IA
1 H Hydrogen
3 Li Lithium
11 Na Sodium
19 K Potassium
37 Rb Rubidium
55 Cs Cesium
87 Fr Francium
IIA
4 Be Beryllium
12 Mg Magnesium
20 Ca Calcium
38 Sr Strontium
56 Ba Barium
88 Ra Radium
IIIB
21 Sc Scandium
39 Y Yttrium
57 La Lanthanum
89 Ac Actinium
IVB
22 Ti Titanium
40 Zr Zirconium
72 Hf Hafnium
104 Rf Rutherfordium
VB
23 V Vanadium
41 Nb Niobium
73 Ta Tantalum
105 Db Dubnium
VIB
24 Cr Chromium
42 Mo Molybdenum
74 W Tungsten
106 Sg Seaborgium
1.0 H 1.00794 1s¹

VIIB
25 Mn Manganese
97 Tc Technetium
75 Re Rhenium
107 Bh Bohrium
VIIIB
26 Fe Iron
44 Ru Ruthenium
76 Os Osmium
108 Hs Hassium
VIIIB
27 Co Cobalt
45 Rh Rhodium
77 Ir Iridium
109 Mt Meitnerium
VIIIB
28 Ni Nickel
46 Pd Palladium
78 Pt Platinum
110 Ds Darmstadtium
IB
29 Cu Copper
47 Ag Silver
79 Au Gold
111 Rg Roentgenium
IIB
30 Zn Zinc
48 Cd Cadmium
80 Hg Mercury
112 Cn Copernicium
IIIA
5 B Boron
13 Al Aluminum
31 Ga Gallium
49 In Indium
81 Tl Thallium
113 Nh Nihonium
IVA
6 C Carbon
14 Si Silicon
32 Ge Germanium
50 Sn Tin
82 Pb Lead
114 Fl Flerovium
VA
7 N Nitrogen
15 P Phosphorus
33 As Arsenic
51 Sb Antimony
83 Bi Bismuth
115 Mc Moscovium
VIA
8 O Oxygen
16 S Sulfur
34 Se Selenium
52 Te Tellurium
84 Po Polonium
116 Lv Livermorium
VIIA
9 F Fluorine
17 Cl Chlorine
35 Br Bromine
53 I Iodine
85 At Astatine
117 Ts Tennessine
0
2 He Helium
10 Ne Neon
18 Ar Argon
36 Kr Krypton
54 Xe Xenon
86 Rn Radon
118 Og Oganesson
58 Ce Cerium
59 Pr Praseodymium
60 Nd Neodymium
61 Pm Promethium
62 Sm Samarium
63 Eu Europium
64 Gd Gadolinium
65 Tb Terbium
66 Dy Dysprosium
67 Ho Holmium
68 Er Erbium
69 Tm Thulium
70 Yb Ytterbium
71 Lu Lutetium
90 Th Thorium
91 Pa Protactinium
92 U Uranium
93 Np Neptunium
94 Pu Plutonium
95 Am Americium
96 Cm Curium
97 Bk Berkelium
98 Cf Californium
99 Es Einsteinium
100 Fm Fermium
101 Md Mendelevium
102 No Nobelium
103 Lr Lawrencium
Element: Atomic_Number: Atomic_Weight:
Period: Group: Families:
Metal: Nonmetal: Metalliod:
Mendeleev_Number: L_quantum_number: Atomic_Radius:
Covalent_Radius: Zunger_radii_sum: Ionic_radius:
Crystal_radius: Pauling_Electronegativity: TO_Electronegativity:
MB_electonegativity: Gordy_electonegativity: Mulliken_EN:
Allred-Rockow_electronegativity: Metallic_valence: Number_of_valence_electrons:
Gilmor_number_of_valence_electron: Valence_s: Valence_p:
Valence_d: Valence_f: Number_of_unfilled_s_electrons:
Number_of_unfilled_p_electrons: Number_of_unfilled_d_electrons: Number_of_unfilled_f_electrons:
Outer_shell_electrons: First_ionization_potential (kJ/mol): Polarizability (A^3):
Melting_point (K): Boiling_Point (K): Density (g/mL):
Specific_heat (J/g_K): Heat_of_fusion (kJ/mol): Heat_of_vaporization (kJ/mol):
Thermal_conductivity (W/(m_K)): Heat_atomization (kJ/mol): Cohesive_energy (eV):

Miedema Model Parameters

Mied_phi: Mied_nws: Mied_V:
Mied_R: Mied_Hr: Mied_e:
Mied_a: Mied_str: Mied_Temp:
Bulk_modulus: Shear_modulus: Surface_energy:
Vacancy_formation_enthalpy: Density: Atomic_mass:
Melting_Point: Boiling_point: Fusion_heat:
Vaporization_heat: Volume_correction: Number_of_valence_electron:

References:

A.O. Oliynyk, E. Antono, T. D. Sparks, et al. High-throughput machine-learning-driven synthesis of full-Heusler compounds, Chemistry of Materials, 28, 7324-7331 (2016).

R. F. Zhang*, S. H. Zhang, Z. J. He, J. Jing, and S. H. Sheng. Miedema Calculator: A thermodynamic platform for predicting formation enthalpies of alloys within framework of Miedema's theory, Computer Physics Communications 209, 58 (2016).

R. F. Zhang*, X. F. Kong, H. T. Wang, S. H. Zhang, D. Legut, S. H. Sheng, S. Srinivasan, K. Rajan, and T. C. Germann. An informatics guided classification of miscible and immiscible binary alloy systems, Scientific Reports 7, 9577 (2017).