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Interaction Of C_(60) Molecules On Si(100)

机译:C_(60)分子在Si(100)上的相互作用

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The interactions between pairs of C_(60) molecules adsorbed upon the Si(100) surface have been studied via a series of DFT calculations. Configurations which have the fullerene cage located within the dimer trench bonded to four dimers (t4) have been investigated, as these have previously been found to be among the most stable for the C_(60) molecule. These t4 configurations are explored with all possible pairs of fullerene configuration combinations considered. We have looked at two distinct groups of separation distances between the two C_(60) molecules. These have the fullerene bonding sites as either adjacent to one another or separated by one Si surface dimer. Comparisons between the two groups confirm the trend of the combinations becoming more favourable at a greater fullerene separation. In the systems with adjacent bonding sites the combined pair of fullerenes were in general less favourable than the two isolated cases. At the longer fullerene separation distance this trend was reversed. The longer fullerene separation distance reflects the experimental separation observed by Moriarty et al.
机译:通过一系列DFT计算研究了吸附在Si(100)表面上的C_(60)分子对之间的相互作用。已经研究了具有位于与四个二聚体(t4)键合的二聚体沟槽内的富勒烯笼的构型,因为先前已经发现这些构型对于C_(60)分子是最稳定的。在考虑所有可能的富勒烯构型组合后,探索了这些t4构型。我们研究了两个不同的C_(60)分子之间的分隔距离。这些具有彼此相邻或被一个Si表面二聚体隔开的富勒烯键合位点。两组之间的比较证实,组合的趋势在富勒烯更大的分离中变得更加有利。在具有相邻结合位点的体系中,富勒烯的结合对通常不如两个分离的情况好。在较长的富勒烯分离距离处,这种趋势被逆转。更长的富勒烯分离距离反映了Moriarty等人观察到的实验分离。

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