Communications- Preparation and Chemistry of Tetracyanoethylene

O Webster, W Mahler, and R BEnson. J. Org. ... Endrit Shurdha , Saul H. Lapidus , Peter W. Stephens , Curtis E. Moore , Arnold L. Rheingold , and Joel...
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Preparation and Chemistry of Tetracyanoethylene Anion Radical

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TCXE to yield X(TCNE-)2. Certain anions have also been found to convert TCNE to TCNE- and the reaction of TCNE with potassium or sodium iodide provides a convenient laboratory synthesis of TCNE 7 .

This report describes the synthesis and prelimi3KI + 'LTCNE +2K+TCYE- + KIj nary study of the chemical properties of the anion radical of tetracyanoethylene (TCKE The Tetracyanoethylene (17.0 g., 0.133 mole) and physical properties of TCNE 7 ,including spectral potassium iodide (30.0 g., 0.181 mole) were added and electron paramagnetic resonance data, are be- to 500 ml. of acetonitrile a t room temperature with ing reported concurrently.' stirring. The potassium iodide dissolved, and 11.4 Work in this laboratory has previously estab- g. (51% yield) of K+TCNE? crystallized from lished that TCNE is an unusually strong n-acid, the dark yellow solution. The bronze-colored prodreadily giving complexes with a variety of ?r-bases; uct was purified by recrystallization from acetoq., xylene, mesitylene, e t c 2 In these complexes nitrile. Anal. Calcd. for C6N4K:C, 43.10; N, 33.51. there is only partial electron transfer, as indicated Found: C, 43.19; N, 33.43. by their diamagnetic properties. KfTCKE- in the solid state is stable to usual Recently, derivatives of TCNE have been syn- atmospheric conditions for several weeks, and the thesized in which there is complete electron trans- compound can be heated at 150" in an inert atfer, as demonstrated by electron paramagnetic mosphere for three hours without apparent change. resonance (EPR) studies. For example, reaction of In solution, however, the ion radical is quite sensipotassium with TCXE in the vapor phase has tive to oxygen and, to a lesser degree, to water. given a purple solid identified as the ion radical Reaction of K+TCNE- with water gives a 76% K+TCNE- . I The less reactive sodium amalgam yield of potassium tri~yanoethenolate.~ The action of dilute hydochloric acid on K+TCXE- produces SC CN NC I