Science. 1988 Feb 19;239(4842):896-9. doi: 10.1126/science.239.4842.896.
From ab initio calculations on various clusters representing the La2-xSrxCu(1)O(4) and Y(1)Ba(2)Cu(3)O(7) classes of high-temperature superconductors, it is shown that (i) all copper sites have a Cu(II)(d(9))oxidation state with one unpaired spin that is coupled antiferromagnetically to the spins of adjacent Cu(II) sites; (ii) oxidation beyond the cupric (Cu(II)) state leads not to Cu(III) but rather to oxidized oxygen atoms, with an oxygen ppi hole bridging two Cu(II) sites; (iii) the oxygen ppihole at these oxidized sites is ferromagnetically coupled to the adjacent Cu(II)d electrons despite the fact that this is opposed by the direct dd exchange; and (iv) the hopping of these oxygen ppi holes (in CuO sheets or chains) from site to site is responsible for the conductivity in these systems (N-electron band structures are reported for the migration of these localized charges).
从代表高温超导 La2-xSrxCu(1)O(4) 和 Y(1)Ba(2)Cu(3)O(7) 两类的各种团簇的从头算计算中表明:(i)所有铜位点都具有 Cu(II)(d9)氧化态,一个未配对的自旋与相邻 Cu(II)位点的自旋反铁磁耦合;(ii)氧化超出铜(Cu(II))态不会导致 Cu(III),而是导致氧化的氧原子,其中氧 ppi 孔桥接两个 Cu(II)位点;(iii)尽管直接 dd 交换反对,但这些氧化位点的氧 ppi 孔中的氧 ppi 孔(在 CuO 片或链中)与相邻的 Cu(II)d 电子铁磁耦合;(iv)这些氧 ppi 孔(在 CuO 片或链中)从一个位点到另一个位点的跃迁负责这些系统中的导电性(报道了这些局部电荷迁移的 N 电子能带结构)。