том 210 издание 10 страницы 1976-1984

Aberration-corrected microscopy and spectroscopy analysis of pristine, nitrogen containing detonation nanodiamond

Тип публикацииJournal Article
Дата публикации2013-10-18
scimago Q2
wos Q3
БС2
SJR0.416
CiteScore3.6
Impact factor1.9
ISSN18626300, 18626319
Materials Chemistry
Surfaces, Coatings and Films
Electronic, Optical and Magnetic Materials
Condensed Matter Physics
Electrical and Electronic Engineering
Surfaces and Interfaces
Краткое описание
Aberration-corrected transmission electron microscopy, electron energy-loss spectroscopy, and density functional theory (DFT) calculations are used to solve several key questions about the surface structure, the particle morphology, and the distribution and nature of nitrogen impurities in detonation nanodiamond (DND) cleaned by a recently developed ozone treatment. All microscopy and spectroscopy measurements are performed at a lowered acceleration voltage (80/120 kV), allowing prolonged and detailed experiments to be carried out while minimizing the risk of knock-on damage or surface graphitization of the nanodiamond. High-resolution TEM (HRTEM) demonstrates the stability of even the smallest nanodiamonds under electron illumination at low voltage and is used to image the surface structure of pristine DND. High resolution electron energy-loss spectroscopy (EELS) measurements on the fine structure of the carbon K-edge of nanodiamond demonstrate that the typical π* pre-peak in fact consists of three sub-peaks that arise from the presence of, amongst others, minimal fullerene-like reconstructions at the nanoparticle surfaces and deviations from perfect sp3 coordination at defects in the nanodiamonds. Spatially resolved EELS experiments evidence the presence of nitrogen within the core of DND particles. The nitrogen is present throughout the whole diamond core, and can be enriched at defect regions. By comparing the fine structure of the experimental nitrogen K-edge with calculated energy-loss near-edge structure (ELNES) spectra from DFT, the embedded nitrogen is most likely related to small amounts of single substitutional and/or A-center nitrogen, combined with larger nitrogen clusters.
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ГОСТ |
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Turner S. et al. Aberration-corrected microscopy and spectroscopy analysis of pristine, nitrogen containing detonation nanodiamond // Physica Status Solidi (A) Applications and Materials Science. 2013. Vol. 210. No. 10. pp. 1976-1984.
ГОСТ со всеми авторами (до 50) Скопировать
Turner S., Shenderova O. A., Da Pieve F., Lu Y. G., Yücelen E., Verbeeck J., Lamoen D., Van Tendeloo G. Aberration-corrected microscopy and spectroscopy analysis of pristine, nitrogen containing detonation nanodiamond // Physica Status Solidi (A) Applications and Materials Science. 2013. Vol. 210. No. 10. pp. 1976-1984.
RIS |
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TY - JOUR
DO - 10.1002/pssa.201300315
UR - https://doi.org/10.1002/pssa.201300315
TI - Aberration-corrected microscopy and spectroscopy analysis of pristine, nitrogen containing detonation nanodiamond
T2 - Physica Status Solidi (A) Applications and Materials Science
AU - Turner, Stuart
AU - Shenderova, Olga A.
AU - Da Pieve, Fabiana
AU - Lu, Ying Gang
AU - Yücelen, Emrah
AU - Verbeeck, J.
AU - Lamoen, Dirk
AU - Van Tendeloo, Gustaaf
PY - 2013
DA - 2013/10/18
PB - Wiley
SP - 1976-1984
IS - 10
VL - 210
SN - 1862-6300
SN - 1862-6319
ER -
BibTex |
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BibTex (до 50 авторов) Скопировать
@article{2013_Turner,
author = {Stuart Turner and Olga A. Shenderova and Fabiana Da Pieve and Ying Gang Lu and Emrah Yücelen and J. Verbeeck and Dirk Lamoen and Gustaaf Van Tendeloo},
title = {Aberration-corrected microscopy and spectroscopy analysis of pristine, nitrogen containing detonation nanodiamond},
journal = {Physica Status Solidi (A) Applications and Materials Science},
year = {2013},
volume = {210},
publisher = {Wiley},
month = {oct},
url = {https://doi.org/10.1002/pssa.201300315},
number = {10},
pages = {1976--1984},
doi = {10.1002/pssa.201300315}
}
MLA
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Turner, Stuart, et al. “Aberration-corrected microscopy and spectroscopy analysis of pristine, nitrogen containing detonation nanodiamond.” Physica Status Solidi (A) Applications and Materials Science, vol. 210, no. 10, Oct. 2013, pp. 1976-1984. https://doi.org/10.1002/pssa.201300315.