. Z. Denchev, S. F. Cruz, and J. C. Viana, Appl. Mater. Today 15, 416 (2019).CrossRef C. Cano-Raya, Z. Z. Denchev, S. F. Cruz, and J. C. Viana, Appl. Mater. Today 15, 416 (2019).CrossRef
37.
go back to reference W. Tang, Y. Huang, L. Han, R. Liu, Y. Su, X. Guo, and F. Yan, J. Mater. Chem. C 7, 790 (2019).CrossRef W. Tang, Y. Huang, L. Han, R. Liu, Y. Su, X. Guo, and F. Yan, J. Mater. Chem. C 7, 790 (2019).CrossRef
38.
go back to reference J. K. Hwang, S. Cho, J. M. Dang, E. B. Kwak, K. Song, J. Moon, and M. M. Sung, Nat. Nanotechnol. 5, 742 (2010).PubMedCrossRef J. K. Hwang, S. Cho, J. M. Dang, E. B. Kwak, K. Song, J. Moon, and M. M. Sung, Nat. Nanotechnol. 5, 742 (2010).PubMedCrossRef
39.
40.
go back to reference Y. Zhu, J. Dong, G. Li, C. Liu, Q. Xie, L. Wang, L. J. Wang, and M. You, Mater. Lett. 288, 129370 (2021).CrossRef Y. Zhu, J. Dong, G. Li, C. Liu, Q. Xie, L. Wang, L. J. Wang, and M. You, Mater. Lett. 288, 129370 (2021).CrossRef
41.
go back to reference D. H. Kwak, H. H. Choi, J. E. Anthony, S. Kim, H. Chae, J. Hwang, S. Lee, H. J. Park, B.-G. Kim, and W. H. Lee, Org. Electron. 85, 105878 (2020).CrossRef D. H. Kwak, H. H. Choi, J. E. Anthony, S. Kim, H. Chae, J. Hwang, S. Lee, H. J. Park, B.-G. Kim, and W. H. Lee, Org. Electron. 85, 105878 (2020).CrossRef
42.
go back to reference S. Yuvaraja, S. G. Surya, M. T. Vijjapu, V. Chernikova, O. Shekhah, M. Eddaoudi, and K. N. Salama, Phys. Status Solidi RRL 14, 2000086 (2020).CrossRef S. Yuvaraja, S. G. Surya, M. T. Vijjapu, V. Chernikova, O. Shekhah, M. Eddaoudi, and K. N. Salama, Phys. Status Solidi RRL 14, 2000086 (2020).CrossRef
43.
go back to reference S. Yuvaraja, S. G. Surya, V. Chernikova, M. T. Vijjapu, O. Shekhah, P. M. Bhatt, S. Chandra, M. Eddaoudi, and K. N. Salama, ACS Appl. Mater. Interfaces 12, 18748 (2020).PubMedCrossRef S. Yuvaraja, S. G. Surya, V. Chernikova, M. T. Vijjapu, O. Shekhah, P. M. Bhatt, S. Chandra, M. Eddaoudi, and K. N. Salama, ACS Appl. Mater. Interfaces 12, 18748 (2020).PubMedCrossRef
44.
go back to reference S. Yuvaraja, V. N. Bhyranalyar, S. A. Bhat, S. G. Surya, C. V. Yelamaggad, and K. N. Salama, Mater. Horiz. 8, 525 (2021).CrossRef S. Yuvaraja, V. N. Bhyranalyar, S. A. Bhat, S. G. Surya, C. V. Yelamaggad, and K. N. Salama, Mater. Horiz. 8, 525 (2021).CrossRef
45.
go back to reference A.-M. Andringa, M.-J. Spijkman, E. C. P. Smits, S. G. J. Mathijssen, P. A. V. Hal, S. Setayesh, N. P. Willard, O. V. Borshchev, S. A. Ponomarenko, P. W. M. Blom, D. M. de Leeuw, Org. Electron. 11, 895 (2010).CrossRef A.-M. Andringa, M.-J. Spijkman, E. C. P. Smits, S. G. J. Mathijssen, P. A. V. Hal, S. Setayesh, N. P. Willard, O. V. Borshchev, S. A. Ponomarenko, P. W. M. Blom, D. M. de Leeuw, Org. Electron. 11, 895 (2010).CrossRef
46.
go back to reference F. Dinelli, M. Murgia, P. Levy, M. Cavallini, F. Biscarini, and D. M. de Leeuw, Phys. Rev. Lett. 92, 116802 (2004).PubMedCrossRef F. Dinelli, M. Murgia, P. Levy, M. Cavallini, F. Biscarini, and D. M. de Leeuw, Phys. Rev. Lett. 92, 116802 (2004).PubMedCrossRef
47.
go back to reference H. Chen, S. Dong, M. Bai, N. Cheng, H. Wang, M. Li, H. Du, S. Hu, Y. Yang, T. Yang, F. Zhang, L. Gu, S. Meng, S. Hou, and X. Guo, Adv. Mater. 27, 2113 (2015).PubMedCrossRef H. Chen, S. Dong, M. Bai, N. Cheng, H. Wang, M. Li, H. Du, S. Hu, Y. Yang, T. Yang, F. Zhang, L. Gu, S. Meng, S. Hou, and X. Guo, Adv. Mater. 27, 2113 (2015).PubMedCrossRef
48.
go back to reference B. Peng, S. Huang, Z. Zhou, and P. K. L. Chan, Adv. Funct. Mater. 27, 1700999 (2017).CrossRef B. Peng, S. Huang, Z. Zhou, and P. K. L. Chan, Adv. Funct. Mater. 27, 1700999 (2017).CrossRef
49.
50.
go back to reference D. C. Wedge, A. Das, R. Dost, J. Kettle, M.-B. Madec, J. J. Morrison, M. Grell, D. B. Kell, T. H. Richardson, and S. Yeates, Sens. Actuators, B 143, 365 (2009).CrossRef D. C. Wedge, A. Das, R. Dost, J. Kettle, M.-B. Madec, J. J. Morrison, M. Grell, D. B. Kell, T. H. Richardson, and S. Yeates, Sens. Actuators, B 143, 365 (2009).CrossRef
51.
go back to reference B. Wang, P. Sonar, S. Manzhos, and H. Haick, Sens. Actuators, B 251, 49 (2017).CrossRef B. Wang, P. Sonar, S. Manzhos, and H. Haick, Sens. Actuators, B 251, 49 (2017).CrossRef
52.
go back to reference N. A. Lukashkin, D. K. Sagdullina, I. S. Zhidkov, E. Z. Kurmaev, and P. A. Troshin, Synth. Met. 260, 116295 (2020).CrossRef N. A. Lukashkin, D. K. Sagdullina, I. S. Zhidkov, E. Z. Kurmaev, and P. A. Troshin, Synth. Met. 260, 116295 (2020).CrossRef
53.
go back to reference W. Huang, J. Sinha, M.-L. Yeh, J. F. M. Hardigree, R. LeCover, K. Besar, A. M. Rule, P. N. Breysse, and H. E. Katz, Adv. Funct. Mater. 23, 4094 (2013).CrossRef W. Huang, J. Sinha, M.-L. Yeh, J. F. M. Hardigree, R. LeCover, K. Besar, A. M. Rule, P. N. Breysse, and H. E. Katz, Adv. Funct. Mater. 23, 4094 (2013).CrossRef
54.
55.
go back to reference Z.-T. Zhu, J. T. Mason, R. Dieckmann, and G. G. Malliaras, Appl. Phys. Lett. 81, 4643 (2002).CrossRef Z.-T. Zhu, J. T. Mason, R. Dieckmann, and G. G. Malliaras, Appl. Phys. Lett. 81, 4643 (2002).CrossRef
56.
go back to reference A. A. Trul, A. S. Sizov, V. P. Chekusova, O. V. Borshchev, E. V. Agina, M. A. Shcherbina, A. V. Bakirov, S. N. Chvalun, and S. A. Ponomarenko, J. Mater. Chem. C 6, 9649 (2018).CrossRef A. A. Trul, A. S. Sizov, V. P. Chekusova, O. V. Borshchev, E. V. Agina, M. A. Shcherbina, A. V. Bakirov, S. N. Chvalun, and S. A. Ponomarenko, J. Mater. Chem. C 6, 9649 (2018).CrossRef
57.
go back to reference A. S. Sizov, A. A. Trul, V. Chekusova, O. V. Borshchev, A. A. Vasiliev, E. V. Agina, and S. A. Ponomarenko, ACS Appl. Mater. Interfaces 10, 43831 (2018).PubMedCrossRef A. S. Sizov, A. A. Trul, V. Chekusova, O. V. Borshchev, A. A. Vasiliev, E. V. Agina, and S. A. Ponomarenko, ACS Appl. Mater. Interfaces 10, 43831 (2018).PubMedCrossRef
58.
go back to reference A. A. Trul, V. P. Chekusova, M. S. Polinskaya, A. N. Kiselev, E. V. Agina, and S. A. Ponomarenko, Sens. Actuators, B 321, 128609 (2020).CrossRef A. A. Trul, V. P. Chekusova, M. S. Polinskaya, A. N. Kiselev, E. V. Agina, and S. A. Ponomarenko, Sens. Actuators, B 321, 128609 (2020).CrossRef
59.
go back to reference A. S. Sizov, E. V. Agina, and S. A. Ponomarenko, Russ. Chem. Rev. 88, 1220 (2019).CrossRef A. S. Sizov, E. V. Agina, and S. A. Ponomarenko, Russ. Chem. Rev. 88, 1220 (2019).CrossRef
60.
go back to reference D. S. Anisimov, V. P. Chekusova, A. A. Trul, A. A. Abramov, O. V. Borshchev, E. V. Agina, S. A. Ponomarenko, Sci. Rep. 11, 10683 (2021). D. S. Anisimov, V. P. Chekusova, A. A. Trul, A. A. Abramov, O. V. Borshchev, E. V. Agina, S. A. Ponomarenko, Sci. Rep. 11, 10683 (2021).
Metadata
Title
Gas Sensors Based on Conjugated Oligomers and Polymers as Promising Sensitive Elements for Toxic Gases Monitoring in the Atmosphere
Authors
A. A. Trul
E. V. Agina
S. A. Ponomarenko
Publication date
01-09-2021
Publisher
Pleiades Publishing
Published in
Polymer Science, Series B / Issue 5/2021
Print ISSN: 1560-0904
Electronic ISSN: 1555-6123
DOI
https://doi.org/10.1134/S1560090421050158

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