A molecular metal with ion-conducting channels

被引:175
作者
Nakamura, T
Akutagawa, T
Honda, K
Underhill, AE
Coomber, AT
Friend, RH
机构
[1] Univ Cambridge, Cavendish Lab, Cambridge CB3 0HE, England
[2] Hokkaido Univ, Res Inst Elect Sci, Sapporo, Hokkaido 060, Japan
[3] Natl Inst Mat & Chem Res, Tsukuba, Ibaraki 305, Japan
[4] Univ Coll N Wales, Dept Chem, Bangor LL57 2UW, Gwynedd, Wales
关键词
D O I
10.1038/28128
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Metallic behaviour is well known in charge-transfer complexes that contain stacks of planar, partially oxidized (or reduced) pi-conjugated molecules. Electronic conduction occurs in the partially occupied, delocalized pi bands formed by intermolecular orbital overlap, and some of these materials exhibit superconductivity(1,2). Counter-ions, present to achieve charge neutrality, usually play a passive role, although in some cases they couple to the electronic structure, for example by imposing a new structural periodicity (a superlattice) by orientational ordering(1). The development of molecular solids that can simultaneously support the transport of both electrons and ions is important for several fields, including the development of solid-state batteries(3,4), electroluminescent devices(5) and biomimetic systems(6,7). Crown ethers are promising components for such systems, as they provide cavities through which ion motion might occur. Here we report that the charge-transfer salt Li(0.6)(15-crown-5-ether) [Ni(dmit)(2)](2).H(2)O exhibits both electron and ion conductivity: the stacks of the nickel complex (dmit is an organic molecule) provide a pathway for electron conduction, and stacks of the crown ethers provide channels for lithium-ion motion. Evidence for the latter above 250 K is provided by NMR and conductivity studies. We also see evidence for coupling of the electron and ion motions. This compound might serve as a model for the development of other hybrid electronic/ionic conducting materials.
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页码:159 / 162
页数:4
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