Beryllium sulfide

Chemical compound
Beryllium sulfide
Identifiers
CAS Number
  • 13598-22-6
3D model (JSmol)
  • Interactive image
ChemSpider
  • 44415277
ECHA InfoCard 100.033.680 Edit this at Wikidata
EC Number
  • 237-064-6
PubChem CID
  • 83605
CompTox Dashboard (EPA)
  • DTXSID1065556 Edit this at Wikidata
InChI
  • InChI=1S/Be.S
    Key: FQDSYGKTHDFFCM-UHFFFAOYSA-N
  • [Be]=S
Properties
Chemical formula
BeS
Molar mass 41.077 g/mol
Appearance white crystalline
Density 2.36 g/cm3
Melting point 1,800 °C (3,270 °F; 2,070 K) decomposes
Solubility in water
Decomposes
Band gap 7.4 eV
Refractive index (nD)
1.741
Structure
Crystal structure
cubic
Space group
F43m[1]
Thermochemistry
Heat capacity (C)
34 J/mol K
Std molar
entropy (S298)
34 J/mol K
Std enthalpy of
formation fH298)
-235 kJ/mol
Hazards
NIOSH (US health exposure limits):
PEL (Permissible)
TWA 0.002 mg/m3
C 0.005 mg/m3 (30 minutes), with a maximum peak of 0.025 mg/m3 (as Be)[2]
REL (Recommended)
Ca C 0.0005 mg/m3 (as Be)[2]
IDLH (Immediate danger)
Ca [4 mg/m3 (as Be)][2]
Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
Infobox references
Chemical compound

Beryllium sulfide (BeS) is an ionic compound from the sulfide group with the formula BeS. It is a white solid with a sphalerite structure that is decomposed by water and acids.[3]

Preparation

Beryllium sulfide powders can be prepared by the reaction of sulfur and beryllium in a hydrogen atmosphere by heating the mixture for 10-20 minutes at temperatures from 1000-1300 °C. If done at 900 °C, there is beryllium metal impurities.[4]

Alternatively, it can be prepared by the reaction of beryllium chloride and hydrogen sulfide at 900 °C.[3][4]

References

  1. ^ Eugene Staritzky (1956). "Crystallographic Data. 121. Beryllium Sulfide, BeS". Analytical Chemistry. 28 (5): 915. doi:10.1021/ac60113a045.
  2. ^ a b c NIOSH Pocket Guide to Chemical Hazards. "#0054". National Institute for Occupational Safety and Health (NIOSH).
  3. ^ a b Kenneth A. Walsh (2009). Beryllium Chemistry and Processing. ASM International. p. 127. ISBN 978-087170721-5.
  4. ^ a b William Zachariasen (1926). "Die Kristallstrunkturen von Berylliumoxyd und Berylliumsulfid" [The crystal structures of beryllium oxide and beryllium sulfide]. Zeitschrift für Physikalische Chemie (in German). 119U (1): 201–213. doi:10.1515/zpch-1926-11921. S2CID 99383696.
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Beryllium(I)
Beryllium(II)
  • Be(BH4)2
  • BeBr2
  • BeCO3
  • BeCl2
  • BeF2
  • BeH2
  • BeI2
  • Be(N3)2
  • Be(NO3)2
  • Be4O(C2H3O2)6
  • BeC2O4
  • BeO
  • Be(OH)2
  • BeS
  • BeSO4
  • BeTe
  • Be2C
  • BeCrO4
  • Be3N2
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Sulfides (S2−)
H2S He
Li2S BeS B2S3
+BO3
CS2
COS
(NH4)SH O F Ne
Na2S MgS Al2S3 SiS
SiS2
-Si
PxSy
-P
-S2−
2
Cl Ar
K2S CaS ScS
Sc2S3
TiS
TiS2
Ti2S3
TiS3
VS
VS2
V2S3
CrS
Cr2S3
MnS
MnS2
FeS
Fe3S4
CoS NiS Cu2S
CuS
ZnS GaS
Ga2S3
GeS
GeS2
-Ge
As2S3
As4S3
-As
SeS2
+Se
Br Kr
Rb2S SrS Y2S3 ZrS2 NbS2 MoS2
MoS3
Tc Ru Rh2S3 PdS Ag2S CdS In2S3 SnS
SnS2
-Sn
Sb2S3
Sb2S5
-Sb
TeS2 I Xe
Cs2S BaS * LuS
Lu2S3
HfS2 TaS2 WS2
WS3
ReS2
Re2S7
OsS
4
Ir2S3
IrS2
PtS
PtS2
Au2S
Au2S3
HgS Tl2S PbS
PbS2
Bi2S3 PoS At Rn
Fr Ra ** Lr Rf Db Sg Bh Hs Mt Ds Rg Cn Nh Fl Mc Lv Ts Og
 
* LaS
La2S3
CeS
Ce2S3
PrS
Pr2S3
NdS
Nd2S3
Pm2S3 SmS
Sm2S3
EuS
Eu2S3
GdS
Gd2S3
TbS
Tb2S3
DyS
Dy2S3
HoS
Ho2S3
ErS
Er2S3
TmS
Tm2S3
YbS
Yb2S3
** Ac2S3 ThS2 Pa US
US2
Np Pu Am Cm Bk Cf Es Fm Md No


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