An optimised scalable synthesis of H<sub>2</sub>O@C<sub>60</sub> and a new synthesis of H<sub>2</sub>@C<sub>60</sub>
作者:Andrea Krachmalnicoff、Malcolm H. Levitt、Richard J. Whitby
DOI:10.1039/c4cc06198e
日期:——
New efficient and practical routes to H2O@C60, D2O@C60 and H2@C60 are described.
本文介绍了制备H2O@C60、D2O@C60和H2@C60的新型高效实用路线。
A Single Water Molecule Trapped Inside Hydrophobic C60
作者:Carlo Thilgen
DOI:10.1002/anie.201107379
日期:2012.1.16
Dry water in a wet dungeon? An isolated H2O molecule has been trapped permanently insidehydrophobicC60 (see picture; green C, white H, red O). The endohedral fullerene H2O@C60 was synthesized by opening, filling, and reclosing the carbon cage. The incarcerated water does not alter the structure of the cage, but it confers an appreciable dipole moment to the new entity with its intrinsically apolar
在潮湿的地牢中干水?分离出的H 2 O分子已被永久捕获在疏水性C 60中(参见图片;绿色C,白色H,红色O)。通过打开,填充和重新封闭碳笼,合成了内面富勒烯H 2 O @ C 60。被监禁的水不会改变笼子的结构,但会给具有固有非极性碳球的新实体带来可观的偶极矩。