"Debye-Scherrer Ellipses" from 3D Fullerene Polymers: An Anisotropic Pressure Memory Signature

Author:

Marques L.1,Mezouar M.2,Hodeau J.-L.3,Núñez-Regueiro M.4,Serebryanaya N. R.5,Ivdenko V. A.5,Blank V. D.6,Dubitsky G. A.6

Affiliation:

1. Departamento de Fı́sica, Universidade de Aveiro, 3800 Aveiro, Portugal.

2. European Synchrotron Radiation Facility, 38041 Grenoble, France.

3. Laboratoire de Cristallographie, CNRS, Boite Postale 166 Cedex 09, 38042 Grenoble, France.

4. Centre de Recherches sur les Très Basses Températures, CNRS, Boite Postale 166 Cedex 09, 38042 Grenoble, France.

5. Institute of Spectroscopy RAS, Troitsk Moscow Region, 142092 Russia.

6. Research Center for Superhard Materials, 7-a Centralnaya Street, Troitsk Moscow Region, 142092 Russia.

Abstract

High-pressure studies on fullerenes have previously shown the existence of one- and two-dimensional (2D) polymerized C 60 structures. Synchrotron radiation measurements, performed on C 60 samples quenched from 13 gigapascals and 820 kelvin, yield unambiguous proof for the existence of a three-dimensional (3D) polymerized C 60 derivative. Moreover, unusual ellipsoidal Debye-Scherrer diffraction patterns are observed, which shows that the giant anisotropic deformation induced by the nonhydrostatic compression is retained in the quenched samples. The multiple bonding possibilities of the highly symmetrical C 60 allow the retention (down to ambient pressure) of the deformation, a phenomenon reported previously only under high pressure.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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