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Aggregation behavior and non-covalent functionalization of borofullerenes B28, B38, and B40: A density functional theory investigation
Authors:Le Yang  Ying Li  Debo Hao  Lanlan Li  Huifen Peng  Peng Jin
Affiliation:School of Materials Science and Engineering, Hebei University of Technology, Tianjin, China
Abstract:Fullerene-like boron clusters (borofullerenes) are rising stars in the field of cluster chemistry. In this work, density functional theory calculations revealed that the recently reported small borofullerenes Bn (n = 28, 38, and 40) are all highly reactive and tend to form dimers and even trimers spontaneously. In addition, the non-covalent modification of these borofullerenes by various cycloparaphenylene nanorings can form stable host-guest systems with substantial intermolecular charge transfer at both ground and excited states. Our results demonstrate that the borofullerenes are versatile platform for exohedral functionalization, and are very promising candidates for the design of novel nanomaterials with desirable properties.
Keywords:borofullerenes  density functional theory calculations  exohedral functionalization
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