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  2. Noble gas - Wikipedia

    en.wikipedia.org/wiki/Noble_gas

    Noble gases can form endohedral fullerene compounds, in which the noble gas atom is trapped inside a fullerene molecule. In 1993, it was discovered that when C 60, a spherical molecule consisting of 60 carbon atoms, is exposed to noble gases at high pressure, complexes such as He@C 60 can be formed (the @ notation indicates He is contained inside C

  3. Noble gas compound - Wikipedia

    en.wikipedia.org/wiki/Noble_gas_compound

    Structure of a noble-gas atom caged within a buckminsterfullerene (C 60) molecule. Noble gases can also form endohedral fullerene compounds where the noble gas atom is trapped inside a fullerene molecule. In 1993, it was discovered that when C 60 is exposed to a pressure of around 3 bar of He or Ne, the complexes He@C 60 and Ne@C 60 are formed ...

  4. Argon - Wikipedia

    en.wikipedia.org/wiki/Argon

    The other noble gases (except helium) are produced this way as well, but argon is the most plentiful by far. The bulk of its applications arise simply because it is inert and relatively cheap. The bulk of its applications arise simply because it is inert and relatively cheap.

  5. Pnictogen - Wikipedia

    en.wikipedia.org/wiki/Pnictogen

    For example, N 2, the diatomic form of nitrogen, is used as an inert gas in situations where using argon or another noble gas would be too expensive. Formation of multiple bonds is facilitated by their five valence electrons , as the octet rule permits a pnictogen to accept three electrons on covalent bonding.

  6. Nitrogen - Wikipedia

    en.wikipedia.org/wiki/Nitrogen

    (The light noble gases, helium, neon, and argon, would presumably also be more electronegative, and in fact are on the Allen scale.) [25] Following periodic trends, its single-bond covalent radius of 71 pm is smaller than those of boron (84 pm) and carbon (76 pm), while it is larger than those of oxygen (66 pm) and fluorine (57 pm).

  7. Chemically inert - Wikipedia

    en.wikipedia.org/wiki/Chemically_inert

    The noble gases (helium, neon, argon, krypton, xenon and radon) were previously known as 'inert gases' because of their perceived lack of participation in any chemical reactions. The reason for this is that their outermost electron shells (valence shells) are completely filled, so that they have little tendency to gain or lose electrons.

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  9. Noble gas (data page) - Wikipedia

    en.wikipedia.org/wiki/Noble_gas_(data_page)

    1.4 Phase changes and critical properties. 2 Atomic properties. 3 Abundance. 4 Economic data. 5 References and notes. Toggle the table of contents. Noble gas (data page)