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Oxynitride

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Class of chemical compounds

The oxynitrides are a group of inorganic compounds containing oxygen and nitrogen not bound to each other, instead combined with other non-metallic or metallic elements. Some of these are oxosalts with oxygen replaced by nitrogen. Some of these compounds do not have a fixed oxygen to nitrogen ratio, but instead form ceramics with a range of compositions. They are in the class of mixed anion compounds.

Many can be formed by heating an oxide or carbonate with ammonia. The hydrogen can assist by reducing some of the oxygen. With higher temperatures and pressures nitrogen can be heated with a mixed oxide to yield a product. Other nitrogen rich compounds that can be heated with oxygen containing material are urea and melamine. For example urea heated with ammonium dihydrogen phosphate yields a phosphorus oxynitride.

There may not be a definite ratio of nitrogen to oxygen, and also nitrogen and oxygen may be disordered, swapping places at random.

Compared to oxides, the oxynitrides have a smaller band gap.

List

name other name formula

properties

reference
aluminium oxynitride ALON transparent, tough
Lithium silicon oxynitride LiSiON Pca21 Wurtzite structure a=5.1986 b=6.3893 c=4.7398
SiAlON SiAlNO (Li,Mg,Y,Le,Ce,Eu)
Silicon oxynitride
sodium silicon oxynitride NaSiON white Wurtzite structure
Sinoite Si2N2O

mineral

Li14Cr2N8O P3 a=5.799 c=8.263
NaGeON white Wurtzite structure
potassium germanium oxynitride KGeON yellow Wurtzite structure a=5.7376 b=8.0535 c=5.2173
(Si,Ge)2N2O
CaTaO2N perovskite
SrTaO2N perovskite
BaTaO2N perovskite
CaNbO2N perovskite
SrNbO2N perovskite
Sr2NbO3N
strontium gallium oxynitride Sr4GaN3O red Pbca a = 7.4002 b = 24.3378 c = 7.4038Å, Z = 8
Sr3Nb2O5N2
In32ON17F43 Ia3 a=10.536 fluorite structure
BaNbO2N perovskite
LaTaON2
LnTiO2N
LnTaO2N
EuTaO2N
EuNbO2N
LnNbO2N
LnVO2N
CaTiO2N
CaZrO2N
LaZrO2N
EuWON2
Ln2AlO3N
Phosphoryl nitride PNO

α-quartz, β-cristobalite, or moganite structure

Titanium nickel oxynitride NiTiNO
Chromium oxynitride Cr(N,O)
galloaluminophosphate oxynitride AlGaPON
zinc oxynitride ZnON
Titanium oxynitride TiOxNy
K2Ca2Ta3O9N·2H2O perovskite
K2LaTa2O6N·1.6H2O

References

  1. ^ Fuertes, Amparo (2012). "Chemistry and applications of oxynitride perovskites". Journal of Materials Chemistry. 22 (8): 3293. doi:10.1039/C2JM13182J.
  2. ^ Tang, Ya; Kato, Kosaku; Oshima, Takayoshi; Mogi, Hiroto; Miyoshi, Akinobu; Fujii, Kotaro; Yanagisawa, Kei-ichi; Kimoto, Koji; Yamakata, Akira; Yashima, Masatomo; Maeda, Kazuhiko (2020-07-19). "Synthesis of Three-Layer Perovskite Oxynitride K 2 Ca 2 Ta 3 O 9 N·2H 2 O and Photocatalytic Activity for H 2 Evolution under Visible Light". Inorganic Chemistry. 59 (15): 11122–11128. doi:10.1021/acs.inorgchem.0c01607. ISSN 0020-1669. PMID 32683860. S2CID 220653385.
  3. ^ Brese, Nathaniel E.; O'Keeffe, Michael (1992), "Crystal chemistry of inorganic nitrides", Complexes, Clusters and Crystal Chemistry, vol. 79, Berlin/Heidelberg: Springer-Verlag, pp. 307–378, doi:10.1007/bfb0036504, ISBN 978-3-540-55095-2, retrieved 2020-11-11
  4. Kang, Lei; He, Gang; Zhang, Xinyuan; Li, Jiangtao; Lin, Zheshuai; Huang, Bing (2021-05-17). "Alloy Engineering of a Polar (Si,Ge) 2 N 2 O System for Controllable Second Harmonic Performance". Inorganic Chemistry. 60 (10): 7381–7388. arXiv:2009.06932. doi:10.1021/acs.inorgchem.1c00590. ISSN 0020-1669. PMID 33905663. S2CID 231925656.
  5. Mallinson, Phillip M.; Gál, Zoltán A.; Clarke, Simon J. (January 2006). "Two New Structurally Related Strontium Gallium Nitrides: Sr 4 GaN 3 O and Sr 4 GaN 3 (CN 2 )". Inorganic Chemistry. 45 (1): 419–423. doi:10.1021/ic051542q. ISSN 0020-1669. PMID 16390084.
  6. Lee, Eunha; Kim, Taeho; Benayad, Anass; Hur, Jihyun; Park, Gyeong-Su; Jeon, Sanghun (5 April 2016). "High mobility and high stability glassy metal-oxynitride materials and devices". Scientific Reports. 6 (1): 23940. Bibcode:2016NatSR...623940L. doi:10.1038/srep23940. ISSN 2045-2322. PMC 4820723. PMID 27044371.
  7. Braic, Laurentiu; Vasilantonakis, Nikolaos; Mihai, Andrei; Villar Garcia, Ignacio Jose; Fearn, Sarah; Zou, Bin; Alford, Neil McN.; Doiron, Brock; Oulton, Rupert F.; Maier, Stefan A.; Zayats, Anatoly V.; Petrov, Peter K. (24 August 2017). "Titanium Oxynitride Thin Films with Tunable Double Epsilon-Near-Zero Behavior for Nanophotonic Applications". ACS Applied Materials & Interfaces. 9 (35): 29857–29862. doi:10.1021/acsami.7b07660. hdl:10044/1/52727. PMID 28820932. S2CID 206458627.
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
Oxides
Mixed oxidation states
+1 oxidation state
+2 oxidation state
+3 oxidation state
+4 oxidation state
+5 oxidation state
+6 oxidation state
+7 oxidation state
+8 oxidation state
Related
Oxides are sorted by oxidation state. Category:Oxides
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