Schön J H, Kloc C, Batlogg B
Bell Laboratories, Lucent Technologies, Murray Hill, New Jersey 07974-0636, USA.
Nature. 2000 Aug 17;406(6797):702-4. doi: 10.1038/35021011.
Progress in the field of superconductivity is often linked to the discovery of new classes of materials, with the layered copper oxides being a particularly impressive example. The superconductors known today include a wide spectrum of materials, ranging in complexity from simple elemental metals, to alloys and binary compounds of metals, to multi-component compounds of metals and chalcogens or metalloids, doped fullerenes and organic charge-transfer salts. Here we present a new class of superconductors: insulating organic molecular crystals that are made metallic through charge injection. The first examples are pentacene, tetracene and anthracene, the last having the highest transition temperature, at 4 K. We anticipate that many other organic molecular crystals can also be made superconducting by this method, which will lead to surprising findings in the vast composition space of molecular crystals.
超导领域的进展常常与新型材料的发现相关联,层状铜氧化物就是一个特别引人注目的例子。如今已知的超导体包括各种各样的材料,其复杂程度从简单的元素金属,到金属合金和二元化合物,再到金属与硫族元素或类金属的多组分化合物、掺杂富勒烯和有机电荷转移盐不等。在此,我们展示了一类新型超导体:通过电荷注入而变成金属性的绝缘有机分子晶体。首批例子是并五苯、并四苯和蒽,其中蒽的转变温度最高,为4K。我们预计,许多其他有机分子晶体也可以通过这种方法制成超导体,这将在分子晶体广阔的组成空间中带来惊人的发现。