Spin-Transition Polymers: From Molecular Materials Toward Memory Devices

Author:

Kahn O.1,Martinez C. Jay1

Affiliation:

1. O. Kahn is in the Laboratoire des Sciences Moléculaires, Institut de Chimie de la Matière Condensée de Bordeaux, 33608 Pessac, France. C. J. Martinez is with the Delarue Card Systems, 14 rue Jean Baptiste Colbert, 14021 Caen, France.

Abstract

Some 3d n (4 ≤ n ≤ 7) transition metal compounds exhibit a cooperative transition between a low-spin (LS) and a high-spin (HS) state. This transition is abrupt and occurs with a thermal hysteresis, which confers a memory effect on the system. The intersite interactions and thus the cooperativity are magnified in polymeric compounds such as [Fe(Rtrz) 3 ]A 2 ·nH 2 O in which the Fe 2+ ions are triply bridged by 4-R-substituted-1,2,4-triazole molecules. Moreover, in these compounds, the spin transition is accompanied by a well-pronounced change of color between violet in the LS state and white in the HS state. The transition temperatures of these materials can be fine tuned, using an approach based on the concept of a molecular alloy. In particular, it is possible to design a compound for which room temperature falls in the middle of the thermal hysteresis loop. These materials have many potential applications, for example, as temperature sensors, as active elements of various types of displays, and in information storage and retrieval.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference53 articles.

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2. L. Cambi and A. Gagnasso Atti. Accad. Naz. Lincei 13 809 (1931).

3. L. Cambi L. Szegö A. Cagnasso ibid. 15 266 (1932a); ibid. 15 329 (1932b).

4. Sorai S., Seki S., J. Phys. Chem. Solids 35, 555 (1974).

5. H. A. Goodwin Coord. Chem. Rev. 18 293 (1976).

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