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Lanthanum nitride

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"LaN" redirects here. For other uses, see Lan.
Lanthanum nitride
Names
IUPAC name Azanylidynelanthanum
Other names Lanthanum mononitride, lanthanum(III) nitride
Identifiers
CAS Number
3D model (JSmol)
ChemSpider
ECHA InfoCard 100.042.936 Edit this at Wikidata
EC Number
  • 247-245-1
PubChem CID
CompTox Dashboard (EPA)
InChI
  • InChI=1S/La.NKey: QCLQZCOGUCNIOC-UHFFFAOYSA-N
SMILES
  • .
Properties
Chemical formula LaN
Molar mass 152.912 g·mol
Appearance Black powder
Density 6.73 g/cm
Melting point 2,450 °C (4,440 °F; 2,720 K)
Solubility in water Insoluble
Hazards
GHS labelling:
Pictograms GHS07: Exclamation mark
Signal word Warning
Hazard statements H315, H319, H335
Precautionary statements P264, P271, P280, P302, P304, P305, P312, P313, P332, P338, P340, P351, P352, P362, P501
Except where otherwise noted, data are given for materials in their standard state (at 25 °C , 100 kPa). Infobox references
Chemical compound

Lanthanum nitride is a binary inorganic compound of lanthanum and nitride with the chemical formula LaN.

Preparation

Lanthanum nitride can be prepared from the reaction of nitrogen and lanthanum trihydride:

2LaH3 + N2 → 2LaN + 3H2

It can also be prepared from the reaction of ammonia and lanthanum trihydride:

LaH3 + NH3 → LaN + 3H2

The reaction of nitrogen and lanthanum amalgam can also work:

2La + N2 → 2LaN

Physical properties

Lanthanum nitride forms black powder that is insoluble in water. Their crystals are of the cubic system with the Fm3m space group.

It is paramagnetic.

Chemical properties

Lanthanum nitride reacts with water and moisture from the air:

LaN + 3H2O → La(OH)3 + NH3

It reacts with acids:

LaN + 4HCl → LaCl3 + NH4Cl

Uses

Gerbicidum. LaN is used as a LED material, magnetic material, semiconductor, refractory material, dyes, catalyst.

References

  1. ^ "Lanthanum Nitride". American Elements. Retrieved 8 February 2024.
  2. Derz, Friedrich W. (18 May 2020). H-Z. Walter de Gruyter GmbH & Co KG. p. 1179. ISBN 978-3-11-232209-3. Retrieved 8 February 2024.
  3. Foster, L. S. (1945). The Preparation of Crucibles from Nitrides. U.S. Atomic Energy Commission. Technical Information Service. p. 8. Retrieved 8 February 2024.
  4. Young, R. A.; Ziegler, W. T. (November 1952). "Crystal Structure of Lanthanum Nitride 1,2". Journal of the American Chemical Society. 74 (21): 5251–5253. doi:10.1021/ja01141a004. ISSN 0002-7863. Retrieved 8 February 2024.
  5. Young, R. A.; Ziegler, W. T. (November 1952). "Crystal Structure of Lanthanum Nitride 1,2". Journal of the American Chemical Society. 74 (21): 5251–5253. doi:10.1021/ja01141a004. ISSN 0002-7863. Retrieved 8 February 2024.
  6. "Lanthanum Nitride Powder, LaN, CAS 25764-10-7 - Heeger Materials". Heeger Materials Inc. Retrieved 8 February 2024.
  7. Deng, Zihao; Kioupakis, Emmanouil (1 June 2021). "Semiconducting character of LaN: Magnitude of the bandgap and origin of the electrical conductivity". AIP Advances. 11 (6). arXiv:2106.04646. Bibcode:2021AIPA...11f5312D. doi:10.1063/5.0055515. S2CID 235376911. Retrieved 8 February 2024.
Lanthanum compounds
Salts and covalent derivatives of the nitride ion
NH3
N2H4
+H
HN
H2N
He(N2)11
Li3N
LiN3
Be3N2
Be(N3)2
BN
-B
C2N2
β-C3N4
g-C3N4
CxNy
N2 NxOy
+O
N3F
N2F2
N2F4
NF3
+F
Ne
Na3N
NaN3
Mg3N2
Mg(N3)2
AlN Si3N4
-Si
PN
P3N5
-P
SxNy
SN
S2N2
S4N4
SN2H2
NCl3
ClN3
+Cl
Ar
K3N
KN3
Ca3N2
Ca(N3)2
ScN TiN
Ti3N4
VN CrN
Cr2N
MnxNy FexNy Co3N Ni3N Cu3N Zn3N2 GaN Ge3N4
-Ge
AsN
+As
Se4N4 Br3N
BrN3
+Br
Kr
RbN3 Sr3N2
Sr(N3)2
YN ZrN NbN β-Mo2N Tc Ru Rh PdN Ag3N Cd3N2 InN Sn SbN Te4N4? I3N
IN3
+I
Xe
CsN3 Ba3N2
Ba(N3)2
* LuN HfN
Hf3N4
TaN WN RexNy Os Ir Pt Au Hg3N2 Tl3N (PbNH) BiN Po At Rn
Fr Ra3N2 ** Lr Rf Db Sg Bh Hs Mt Ds Rg Cn Nh Fl Mc Lv Ts Og
 
* LaN CeN PrN NdN PmN SmN EuN GdN TbN DyN HoN ErN TmN YbN
** Ac ThxNy PaN UxNy NpN PuN AmN CmN BkN Cf Es Fm Md No
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