Hostname: page-component-78c5997874-v9fdk Total loading time: 0 Render date: 2024-11-05T08:29:43.643Z Has data issue: false hasContentIssue false

Polymer Ionics

Published online by Cambridge University Press:  29 November 2013

Get access

Extract

The preparation, utilization, and understanding of high polymers represents one of the great triumphs of chemistry and materials science in the 20th century. Synthetic polymers have traditionally been used as structural materials and electrical insulators. Biopolymers often exhibit interesting electrical response phenomena. A recent article in the MRS BULLETIN, for example, discussed piezoelectric properties of both synthetic and biopolymer systems. The newer, synthetic electroactive polymeric materials, however, represent one of the most exciting current areas of polymer materials science.

Many synthetic ionic polymer materials are known; perhaps the first were the polyelectrolytes and crosslinked ion exchange materials. These are materials whose backbone contains charges of one sign, balanced by small counter ions of the opposite sign. Such polyelectrolytes have found very important applications in analytical chemistry, water purification, and chemical processing.

Complexes, in which salts are dissolved in neutral polymer hosts, have until recently received less attention. The area of polymer/salt complexes became extremely active following the work of P.V. Wright, who first clearly showed that polyethylene oxide (PEO) is an excellent polymer host for a number of salts, and that the resulting solid polymer/salt complexes are electrical conductors. M. Armand broadened the investigation of electrical properties of polymer/salt complexes and pointed out that these materials might be useful in electrochemical devices, especially batteries.

This article will discuss the formation, properties, behavior, and applications of polymer electrolytes and mixed conductors—that is, polymeric materials in which charge is transported either by ions or by ionic and electronic charge motion. Our concentration will be on solvent-free materials—materials in which no small molecule solvents are present. There is substantial interest, and substantial progress, in the area of solvent-swollen polymer electrolytes.

Type
Solid State Ionics
Copyright
Copyright © Materials Research Society 1989

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

1.Carr, S.H. and Dunn, P.E., MRS Bulletin 14(2) (1989) p. 22.Google Scholar
2.Wright, P.V., Brit. Polym. J. 7 (1975) p. 319; D.E. Fenton, J.M. Parker, and P.V. Wright, Polymer 14 (1973) p. 589.Google Scholar
3.Armand, M.B., Chatjagno, J.M., and Duclot, M., Extended Abstracts, Second International Meeting on Solid Electrolytes, St. Andrews, 1978; also in Fast Ion Conduction in Solids, edited by P. Vashishta, J.N. Mundy, and G.K. Shenoy (North-Holland, 1979).Google Scholar
4.Slade, R.C.T., Hardwick, A., and Dickens, P.G., Solid State Ionics 9/10 (1983) p. 1053.Google Scholar
5.Polak, A.J., Petty-Weeks, S., and Buehler, A.J., Sensors and Activators 9 (1986) p. 1.CrossRefGoogle Scholar
6.Dupon, R., Papke, B.L., Ratner, M.A., Whitmore, D.H., and Shriver, D.F., J. Am. Chem. Soc. 104 (1982) p. 6247.CrossRefGoogle Scholar
7.Berthier, C., Gorecki, W., Minier, M., Armand, M.B., Chabagno, J.M., and Rigaud, P., Solid State Ionics 11 (1983) p. 91; M. Minier, C. Berthier, and W. Gofecki, J. Physique 45 (1984) p. 739.CrossRefGoogle Scholar
8.Hardy, L.C. and Shriver, D.F., Macromolecules 17 (1984) p. 975; L.C. Hardy and D.F. Shriver, J. Am. Chem. Soc. 107 (1985) p. 3823.CrossRefGoogle Scholar
9.Tsuchida, E. and Shigehara, K., Mol. Cryst. Liq. Cryst. 106 (1984); K. Shigehara, N. Kobayashi, and E. Tsuchida, Solid State Ionics 14 (1984) p. 85.CrossRefGoogle Scholar
10.Bannister, D.J., Davies, G.T., Ward, I.M., and Mclntyre, J.E., Polymer 25 (1984) p. 1800.Google Scholar
11.Liu, H., Okamoto, Y., Skotheim, T., Pak, Y.S., Greenbaum, S.G., and Adamic, K.J., in Solid State Ionics, edited by Nazri, G., Huggins, R.A., and Shriver, D.F. (Mater. Res. Soc. Symp. Proc. 135, Pittsburgh, PA, 1989) p. 337.Google Scholar
12.Doan, K.E., Ganapathiappan, S., Chen, K., Ratner, M.A., and Shriver, D.F., in Solid State Ionics, edited by Nazri, G., Huggins, R.A., and Shriver, D.F. (Mater. Res. Soc. Symp. Proc. 135, Pittsburgh, PA, 1989) p. 343.Google Scholar
13.Ratner, M.A. and Shriver, D.F., Chem. Revs. 80 (1988) p. 109.CrossRefGoogle Scholar
14.Polymer Electrolyte Reviews, edited by MacCallum, J.R. and Vincent, C.A., (Elsevier, London, 1987).Google Scholar
15.Vincent, C.A.. Prog. Solid State Chem. 17 (1987) p. 145.CrossRefGoogle Scholar
16.Synthetic Metals, edited by Aldissi, R., 28 (1988) and 29 (1989).Google Scholar
17.Br. Polymer J. 20 (13) (1988).Google Scholar
18.Tonge, J.S. and Shriver, D.F., in Polymers for Electronic Applications, edited by Lai, J. (CRC Press, Boca Raton, FL, in press).Google Scholar
19.Huq, R. and Farrington, G.C., Solid State Ionics 28/30 (1988) p. 99.Google Scholar
20.Papke, B., Ratner, M.A., Dupon, R., Wong, T., Brodwin, M., and Shriver, D.F., Solid State Ionics 5 (1981) p. 83.CrossRefGoogle Scholar
21.Papke, B., Ratner, M.A., and Shriver, D.F., J. Phys. Chem. Solids 42 (1981) p. 493.CrossRefGoogle Scholar
22.Teeters, D. and Freeh, R., Solid State Ionics 18/19 (1986) p. 271.CrossRefGoogle Scholar
23.Papke, B., Ratner, M.A., and Shriver, D.F., J. Electrochem. Soc. 129 (1982) p. 1434, 1694.CrossRefGoogle Scholar
24.Kakihana, M., Schantz, S., Torell, L.M., and Börjesson, L., in Solid State Ionics, edited by Nazri, G., Huggins, R.A., and Shriver, D.F. (Mater. Res. Soc. Symp. Proc. 135, Pittsburgh, PA, 1989) p. 351.Google Scholar
25.Winters, M.C., Fontanella, J.J., Greenbaum, S.J., and Adamic, K., Br. Polymer J. 20 (1988) p. 195.CrossRefGoogle Scholar
26.Ratner, M. and Nitzan, A., Disc. Far. Soc., in press.Google Scholar
27.Chatani, Y. and Okamura, S., Polymer 28 (1987) p. 1815.CrossRefGoogle Scholar
28.Chatani, Y., Okamura, S., and Fujii, Y., ACS Div. Poly. Chem., Poly. Preprints 30 (1989) p. 404.Google Scholar
29.Battacharja, S., Smoot, S.W., and Whitmore, D.H., Solid State Ionics 18/19 (1986) p. 306.CrossRefGoogle Scholar
30.Gorecki, W., Andreani, R., Berthier, C., Armand, M., Mali, M., Ross, J., and Brinkman, D., Solid State Ionics 18/19 (1986) p. 295.CrossRefGoogle Scholar
31.Adamic, K.J., Greenbaum, S.G., Wintersgill, M., and Fontanella, J.J., J. Appl. Phys. 60 (1986) p. 1342.CrossRefGoogle Scholar
32.Blonsky, P.M., Shriver, D.F., Austin, P.E., and Allcock, H.R., J. Am. Chem. Soc. 106 (1984) p. 6854.CrossRefGoogle Scholar
33.Hall, P.G., Davies, G.R., McIntyre, J.E., Ward, I.M., Bannister, O.J., and LeBrocq, K.M.F., Polym. Commun. 27 (1986) p. 98.Google Scholar
34.Xia, D.W. and Smid, J., Solid State Ionics 14 (1984) p. 221.CrossRefGoogle Scholar
35.Watanabe, M., Nagano, S., Sanui, K., and Ogata, N., J. Power Sources 20 (1987) p. 327.CrossRefGoogle Scholar
36.Blonsky, P.M., Shriver, D.F., Austin, P., and Allcock, H.R., Solid State Ionics 18/19 (1986) p. 258.CrossRefGoogle Scholar
37.Cheradame, H., in IUPAC Macromolecules, edited by Benoit, H. and Rempp, P. (Pergamon, London, 1982); A. Killis, J.F. LeNest, A. Gandini, H. Cheradame, and J.P. Cohen-Addad, Solid State Ionics 14 (1984) p. 231.Google Scholar
38.Ferraro, J.R. and Williams, J.M., Introduction to Synthetic Electrical Conductors (Academic, New York, 1987).Google Scholar
39.Marks, T.J., Science 227 (1985) p. 881.CrossRefGoogle Scholar
40.Jernigan, J.C. and Murray, R.W., J. Phys. Chem. 91 (1987) p. 2070; K. Wilbourn and R.W. Murray, J. Phys. Chem. 92 (1988) p. 3642; H.D. Abruna, in Electroresponsive Molecular and Polymeric Systems I, edited by T.A. Skotheim (Dekker, New York, 1988) p. 97.CrossRefGoogle Scholar
41.Loye, H. Zur, Lyons, L.J., Hardy, L.C., Tonge, J.S., and Shriver, D.F., in Solid State Ionics, edited by Nazri, G., Huggins, R.A., and Shriver, D.F. (Mater. Res. Soc. Symp. Proc. 135, Pittsburgh, PA, 1989) p. 325.Google Scholar
42.Siddiqui, J.A. and Wright, P.V., Polym. Comm. 28 (1987) p. 90.Google Scholar
43.Lee, Y.L. and Crist, B., J. Appl. Phys. 60 (1986) p. 2683; P.R. Sorehsen and T. Jacobsen, Polym. Bull. 9 (1983) p. 47.CrossRefGoogle Scholar
44.Williams, M.L., Landel, R.F., and Ferry, J.D., J. Am. Chem. Soc. 77 (1955) p. 3701.CrossRefGoogle Scholar
45.Killis, A., LeNest, J.F., Cheradame, H., and Gandini, A., Makromol. Chem. 183 (1982) p. 2835.CrossRefGoogle Scholar
46.Vogel, H., Phys. Z. 22 (1922) p. 645; G. Tammann and W. Hesse, Z. Anorg. Allg. Chem. 156 (1926) p. 245; G.S. Fulcher, J. Am. Ceram. Soc. 8 (1925) p. 339.Google Scholar
47.Ratner, M.A., in Polymer Electrolyte Reviews, edited by MacCallum, J.R. and Vincent, C.A. (Elsevier, London, 1987) Chapter 7.Google Scholar
48.Grest, G. and Cohen, M.H., Adv. Chem. Phys. 48 (1981) p. 41.Google Scholar
49.Watanabe, M. and Ogata, N., Polymer Electrolyte Reviews 80 (1988) Chapter 3; Br. Polymer J. 20 (1988) p. 181.Google Scholar
50.Angell, C.A., Solid State Ionics 9/10 (1983) p. 3; 18/19 (1986) p. 72; L.M. Torell and C.A. Angell, Br. Polymer J. 20 (1988) p. 173.CrossRefGoogle Scholar
51.Druger, S.D., Nitzan, A., and Ratner, M.A., J. Chem. Phys. 79 (1983) p. 3133; Phys. Rev. B 31 (1985) p. 939; Phil. Mag. 56B (1987) p. 853.CrossRefGoogle Scholar
52.Druger, S.D. and Ratner, M.A., Phys. Rev. B 38 (1988) p. 1258; R. Granek, A. Nitzan, S.D. Druger, and M.A. Ratner, Solid State Ionics 28/30 (1988) p. 120.CrossRefGoogle Scholar
53.Chen, K.M., Doan, K.E., and Shriver, D.F., work in progress; G.B. Zhou, I.M. Khan, and G.B. Smid, ACS Polymer Preprints 30 (1989) p. 416.Google Scholar
54.Shacklette, L.W., Jow, T.R., Maxfield, M., and Hatami, R., Syn. Metals 28 (1989) p. C555.CrossRefGoogle Scholar
55.Arbizzani, C., Mastragostino, M., Panero, S., Prosperi, P., and Scrosati, R., Syn. Metals 28 (1989) p. C663.CrossRefGoogle Scholar
56.Nakajima, T. and Kawagoe, T., Syn. Metals 28 (1989) p. C629.CrossRefGoogle Scholar
57.Murray, R.W., Electroanalytical Chemistry, edited by Bard, A.J. (Dekker, New York, 1984) p. 191; C.P. Andrieux and J.M. Savéant, J. Phys. Chem. 92 (1988) p. 6761; J.M. Saveant, J. Phys. Chem. 92 (1988) p. 1011.Google Scholar
58.Buck, R.P., J. Electroanalytical Chem. 219 (1987) p. 23.CrossRefGoogle Scholar