Dynamic synthesis of diamonds
1
Laboratoire de Chimie Physique, ENSCMu, 3 rue Alfred Werner, 68093 Mulhouse Cedex, France
|
2
Institut franco-allemand de recherches de Saint-Louis (ISL), 5 rue du Général Cassagnou, BP 34, 68301 Saint-Louis Cedex, France
|
3
Continental Carbon Company, 10655 Richmond Avenue, Suite #100, Houston, Texas 77042, USA
|
Тип публикации: Journal Article
Дата публикации: 2000-04-01
scimago Q1
wos Q1
БС1
SJR: 0.792
CiteScore: 7.0
Impact factor: 5.1
ISSN: 09259635, 18790062
Materials Chemistry
General Chemistry
Electronic, Optical and Magnetic Materials
Electrical and Electronic Engineering
Mechanical Engineering
Краткое описание
Nanometer-size diamonds were produced by firing of high explosive mixtures in water confinement. This simple method avoids the use of inert gas and is efficient enough to prevent the oxidation and graphitization of recovered diamonds. Studies of thermal and luminous phenomena were performed to examine eventually post-combustion phase. Condensed carbon yields of 30–55% were achieved for different explosive compositions, some of them containing metallic, carbonaceous or organic additives. For all the experiments, the presence of a diamond phase was revealed by X-ray diffraction, SEM, and TEM. To remove materials still unconverted to diamond, various selective oxidation treatments (with KNO 3 /KOH, H 2 O 2 /HNO 3 mixtures) were carried out, leading to light gray ultradispersed diamond aggregates with a yield up to 60%. Otherwise, shock wave compression synthesis of diamond has been realized by using a planar impact system at 2 km/s. Compressed carbon products were obtained from several carbon precursors (graphite, carbon black, fullerenes, organic substances, …) mixed with a diverse metal matrix which acts as a cooling agent and stops the process of retro-graphitization. XRD analysis shows that diamond can be produced from many carbon materials with quenching as well as appropriate pressures and temperatures.
Найдено
Ничего не найдено, попробуйте изменить настройки фильтра.
Найдено
Ничего не найдено, попробуйте изменить настройки фильтра.
Топ-30
Журналы
|
1
2
3
4
5
6
7
|
|
|
Diamond and Related Materials
7 публикаций, 18.92%
|
|
|
Physical Review B
2 публикации, 5.41%
|
|
|
Key Engineering Materials
2 публикации, 5.41%
|
|
|
Journal of Chemical Physics
1 публикация, 2.7%
|
|
|
Journal of Applied Physics
1 публикация, 2.7%
|
|
|
Carbon
1 публикация, 2.7%
|
|
|
Materials Research Bulletin
1 публикация, 2.7%
|
|
|
Materials
1 публикация, 2.7%
|
|
|
Bulletin of Materials Science
1 публикация, 2.7%
|
|
|
Journal of Materials Science
1 публикация, 2.7%
|
|
|
Applied Magnetic Resonance
1 публикация, 2.7%
|
|
|
Journal of Physics Condensed Matter
1 публикация, 2.7%
|
|
|
Colloids and Surfaces A: Physicochemical and Engineering Aspects
1 публикация, 2.7%
|
|
|
Catalysis Today
1 публикация, 2.7%
|
|
|
Applied Catalysis A: General
1 публикация, 2.7%
|
|
|
Glass Physics and Chemistry
1 публикация, 2.7%
|
|
|
Fullerenes Nanotubes and Carbon Nanostructures
1 публикация, 2.7%
|
|
|
Polymer-Plastics Technology and Engineering
1 публикация, 2.7%
|
|
|
Journal of Superhard Materials
1 публикация, 2.7%
|
|
|
Materials Science Forum
1 публикация, 2.7%
|
|
|
Russian Chemical Reviews
1 публикация, 2.7%
|
|
|
1
2
3
4
5
6
7
|
Издатели
|
2
4
6
8
10
12
14
|
|
|
Elsevier
13 публикаций, 35.14%
|
|
|
Springer Nature
4 публикации, 10.81%
|
|
|
Trans Tech Publications
3 публикации, 8.11%
|
|
|
AIP Publishing
2 публикации, 5.41%
|
|
|
American Physical Society (APS)
2 публикации, 5.41%
|
|
|
Pleiades Publishing
2 публикации, 5.41%
|
|
|
Taylor & Francis
2 публикации, 5.41%
|
|
|
MDPI
1 публикация, 2.7%
|
|
|
IOP Publishing
1 публикация, 2.7%
|
|
|
Autonomous Non-profit Organization Editorial Board of the journal Uspekhi Khimii
1 публикация, 2.7%
|
|
|
2
4
6
8
10
12
14
|
- Мы не учитываем публикации, у которых нет DOI.
- Статистика публикаций обновляется еженедельно.
Вы ученый?
Создайте профиль, чтобы получать персональные рекомендации коллег, конференций и новых статей.
Метрики
37
Всего цитирований:
37
Цитирований c 2024:
2
(5.4%)
Цитировать
ГОСТ |
RIS |
BibTex |
MLA
Цитировать
ГОСТ
Скопировать
Donnet J. et al. Dynamic synthesis of diamonds // Diamond and Related Materials. 2000. Vol. 9. No. 3-6. pp. 887-892.
ГОСТ со всеми авторами (до 50)
Скопировать
Donnet J., Fousson E., Wang T., Samirant M., Baras C., Pontier Johnson M. Dynamic synthesis of diamonds // Diamond and Related Materials. 2000. Vol. 9. No. 3-6. pp. 887-892.
Цитировать
RIS
Скопировать
TY - JOUR
DO - 10.1016/S0925-9635(99)00215-0
UR - https://doi.org/10.1016/S0925-9635(99)00215-0
TI - Dynamic synthesis of diamonds
T2 - Diamond and Related Materials
AU - Donnet, J.-B.
AU - Fousson, E.
AU - Wang, Tao
AU - Samirant, M.
AU - Baras, C.
AU - Pontier Johnson, M
PY - 2000
DA - 2000/04/01
PB - Elsevier
SP - 887-892
IS - 3-6
VL - 9
SN - 0925-9635
SN - 1879-0062
ER -
Цитировать
BibTex (до 50 авторов)
Скопировать
@article{2000_Donnet,
author = {J.-B. Donnet and E. Fousson and Tao Wang and M. Samirant and C. Baras and M Pontier Johnson},
title = {Dynamic synthesis of diamonds},
journal = {Diamond and Related Materials},
year = {2000},
volume = {9},
publisher = {Elsevier},
month = {apr},
url = {https://doi.org/10.1016/S0925-9635(99)00215-0},
number = {3-6},
pages = {887--892},
doi = {10.1016/S0925-9635(99)00215-0}
}
Цитировать
MLA
Скопировать
Donnet, J.-B., et al. “Dynamic synthesis of diamonds.” Diamond and Related Materials, vol. 9, no. 3-6, Apr. 2000, pp. 887-892. https://doi.org/10.1016/S0925-9635(99)00215-0.