The paper traces the origins of the relevant developments that have led to the emergence and contributed to the evolution of the solid-electrolyte oxygen sensor. Its main features are discussed in general, and a number of different sensor designs are then critically examined.
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References
1.
Van't Hoff, J.H.1890. Zf Phys Chem, 5, 322.
2.
Fritsch, C.1897. Widemanns Ann, 60,300.
3.
DR Patent no 104,3 72,-1897.
4.
Nernst, W.1900. Z Electrochem,6, 41.
5.
Nernst, W.1889. Phys Chem, 4, 117.
6.
Duane, W.1898. Ann d Phys u Chem, 65, 374.
7.
Haber, F. and St Tolloczke .1904. Z Anorg Chem, 41,407.
8.
Haber, F. and Möser, A.1905. Z Elektrochem, 11, 593.
9.
Haber, F. and Fleischman, F.1906. Z Anorg Chem,51, 245.
10.
De Boer, J.H.1931. Zirconium, Foote-Prints, 3, 2,3.
11.
Ruff, O. and Laaschke, G.1914. Z Anorg Chem, 87, 198. ibid, 1916. 97, 73. Ruff, O. and Moczalla, J.1924. Z Anorg u allg Chem, 133,193. Ruff, O. and Ebert, F.1929. Z Anorg u allg Chem, 180, 19. Ruff, et al. 1929. Z Anorg u allg Chem, 180,215. ibid , 1929. 185, 221. ibid , 1931. 196, 3, 335. ibid , 1932. 207, 308. ibid , 1933. 213, 333.
12.
Bohm, J.1925. Z Anorg u allg Chem, 149, 217. Davey, W.P.1924. Phys Rev, 23, 763. ibid, 1926.27, 798. Goldschmidt, V.M.1926. Geoch vert Ges, 6-8. Oslo. Cohn, W.M. and Tolksdorf , S.1930. Z Phys Chem, 88, 331. Ebbert , F. and Cohn, E.1933. Z Anorg u allg Chem, 213, 321.
13.
Ketelaar, J. and Willems, P.J.A.1937. Rec Trav Chim, 56, 29. Bussem, W. et al. 1937. Ber Dtsch Keram Ges, 18, 433. Ryschkewitsch, E.1937. Chem App, 24, 137. Von Wartenberg, H. and Eckhardt, K.1937. Z. anorg u allg Chem, 232, 179.
14.
Thiel, Joh.1925. Phys Z, 26, 321.
15.
Joffes A.1923. Ann d Phys, 72, 461.
16.
Frenkel, J.1926. Z Phys,35, 652.
17.
Reinhold, H.1928. Z Anorg u allg Chem,171, 181.
18.
Wagner, C.1930. Z Phys Chem, 11B, 139.
19.
Wagner, C. and Schottky, W.1930. Z Phys Chem, 11B, 163.
20.
Wagner, C.1933. Z Phys Chem Leipzig, B21, 25.
21.
Schottky, W.1935. Wiss Veroff Siemens werke , 14, (H2), 1. Wagner, C.1933. Z Phys Chem , B21, 42. Reinhold, H.1934. Z Elektrochem, 40, 361. Wagner , C.ibid, 364. Jost, W.1932. Z Phys Chem, B16, 129. Jost, W.1933. J Chem Phys, 1, 466. Jost, W.1934. Z Phys Chem, A169, 129. Schottky , W.1935. Z Phys Chem, B29, 335. Jost, W. and Nehlep, G.1936. Z Phys Chem, B32, 1.
22.
Koch, E. and Wagner, C.1937. Z Phys Chem, B38, 295.
23.
Zintl, E. and Udgard, A.1939. Z Anorg u allg Chem, 240, 150. Zintl, E. and Croatto, V.1939. Z Anorg u allg Chem, 242, 79. Zintl, E. and Udgard, A.1940. Z Anorg u allg Chem, 240,150.
24.
Wagner, C.1943. Naturwissenschaften, 31, 265.
25.
Geller, R.F. and Yavorsky, P.J.1945. J Res Nat Bur Stan, 35, (1), 87.
Hund, F. and Fricke, R.1950. Naturwiss, 37, 424. Hund, F. and Durwachter, W.1951. Z Anorg u allg Chem, 265, 65. Hund, F.1951. Z Elektrochem, 55, 363. Hund, F.1951. Z Anorg Chem, 265, 62. Hund, F. and Mezger, F.1952. Z Phys Chem, 201, 268. Hund, F.1952. Z Phys Chem, 199, 142. Hund, F.1953. Z Anorg Chem, 274, 105.
29.
eg, Augustinik, A.I. and Antselevich , N.S.1953. Zh Fix Khim, 27, 973. Trombe, F. and Foex, M.1953. Compt Rend, 236, 1783. Duwez, P. et al. 1952. J Am Ceram Soc , 35, 107. Roth, R.S., 1 956. J Am Ceram Soc, 39, 196.
30.
eg, Sanbongi, K. and Ohtani, M.1956. Res Inst of Min Dress and Metal, 204. Peters , H. and Mobius, H.H.1958. Z Phys Chem Leipzig , 209, 298.
31.
Kiukkola, K. and Wagner, C., 1957. J Electrochem Soc, 104, 379.