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Polyvinylidene fluoride molecules in nanofibers, imaged at atomic scale by aberration corrected electron microscopy.

Authors :
Lolla D
Gorse J
Kisielowski C
Miao J
Taylor PL
Chase GG
Reneker DH
Source :
Nanoscale [Nanoscale] 2016 Jan 07; Vol. 8 (1), pp. 120-8.
Publication Year :
2016

Abstract

Atomic scale features of polyvinylidene fluoride molecules (PVDF) were observed with aberration corrected transmission electron microscopy. Thin, self-supporting PVDF nanofibers were used to create images that show conformations and relative locations of atoms in segments of polymer molecules, particularly segments near the surface of the nanofiber. Rows of CF2 atomic groups, at 0.25 nm intervals, which marked the paths of segments of the PVDF molecules, were seen. The fact that an electron microscope image of a segment of a PVDF molecule depended upon the particular azimuthal direction, along which the segment was viewed, enabled observation of twist around the molecular axis. The 0.2 nm side-by-side distance between the two fluorine atoms attached to the same carbon atom was clearly resolved. Morphological and chemical changes produced by energetic electrons, ranging from no change to fiber scission, over many orders of magnitude of electrons per unit area, promise quantitative new insights into radiation chemistry. Relative movements of segments of molecules were observed. Promising synergism between high resolution electron microscopy and molecular dynamic modeling was demonstrated. This paper is at the threshold of growing usefulness of electron microscopy to the science and engineering of polymer and other molecules.

Details

Language :
English
ISSN :
2040-3372
Volume :
8
Issue :
1
Database :
MEDLINE
Journal :
Nanoscale
Publication Type :
Academic Journal
Accession number :
26369731
Full Text :
https://doi.org/10.1039/c5nr01619c