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Published in: Journal of Materials Science: Materials in Electronics 10/2018

26-02-2018

The effect of titanium dioxide nano-filler on the conductivity, morphology and thermal stability of poly(methyl methacrylate)—poly(styrene-co-acrylonitrile) based composite solid polymer electrolytes

Authors: S. V. Ganesan, K. K. Mothilal, S. Selvasekarapandian, T. K. Ganesan

Published in: Journal of Materials Science: Materials in Electronics | Issue 10/2018

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Abstract

The composite solid polymer electrolyte (CSPE) samples, comprising of poly(methylmethacrylate) (PMMA)/poly(styrene-co-acrylonitrile) (SAN)/ethylene carbonate (EC)/propylene carbonate (PC)/lithium trifluoromethanesulfonate (LiCF3SO3)/anatase-TiO2 as nano-filler (0, 5, 6, 7, 8 and 9 wt% for samples T0, T1, T2, T3, T4 and T5 respectively) were prepared by solution casting technique. Fourier transform infrared (FT-IR) spectral studies indicate the interaction of PMMA and plasticizers (EC, PC) with Lithium ion and nano-filler TiO2 in samples. From AC impedance studies ionic conductivity, dielectric constant increase with increase in the concentration of nano-filler TiO2 up to 9 wt%. The sample T5 shows lowest activation energy (Ea) of 0.14 eV, very short relaxation time (τ) of 1.49 × 10−7 s and exhibits maximum ionic conductivity of 1.05 × 10−4 S cm−1 at room temperature. The conductivity-temperature dependence studies showed that the conductivity of all samples depict Arrhenius behaviour suggesting ion-hopping mechanism. Dielectric studies reveal ion conducting nature of CSPE samples. Thermogravimetric analysis indicate the thermal stability of CSPE sample T5 up to 333 °C with maximum degradation at 388 °C. DSC studies reveal absence of glass transition temperature (Tg) of atactic component of PMMA in CSPE sample T5 indicating amorphous nature. X-ray diffraction patterns shows shift in the position of peaks confirming the complex formation of the PMMA-SAN-EC-PC-LiCF3SO3-TiO2 system. SEM analysis indicates that the presence of lithium salt and filler TiO2 on polymer host does not lead to heterogenous polymer blend thus retaining its amorphous nature.

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Literature
1.
go back to reference A.M. Stephan, Eur. Polym. J. 42, 21–42 (2006) A.M. Stephan, Eur. Polym. J. 42, 21–42 (2006)
2.
go back to reference G.B. Appetecchi, B. Scrosati, Electrochim. Acta 39, 2187–2194 (1994) G.B. Appetecchi, B. Scrosati, Electrochim. Acta 39, 2187–2194 (1994)
3.
go back to reference E. Quartarone, P. Mustarelli, Chem. Soc. Rev. 40, 2525–2540 (2011) E. Quartarone, P. Mustarelli, Chem. Soc. Rev. 40, 2525–2540 (2011)
4.
go back to reference S. Ahmad, S. Ahmad, S.A. Agnihotry, Ionics 9, 439–449 (2003) S. Ahmad, S. Ahmad, S.A. Agnihotry, Ionics 9, 439–449 (2003)
5.
go back to reference J. Adebahr, N. Byrne, M. Forsyth, D.R. MacFarlone, P. Jacobsson, Electrochim. Acta 48, 2099–2103 (2003) J. Adebahr, N. Byrne, M. Forsyth, D.R. MacFarlone, P. Jacobsson, Electrochim. Acta 48, 2099–2103 (2003)
6.
go back to reference H.M. Xiong, J.S. Chen, D.M. Li, J. Mater. Chem. 13, 1994–1998 (2003) H.M. Xiong, J.S. Chen, D.M. Li, J. Mater. Chem. 13, 1994–1998 (2003)
7.
go back to reference F. Croce, S. Saccheti, B. Scrosati, J. Power Sources 161, 560–564 (2006) F. Croce, S. Saccheti, B. Scrosati, J. Power Sources 161, 560–564 (2006)
8.
go back to reference J.E. Weston, B.C.H. Steele, Solid State Ionics 71, 75–79 (1982) J.E. Weston, B.C.H. Steele, Solid State Ionics 71, 75–79 (1982)
9.
go back to reference S.K. Hyung, S.K. Kyong, C. Won-II, W.C. Byung, W.R. Hee, J. Power Sources 124, 221–224 (2003) S.K. Hyung, S.K. Kyong, C. Won-II, W.C. Byung, W.R. Hee, J. Power Sources 124, 221–224 (2003)
10.
go back to reference J. Srun, W.K. Dae, D.L. Sang, C. Minserk, Q.N. Dinh, W.C. Byung, S.K. Hoon, Bull. Korean Chem. Soc. 30, 2355–2361 (2009) J. Srun, W.K. Dae, D.L. Sang, C. Minserk, Q.N. Dinh, W.C. Byung, S.K. Hoon, Bull. Korean Chem. Soc. 30, 2355–2361 (2009)
11.
go back to reference G.N. Kumaraswamy, C. Ranganathaiah, M.V. Deepa Urs, H.B. Ravikumar, Eur. Polym. J. 42, 2655–2666 (2006) G.N. Kumaraswamy, C. Ranganathaiah, M.V. Deepa Urs, H.B. Ravikumar, Eur. Polym. J. 42, 2655–2666 (2006)
12.
go back to reference D. Miao, G. Jianhua, Z. Qiang, Polymer 45, 6725–6730 (2004) D. Miao, G. Jianhua, Z. Qiang, Polymer 45, 6725–6730 (2004)
13.
go back to reference S. Ramesh, K.C. Wong, Ionics 15, 249–254 (2009) S. Ramesh, K.C. Wong, Ionics 15, 249–254 (2009)
14.
go back to reference L. Othman, K.W. Chew, Z. Osman, Ionics 13, 337–342 (2007) L. Othman, K.W. Chew, Z. Osman, Ionics 13, 337–342 (2007)
15.
go back to reference S. Ramesh, L.C. Wen, Ionics 16, 255–262 (2010) S. Ramesh, L.C. Wen, Ionics 16, 255–262 (2010)
16.
go back to reference H. Li, M. Zuo, T. Liu, Q. Chen, J. Zhang, Q. Zheng, RSC Adv. 6, 10099–10113 (2016) H. Li, M. Zuo, T. Liu, Q. Chen, J. Zhang, Q. Zheng, RSC Adv. 6, 10099–10113 (2016)
17.
go back to reference C. Lin, M. Zuo, H. Li, T. Liu, Q. Zheng, Chin. J. Polym. Sci. 33(8), 1162–1175 (2015) C. Lin, M. Zuo, H. Li, T. Liu, Q. Zheng, Chin. J. Polym. Sci. 33(8), 1162–1175 (2015)
18.
go back to reference A. Sarvi, U. Sundararaj, Polym. Compos. 37(5), 1523–1530 (2016) A. Sarvi, U. Sundararaj, Polym. Compos. 37(5), 1523–1530 (2016)
19.
go back to reference M. Lee, H. Jeon, B.H. Min, J.H. Kim, J. Appl. Polym. Sci. 121(2), 743–749 (2011) M. Lee, H. Jeon, B.H. Min, J.H. Kim, J. Appl. Polym. Sci. 121(2), 743–749 (2011)
20.
go back to reference I. Nicotera, L. Coppola, C. Oliviero, M. Castriota, E. Cazzanelli, Solid State Ionics 177, 581–588 (2006) I. Nicotera, L. Coppola, C. Oliviero, M. Castriota, E. Cazzanelli, Solid State Ionics 177, 581–588 (2006)
21.
go back to reference S. Rajendran, O. Mahendran, T. Mahalingam, Eur. Polym. J. 38, 49–55 (2002) S. Rajendran, O. Mahendran, T. Mahalingam, Eur. Polym. J. 38, 49–55 (2002)
22.
go back to reference M.S. Su’ait, A. Ahmad, H. Hamzah, M.Y.A. Rahman, Electrochim. Acta 57, 123–131 (2011) M.S. Su’ait, A. Ahmad, H. Hamzah, M.Y.A. Rahman, Electrochim. Acta 57, 123–131 (2011)
23.
go back to reference R. Kumar, J.P. Sharma, S.S. Sekhon, Eur. Polym. J. 41, 2718–2724 (2005) R. Kumar, J.P. Sharma, S.S. Sekhon, Eur. Polym. J. 41, 2718–2724 (2005)
24.
go back to reference A.M.M. Ali, M.Z.A. Yahya, H. Bahron, R.H.Y. Subban, M.K. Harun, I. Atan, Mater. Lett. 61, 2026–2029 (2007) A.M.M. Ali, M.Z.A. Yahya, H. Bahron, R.H.Y. Subban, M.K. Harun, I. Atan, Mater. Lett. 61, 2026–2029 (2007)
25.
go back to reference K.W. Chew, K.W. Tan, Int. J. Electrochem. Sci. 6, 5792–5801 (2011) K.W. Chew, K.W. Tan, Int. J. Electrochem. Sci. 6, 5792–5801 (2011)
26.
go back to reference L. Tian Khoon, N. Ataollahi, N.H. Hassan, A. Ahmad, J. Solid State Electrochem. 20, 203–213 (2016) L. Tian Khoon, N. Ataollahi, N.H. Hassan, A. Ahmad, J. Solid State Electrochem. 20, 203–213 (2016)
27.
go back to reference A.R. Polu, H.W. Rhee, D.K. Kim, J. Mater. Sci. Mater. Electron. 11, 8548–8554 (2015) A.R. Polu, H.W. Rhee, D.K. Kim, J. Mater. Sci. Mater. Electron. 11, 8548–8554 (2015)
28.
go back to reference M.M.E. Jacob, S.R.S. Prabaharan, S. Radhakrishna, Solid State Ionics 104, 267–274 (1997) M.M.E. Jacob, S.R.S. Prabaharan, S. Radhakrishna, Solid State Ionics 104, 267–274 (1997)
29.
go back to reference T.K. Lee, A. Ahmad, H.M. Dahlan, M.Y.A. Rahman, J. Appl. Polym. Sci. 124, 2227–2233 (2012) T.K. Lee, A. Ahmad, H.M. Dahlan, M.Y.A. Rahman, J. Appl. Polym. Sci. 124, 2227–2233 (2012)
30.
go back to reference T.K. Lee, S. Afiqah, A. Ahmad, H.M. Dahlan, M.Y.A. Rahman, J. Solid State Electrochem. 16, 2251–2260 (2012) T.K. Lee, S. Afiqah, A. Ahmad, H.M. Dahlan, M.Y.A. Rahman, J. Solid State Electrochem. 16, 2251–2260 (2012)
31.
go back to reference S. Rajendran, O. Mahendran, K. Krishnaveni, J. New Mat. Electrochem. Syst. 6, 25–28 (2003) S. Rajendran, O. Mahendran, K. Krishnaveni, J. New Mat. Electrochem. Syst. 6, 25–28 (2003)
32.
go back to reference A.S. Samsudin, M.B.N. Isa, J. App. Sci. 12, 174–179 (2012) A.S. Samsudin, M.B.N. Isa, J. App. Sci. 12, 174–179 (2012)
33.
go back to reference S. Rajendran, M. Sivakumar, R. Subadevi, Mater. Lett. 58, 641–649 (2004) S. Rajendran, M. Sivakumar, R. Subadevi, Mater. Lett. 58, 641–649 (2004)
34.
go back to reference J.D. Jeon, S.Y. Kwak, B.W. Cho, J. Electrochem. Soc. 152, 1583–1589 (2005) J.D. Jeon, S.Y. Kwak, B.W. Cho, J. Electrochem. Soc. 152, 1583–1589 (2005)
35.
go back to reference V. Aravindan, P. Vickraman, Solid State Sci. 9, 1069–1073 (2007) V. Aravindan, P. Vickraman, Solid State Sci. 9, 1069–1073 (2007)
36.
go back to reference M.V. Leena Chandra, S. Karthickeyan, S. Selvasekarapandian, M. Premalatha, S. Monisha, J. Polym. Eng. 37, 617–631 (2016) M.V. Leena Chandra, S. Karthickeyan, S. Selvasekarapandian, M. Premalatha, S. Monisha, J. Polym. Eng. 37, 617–631 (2016)
37.
go back to reference S. Ramesh, P.L. Ong, Polym. Chem. 1, 702–707 (2010) S. Ramesh, P.L. Ong, Polym. Chem. 1, 702–707 (2010)
38.
go back to reference S.K. Tripathi, A. Gupta, M. Kumari, Bull. Mater. Sci. 35, 969–975 (2012) S.K. Tripathi, A. Gupta, M. Kumari, Bull. Mater. Sci. 35, 969–975 (2012)
39.
go back to reference S. Shastry, K.J. Rao, Solid State Ionics 44, 187–198 (1991) S. Shastry, K.J. Rao, Solid State Ionics 44, 187–198 (1991)
40.
go back to reference K. Ramly, M.I.N. Isa, A.S.A. Khiar, Mater. Res. Innov. 15, S82 (2011) K. Ramly, M.I.N. Isa, A.S.A. Khiar, Mater. Res. Innov. 15, S82 (2011)
41.
go back to reference X. Helan Flora, M. Ulaganathan, R.S. Babu, S. Rajendran, Ionics 18, 731–736 (2012) X. Helan Flora, M. Ulaganathan, R.S. Babu, S. Rajendran, Ionics 18, 731–736 (2012)
42.
go back to reference J.M. Song, H.R. Kang, S.W. Kim, W.M. Lee, H.T. Kim, Electrochim. Acta 48, 1339–1346 (2003) J.M. Song, H.R. Kang, S.W. Kim, W.M. Lee, H.T. Kim, Electrochim. Acta 48, 1339–1346 (2003)
43.
go back to reference R. Prasanth, V. Aravindan, M. Srinivasan, J. Power Sources 202, 299–307 (2012) R. Prasanth, V. Aravindan, M. Srinivasan, J. Power Sources 202, 299–307 (2012)
44.
go back to reference M.A.K.L. P.A.R.D. Jayathilaka, I. Dissanayake, B.E. Albbinsson, Mellander, Electrochim. Acta 47, 3257–3268 (2002) M.A.K.L. P.A.R.D. Jayathilaka, I. Dissanayake, B.E. Albbinsson, Mellander, Electrochim. Acta 47, 3257–3268 (2002)
Metadata
Title
The effect of titanium dioxide nano-filler on the conductivity, morphology and thermal stability of poly(methyl methacrylate)—poly(styrene-co-acrylonitrile) based composite solid polymer electrolytes
Authors
S. V. Ganesan
K. K. Mothilal
S. Selvasekarapandian
T. K. Ganesan
Publication date
26-02-2018
Publisher
Springer US
Published in
Journal of Materials Science: Materials in Electronics / Issue 10/2018
Print ISSN: 0957-4522
Electronic ISSN: 1573-482X
DOI
https://doi.org/10.1007/s10854-018-8815-8

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