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Another fairly common fullerene has empirical formula C 70, [30] but fullerenes with 72, 76, 84 and even up to 100 carbon atoms are commonly obtained. The smallest possible fullerene is the dodecahedral C 20. There are no fullerenes with 22 vertices. [31]
Xenon can be directly bonded to a less electronegative element than fluorine or oxygen, particularly carbon. [22] Electron-withdrawing groups, such as groups with fluorine substitution, are necessary to stabilize these compounds. [16] Numerous such compounds have been characterized, including: [17] [23] C 6 F 5 –Xe + –N≡C–CH
Fullerene purification is the process of obtaining a fullerene compound free of contamination. In fullerene production mixtures of C 60 , C 70 and higher homologues are always formed. Fullerene purification is key to fullerene science and determines fullerene prices and the success of practical applications of fullerenes.
C 70 fullerene is the fullerene molecule consisting of 70 carbon atoms. It is a cage-like fused-ring structure which resembles a rugby ball, made of 25 hexagons and 12 pentagons , with a carbon atom at the vertices of each polygon and a bond along each polygon edge.
Besides unfilled fullerenes, endohedral metallofullerenes develop with different cage sizes like La@C 60 or La@C 82 and as different isomer cages. Aside from the dominant presence of mono-metal cages, numerous di-metal endohedral complexes and the tri-metal carbide fullerenes like Sc 3 C 2 @C 80 were also isolated. In 1999 a discovery drew ...
This yielded a crystalline product, xenon hexafluoroplatinate, whose formula was proposed to be Xe + [PtF 6] −. [4] [7] It was later shown that the compound is actually more complex, containing both [XeF] + [PtF 5] − and [XeF] + [Pt 2 F 11] −. [8] Nonetheless, this was the first real compound of any noble gas.
The FIRE movement has gained popularity as a goal for people seeking to break free from the traditional retirement age. The standard retirement age is 67 for people born after 1960, but FIRE ...
Charge number (denoted z) is a quantized and dimensionless quantity derived from electric charge, with the quantum of electric charge being the elementary charge (e, constant). The charge number equals the electric charge ( q , in coulombs ) divided by the elementary charge: z = q / e .