Bis(ethylenedioxy)tetrathiafulvalene: the first oxygen-substituted tetrathiafulvalene
Bis(ethylenedioxy)tetrathiafulvalene: the first oxygen-substituted tetrathiafulvalene
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双(乙撑二氧基)四硫富瓦烯:第一个氧取代的四硫富瓦烯
DOI:
10.1021/ja00190a079
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发表时间:
1989
影响因子:
15
通讯作者:
F. Wudl
中科院分区:
文献类型:
--
作者:
T. Suzuki;H. Yamochi;G. Srdanov;K. Hinkelmann;F. Wudl
Since the discovery of the highconductivity of its chloride salt, 1 tetrathiafulvalene (TTF) and all itsderivatives have become the most investigated donors for the generation of organic metals and superconductors. In the TTFfamily, the organic metallic state can be achieved with the unsubstituted and variously substituted sulfur, S'enium, and tellurium heterocycles but the supercon-ducting ate can, so far, be achieved only with derivatives akin to tetramethyltetraselenafulvalene and bis (ethylenedithio) tetrathiafulvalene (BEDT-TTF, aka “ET”). 2 The highest recorded superconducting transition temperature for an organic super-conductor is rc= 11.2 K3 for (BEDT-TTF-í/8) 2Cu (NCS) 2, pre-viously reported by Saito’s group4 as Tc= 10.4 K for the protio sample. While these temperatures are considerably lower than those of the inorganic ceramic, copper oxide based, supercon-ductors (125 K), 5 the rate at which the organic superconductor transition temperatures have been rising with time is still quite impressive [(TMTSF) 2PF6, 0.9 K/25 kbar in 19806 (BEDT-TTF-< f8) 2Cu (SCN) 2, 11.2 K/1 bar in 19883· 4]. The eruption in solid statescience publications caused by the discovery of the copper oxide superconductors7 has inspired a number of theorists to suggest that the chemical species responsible for the mixed valence in these solids is not the copper couple (Cu'VCu111) but essentially oxygenradical cations (“holes on oxygen”). 8 Some have gone as far as suggesting that results of