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Xenon
Known as:
Xe
, Xenon [Chemical/Ingredient]
, Xe element
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A noble gas with the atomic symbol Xe, atomic number 54, and atomic weight 131.30. It is found in the earth's atmosphere and has been used as an…
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National Institutes of Health
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Related topics
Related topics
12 relations
Broader (2)
Anesthetics, Inhalation
Noble Gases
In Blood
Xenon Isotopes
Xenon Radioisotopes
Xenon:VFr/PPres:Pt:Airway adaptor:Qn
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Narrower (2)
xenon chloride
xenon fluoride
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
Highly Cited
2003
Highly Cited
2003
Fluorine-free organoxenon chemistry: HXeCCH, HXeCC, and HXeCCXeH.
L. Khriachtchev
,
Hanna Tanskanen
,
J. Lundell
,
M. Pettersson
,
Harri Kiljunen
,
M. Räsänen
Journal of the American Chemical Society
2003
Corpus ID: 27769471
Three novel Xe-containing organic compounds, HXeCCH, HXeCC (open-shell species), and HXeCCXeH, are identified using infrared…
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Highly Cited
2003
Highly Cited
2003
Gas adsorption on heterogeneous single-walled carbon nanotube bundles.
Wei Shi
,
J. Johnson
Physical Review Letters
2003
Corpus ID: 7227634
Optimization of carbon nanotube bundles containing a distribution of nanotube diameters always gives structures with packing…
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Highly Cited
2003
Highly Cited
2003
Chemical compounds formed from diacetylene and rare-gas atoms: HKrC4H and HXeC4H.
Hanna Tanskanen
,
L. Khriachtchev
,
J. Lundell
,
Harri Kiljunen
,
M. Räsänen
Journal of the American Chemical Society
2003
Corpus ID: 23827191
New organic rare-gas compounds, HRgC4H (Rg = Kr or Xe), are identified in matrix-isolation experiments supported by ab initio…
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Highly Cited
2000
Highly Cited
2000
Gases Do not adsorb on the interstitial channels of closed-ended single-walled carbon nanotube bundles
S. Talapatra
,
Zambano Az
,
S. E. Weber
,
A. Migone
Physical Review Letters
2000
Corpus ID: 45480034
We have experimentally determined the binding energies of Xe, CH4, and Ne on samples of closed-ended single-wall nanotube (SWNT…
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Highly Cited
1995
Highly Cited
1995
Ion-beam-induced transformation of diamond.
Prawer
,
Kalish
Physical Review B (Condensed Matter)
1995
Corpus ID: 45607050
The ion-beam-induced transformation of insulating diamond to a conducting form of carbon is explored by performing measurements…
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Highly Cited
1994
Highly Cited
1994
Optical pulse propagation at negative group velocities due to a nearby gain line.
Bolda
,
Garrison
,
Chiao
Physical Review A. Atomic, Molecular, and Optical…
1994
Corpus ID: 35763088
For a pulse with carrier frequency detuned less than an atomic plasma frequency but outside a narrow Lorentzian gain line, the…
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Highly Cited
1991
Highly Cited
1991
Imaging Xe with a low-temperature scanning tunneling microscope.
D. Eigler
,
P. Weiss
,
E. Schweizer
,
N. D. Lang
Physical Review Letters
1991
Corpus ID: 8565026
We have obtained images of individual Xe atoms absorbed on a Ni(110) surface using a low-temperature scanning tunneling…
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Highly Cited
1990
Highly Cited
1990
Dimensional changes of metallic glasses during bombardment with fast heavy ions.
Ming-dong Hou
,
S. Klaumünzer
,
Gerhard Schumacher
Physical Review B (Condensed Matter)
1990
Corpus ID: 42134639
Small strips of various metal-metalloid glasses and metal-metal glasses have been irradiated below 50 K with 360-MeV Xe ions…
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Highly Cited
1989
Highly Cited
1989
Properties, detectability and origin of interstellar diamonds in meteorites
R. Lewis
,
E. Anders
,
B. Draine
Nature
1989
Corpus ID: 4321319
Laboratory studies suggest that microdiamonds will be quite elusive in interstellar space, being detectable only if >10% of the…
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Highly Cited
1981
Highly Cited
1981
Model Calculations of Potential Surfaces of van der Waals Complexes Containing Large Aromatic Molecules
M. Ondrechen
,
Z. Berkovitch-yellin
,
J. Jortner
1981
Corpus ID: 59154798
In this paper we report the results of model calculations of the nuclear potential surfaces of van der Waals complexes consisting…
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