Chemical shielding of H2O and HF encapsulated inside a C60 cage

Author:

Jarvis Samuel P.ORCID,Sang Hongqian,Junqueira Filipe,Gordon OliverORCID,Hodgkinson Jo E. A.,Saywell AlexORCID,Rahe Philipp,Mamone Salvatore,Taylor Simon,Sweetman AdamORCID,Leaf Jeremy,Duncan David A.,Lee Tien-Lin,Thakur Pardeep K.,Hoffman Gabriella,Whitby Richard J.ORCID,Levitt Malcolm H.ORCID,Held Georg,Kantorovich LevORCID,Moriarty PhilipORCID,Jones Robert G.ORCID

Abstract

AbstractMolecular surgery provides the opportunity to study relatively large molecules encapsulated within a fullerene cage. Here we determine the location of an H2O molecule isolated within an adsorbed buckminsterfullerene cage, and compare this to the intrafullerene position of HF. Using normal incidence X-ray standing wave (NIXSW) analysis, coupled with density functional theory and molecular dynamics simulations, we show that both H2O and HF are located at an off-centre position within the fullerene cage, caused by substantial intra-cage electrostatic fields generated by surface adsorption of the fullerene. The atomistic and electronic structure simulations also reveal significant internal rotational motion consistent with the NIXSW data. Despite this substantial intra-cage interaction, we find that neither HF or H2O contribute to the endofullerene frontier orbitals, confirming the chemical isolation of the encapsulated molecules. We also show that our experimental NIXSW measurements and theoretical data are best described by a mixed adsorption site model.

Funder

Leverhulme Trust

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Biochemistry,Environmental Chemistry,General Chemistry

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