Liste Siedepunkt (θboil) in ° C der Elemente

# [|] Stoffname [|] Formel [|] Wert / Einheit [|] Bemerkungen

089 Actinium Ac 3300 ° C [1] Schätzwert
013 Aluminium Al 2330 ° C [1]
095 Americium Am 2607 ° C [1]
051 Antimon, metallisch Sb 1635 ° C [1]
018 Argon Ar -185.88 ° C [1]
085 Astat At 335 ° C [1] Schätzwert
056 Barium Ba 1537 ° C [1]
097 Berkelium, α-Modifikation Bk 2630 ° C [2] 2900±50 K
004 Beryllium Be 2477 ° C [3]
082 Blei Pb 1751 ° C [1]
035 Brom Br2 58.78 ° C [1]
055 Cäsium Cs 678 ° C [1]
048 Cadmium Cd 767.3 ° C [1]
020 Calcium Ca 1482 ° C [1]
098 Californium Cf 1745 ° C [4] 2018 K
058 Cer, γ-Modifikation Ce 3468 ° C [1]
017 Chlor Cl2 -34.06 ° C [1]
024 Chrom Cr 2640 ° C [1]
027 Cobalt Co 3100 ° C [1]
096 Curium Cm 3110 ° C [5] berechnet
066 Dysprosium, α-Modifikation Dy 2335 ° C [1]
099 Einsteinium Es 996 ° C [6] 1269 K
026 Eisen Fe 3070 ° C [1]
068 Erbium Er 2510 ° C [1]
063 Europium Eu 1439 ° C [1]
009 Fluor F2 -188.14 ° C [1]
087 Francium Fr 660 ° C [1] Schätzwert
064 Gadolinium, α-Modifikation Gd 3000 ° C [1]
031 Gallium Ga 2403 ° C [1]
032 Germanium Ge 2830 ° C [1]
079 Gold Au 2856 ° C [7]
072 Hafnium Hf 4450 ° C [1]
002 Helium He -268.935 ° C [1]
067 Holmium Ho 2720 ° C [1]
049 Indium In 2070 ° C [1]
053 Iod I2 185.2 ° C [1]
077 Iridium Ir 4530 ° C [1]
019 Kalium K 753.8 ° C [1]
036 Krypton Kr -153.35 ° C [1]
029 Kupfer Cu 2595 ° C [3]
057 Lanthan La 3454 ° C [1]
003 Lithium Li 1347 ° C [1]
071 Lutetium Lu 3315 ° C [1]
012 Magnesium Mg 1105 ° C [1]
025 Mangan Mn 2030 ° C [1]
042 Molybdän Mo 4825 ° C [1]
011 Natrium Na 881.3 ° C [1]
060 Neodym, α-Modifikation Nd 3027 ° C [1]
010 Neon Ne -246.06 ° C [1]
093 Neptunium, α-Modifikation Np 3902 ° C [1]
028 Nickel Ni 2730 ° C [1]
041 Niob Nb 4758 ° C [1]
076 Osmium Os 5020 ° C [1]
008 Ozon O3 -111.9 ° C [3]
046 Palladium Pd 2930 ° C [1]
015 Phosphor, weiß P4 280.5 ° C [1]
078 Platin Pt 3830 ° C [1]
094 Plutonium, α-Modifikation Pu 3230 ° C [1]
084 Polonium Po 962 ° C [1]
059 Praseodym, α-Modifikation Pr 3017 ° C [1]
061 Promethium, α-Modifikation Pm 2730 ° C [1]
091 Protactinium Pa 4227 ° C [1]
080 Quecksilber Hg 356.6 ° C [1]
088 Radium Ra 1140 ° C [1] Schätzwert
086 Radon Rn -61.8 ° C [1]
075 Rhenium Re 5870 ° C [1]
045 Rhodium Rh 3670 ° C [1]
037 Rubidium Rb 688 ° C [1]
044 Ruthenium Ru 4150 ° C [1]
062 Samarium, α-Modifikation Sm 1804 ° C [1]
008 Sauerstoff O2 -182.96 ° C [8]
021 Scandium Sc 2832 ° C [1]
016 Schwefel, monoklin S 444.5 ° C [7]
034 Selen, grau Se 684.8 ° C [1]
047 Silber Ag 2215 ° C [1]
014 Silicium Si 2477 ° C [1]
007 Stickstoff N2 -195.82 ° C [1]
038 Strontium Sr 1380 ° C [1]
073 Tantal Ta 5534 ° C [1]
043 Technetium Tc 4700 ° C [1]
052 Tellur Te 1390 ° C [1]
065 Terbium, α-Modifikation Tb 2480 ° C [1]
081 Thallium Tl 1453 ° C [1]
090 Thorium Th 4850 ° C [1]
069 Thulium Tm 1725 ° C [1]
022 Titan Ti 3285 ° C [1]
092 Uran U 3950 ° C [1]
023 Vanadium V 3350 ° C [1]
001 Wasserstoff H2 -252.76 ° C [9]
083 Wismut Bi 1580 ° C [1]
074 Wolfram W 5700 ° C [1]
054 Xenon Xe -107.1 ° C [1]
070 Ytterbium, β-Modifikation Yb 1193 ° C [1]
039 Yttrium Y 3337 ° C [1]
030 Zink Zn 908.5 ° C [1]
050 Zinn, Metall Sn 2687 ° C [1]
040 Zirkonium Zr 4200 ° C [1]

Tabelle 1: Eigenschaftsliste (Siedepunkt) für alle Elemente in der Datenbank. Siedepunkt (θboil) unter Normaldruck (1.,01325 bar), wenn nicht anders angegeben.

Quellen: [1] Wiberg, N., Wiberg, E. & Holleman, A. F. (2017). Lehrbuch der anorganischen Chemie. Walter de Gruyter.
[2] Hobart, D. E. & Peterson, J. R. (2006). Berkelium. In The chemistry of the actinide and transactinide elements (pp. 1444-1498). Dordrecht: Springer Netherlands.
[3] Dean, J. A. (1999). Lange's handbook of chemistry. McGraw-Hill. Inc., New York
[4] Haire, R.G. (2006). Californium. In The chemistry of the actinide and transactinide elements (pp. 1499-1576). Dordrecht: Springer Netherlands.
[5] Lumetta, G. J., Thompson, M. C., Penneman, R. A. & Eller, P. G. (2006). Curium. In The chemistry of the actinide and transactinide elements (pp. 1397-1443). Dordrecht: Springer Netherlands.
[6] Haire, R.G. (2006). Einsteinium. In The chemistry of the actinide and transactinide elements (pp. 1577-1620). Dordrecht: Springer Netherlands.
[7] Lide, D. R. (2005). Physical constants of inorganic compounds, in: CRC Handbook of Chemistry and Physics, Internet Version 2005. CRC Press Boca Raton.
[8] Kirschner, M. J., Alekseev, A., Dowy, S., Grahl, M., Jansson, L., Keil, P., ... & Windmeier, C. (2000). Oxygen. Ullmann's encyclopedia of industrial chemistry, 1-32. https://doi.org/10.1002/14356007.a18_329
[9] Wiberg, N., Wiberg, E. & Holleman, A. F. (2007). Lehrbuch der anorganischen Chemie. (Anhang IV). Walter de Gruyter. https://doi.org/10.1515/9783110206845