Fluoride nitrate

Fluoride nitrates are mixed anion compounds that contain both fluoride ions and nitrate ions. Compounds are known for some amino acids and for some heavy elements. Some transition metal fluorido complexes that are nitrates are also known. There are also fluorido nitrato complex ions known in solution.

List

name formula mw crystal system space group unit cell Å volume density comment reference
L-Argininium L-Arg2+•F•NO3 triclinic P1 a=5.0130 b=10.6161 c=11.0352 α=87.471 β=86.038 γ=78.157 Z=2 [1]
2L-Arg2+•F•3NO3•HF orthorhombic P212121 a=7.3960 b=12.8672 c=26.990 Z=4 [1]
L-histidine L-His2+•F•NO3 [1]
[Cr(NH3)5F](NO3)2 [2]
hexakis(1H-imidazole)-cobalt(ii) fluoride nitrate tetrahydrate [Co(Im)6][F·NO3•(H2O)4] hexagonal P63/m a 8.972 c 21.077 Z=2 1469.3 1.402 pink [3]
[Co(NH3)4(OH)F]NO3 [4]
[Co(NH3)5F](NO3)2 [5]
[Co(NH3)6]F(NO3)2 [4]
[Co(en)2F2]NO3 [4]
[As(ONO2)4]+[AsF6] pale yellow; hydroscopic [6]
[Zr2F3OH(NO3)2(H2O)5]2+ in solution [7]
SnF2(ONO2)2 [6]
SnF3(ONO2) stable < 40°C; hydroscopic [6]
SbF(ONO2)4 [6]
SbF3(ONO2)2 [6]
Xenon fluoride nitrate FXeONO2 monoclinic a = 4.6663 b = 8.799 c = 9.415 β = 90.325° 386.6 3.648
CsFHONO2 [8]
[HfF4NO3] in solution [7]
[HfF3(NO3)2] in solution [7]
Hg3O2(NO3)F orthorhombic Pnma a=7.547 b=10.990 c=6.9906 birefringence Δn = 0.23 @ 1064 nm [9]
Pb3F5NO3 triclinic P1 a 7.3796 b 12.147 c 16.8549, α 100.46° β 90.076° γ 95.517° layered; stable to 450°C [10][11]
Pb(OF)Cu3(SeO3)2(NO3) trigonal R3m a 6.6973 c 18.5548 Z=3 720.75 5.175 yellow; stable to 400°C [12]
PbCdF(SeO3)(NO3) orthorhombic Pca21 a=11.121 b=10.366 c=5.3950 NLO 2.6×KDP; band gap 4.42 eV [13]
BaPb2F5NO3 [14]
Bi2OF3(NO3) hexagonal P63/m band gap 3.5 eV [15]
Bi6O6F5(NO3) trigonal R3 band gap 4.0 eV [15]
[(UO2)4F13][Sr3(H2O)8](NO3)·H2O 1814.13 triclinic P1 a = 10.793, b = 10.918, c = 13.231 α = 92.570°, β = 109.147°, γ = 92.778° Z = 2. 1468.1 4.105 yellow [16]

References

  1. ^ a b c Fleck, Michel; Petrosyan, Aram M. (2014). Salts of amino acids: crystallization, structure and properties. Cham Heidelberg: Springer. pp. 503–507. ISBN 978-3-319-06298-3.
  2. ^ Merabet, K. E.; Burriel, Ramón; Carlin, Richard L. (1988-12-01). "Magnetochemistry of chromium(III): Linear-chain – to – simple-cubic crossover magnetic interactions in several halopentammines". Physical Review B. 38 (16): 11589–11592. doi:10.1103/PhysRevB.38.11589. ISSN 0163-1829.
  3. ^ Jian, Fang Fang; Liu, E.; Ma, Jun Ying (2018). "Interesting fluorine anion water clusters [F − ·(H 2 O) n ] in metal complex crystals". CrystEngComm. 20 (27): 3849–3857. doi:10.1039/C8CE00532J. ISSN 1466-8033.
  4. ^ a b c Chan, S. C.; Poon, C. K. (1966). "Preparation, properties, and isomerisation of aquofluorobis(ethylenediamine)cobalt(III) cations". Journal of the Chemical Society A: Inorganic, Physical, Theoretical: 146–150. doi:10.1039/j19660000146. ISSN 0022-4944.
  5. ^ Balt, S.; Pothoff, G. F. (April 1975). "A conductance study of some cobalt(III) complexes in liquid ammonia". Journal of Solution Chemistry. 4 (4): 359–367. doi:10.1007/BF00650393. ISSN 0095-9782. S2CID 97374902.
  6. ^ a b c d e Weidlein, Johann; Dehnicke, Kurt (September 1965). "Über die Fluoridnitrate der Elemente Arsen, Antimon und Zinn". Chemische Berichte. 98 (9): 3053–3059. doi:10.1002/cber.19650980939. ISSN 0009-2940.
  7. ^ a b c Bertoli, Alexandre C.; Miguita, Ana Gabriella C.; Mingote, Raquel M.; Augusti, Rodinei; Duarte, Hélio A. (2021-03-26). "Unveiling the Zirconium and Hafnium Speciation in Fluoride‐Nitric Acid Solutions by Paper Spray Ionization Mass Spectrometry Combined with DFT Calculations". European Journal of Inorganic Chemistry. 2021 (12): 1175–1185. doi:10.1002/ejic.202001140. ISSN 1434-1948. S2CID 233628149.
  8. ^ Al-Zamil, Nabila; Delf, Brian W.; Gillard, R.D. (January 1980). "The fluoro-nitrato-hydrogenate(I) anion, [F··H··ONO2]−". Journal of Inorganic and Nuclear Chemistry. 42 (8): 1117–1122. doi:10.1016/0022-1902(80)80420-9.
  9. ^ Lv, Yi-Lei; Huai, Lei; Wei, Yu-Long; Ma, Liang; Wei, Yue-Qi; Liu, Wenlong; Tang, Ru-Ling (2023). "Hg 3 O 2 (NO 3 )F: a mercury nitrate oxyfluoride with an unprecedented [(Hg 3 O 2 F) + ] ∞ cationic framework and excellent optical anisotropy". Inorganic Chemistry Frontiers. 10 (16): 4845–4853. doi:10.1039/D3QI01146A. ISSN 2052-1553.
  10. ^ Rogow, David L.; Russell, Matthew P.; Wayman, Lora M.; Swanson, Claudia H.; Oliver, Allen G.; Oliver, Scott R. J. (2010-02-03). "Hydrothermal Synthesis and Characterization of Three Cationic Inorganic−Organic Hybrid Materials Based on Lead Fluoride". Crystal Growth & Design. 10 (2): 823–829. doi:10.1021/cg9011923. ISSN 1528-7483.
  11. ^ Tran, Dat T.; Zavalij, Peter Y.; Oliver, Scott R. J. (2002-04-01). "Pb 3 F 5 NO 3 , a Cationic Layered Material for Anion-Exchange". Journal of the American Chemical Society. 124 (15): 3966–3969. doi:10.1021/ja017333w. ISSN 0002-7863. PMID 11942835.
  12. ^ Zhang, Mengsi; Zhao, Zhiying; Zhang, Wanwan; Li, Jinyang; Huang, Xiaoying; He, Zhangzhen (2020). "Pb(OF)Cu 3 (SeO 3 ) 2 (NO 3 ): a selenite fluoride nitrate with a breathing kagomé lattice". Chemical Communications. 56 (80): 11965–11968. doi:10.1039/D0CC03684F. ISSN 1359-7345. PMID 33033813. S2CID 222235842.
  13. ^ Ma, Yun-Xiang; Hu, Chun-Li; Li, Bing-Xuan; Kong, Fang; Mao, Jiang-Gao (2018-09-17). "PbCdF(SeO 3 )(NO 3 ): A Nonlinear Optical Material Produced by Synergistic Effect of Four Functional Units". Inorganic Chemistry. 57 (18): 11839–11846. doi:10.1021/acs.inorgchem.8b02044. ISSN 0020-1669. PMID 30160946. S2CID 52136440.
  14. ^ CHARKIN, DMITRI O. (2019). "NEW STRUCTURAL ANALOGIES AMONG LAYERED NITRATES AND HALIDES: SYNTHESIS AND STRUCTURE OF A NEW SILLéN-DERIVED FLUORIDE NITRATE, BAPB2F5NO3".
  15. ^ a b Cho, Eun Jeong; Oh, Seung-Jin; Jo, Hongil; Lee, Junsu; You, Tae-Soo; Ok, Kang Min (2019-02-04). "Layered Bismuth Oxyfluoride Nitrates Revealing Large Second-Harmonic Generation and Photocatalytic Properties". Inorganic Chemistry. 58 (3): 2183–2190. doi:10.1021/acs.inorgchem.8b03343. ISSN 0020-1669.
  16. ^ Jouffret, Laurent J.; Hiltbrunner, Jean-Michel; Rivenet, Murielle; Sergent, Nicolas; Obbade, Saïd; Avignant, Daniel; Dubois, Marc (2016-12-05). "Insight into the Uranyl Oxyfluoride Topologies through the Synthesis, Crystal Structure, and Evidence of a New Oxyfluoride Layer in [(UO 2 ) 4 F 13 ][Sr 3 (H 2 O) 8 ](NO 3 )·H 2 O". Inorganic Chemistry. 55 (23): 12185–12192. doi:10.1021/acs.inorgchem.6b01765. ISSN 0020-1669. PMID 27934437.
  • v
  • t
  • e
Salts and covalent derivatives of the fluoride ion
HF ?HeF2
LiF BeF2 BF
BF3
B2F4
+BO3
CF4
CxFy
+CO3
NF3
FN3
N2F2
NF
N2F4
NF2
?NF5
OF2
O2F2
OF
O3F2
O4F2
?OF4
F2 Ne
NaF MgF2 AlF
AlF3
SiF4 P2F4
PF3
PF5
S2F2
SF2
S2F4
SF3
SF4
S2F10
SF6
+SO4
ClF
ClF3
ClF5
?ArF2
?ArF4
KF CaF
CaF2
ScF3 TiF2
TiF3
TiF4
VF2
VF3
VF4
VF5
CrF2
CrF3
CrF4
CrF5
?CrF6
MnF2
MnF3
MnF4
?MnF5
FeF2
FeF3
FeF4
CoF2
CoF3
CoF4
NiF2
NiF3
NiF4
CuF
CuF2
?CuF3
ZnF2 GaF2
GaF3
GeF2
GeF4
AsF3
AsF5
Se2F2
SeF4
SeF6
+SeO3
BrF
BrF3
BrF5
KrF2
?KrF4
?KrF6
RbF SrF
SrF2
YF3 ZrF3
ZrF4
NbF4
NbF5
MoF4
MoF5
MoF6
TcF4
TcF
5

TcF6
RuF3
RuF
4

RuF5
RuF6
RhF3
RhF4
RhF5
RhF6
PdF2
Pd[PdF6]
PdF4
?PdF6
Ag2F
AgF
AgF2
AgF3
CdF2 InF
InF3
SnF2
SnF4
SbF3
SbF5
TeF4
?Te2F10
TeF6
+TeO3
IF
IF3
IF5
IF7
+IO3
XeF2
XeF4
XeF6
?XeF8
CsF BaF2   LuF3 HfF4 TaF5 WF4
WF5
WF6
ReF4
ReF5
ReF6
ReF7
OsF4
OsF5
OsF6
?OsF
7

?OsF
8
IrF2
IrF3
IrF4
IrF5
IrF6
PtF2
Pt[PtF6]
PtF4
PtF5
PtF6
AuF
AuF3
Au2F10
?AuF6
AuF5•F2
Hg2F2
HgF2
?HgF4
TlF
TlF3
PbF2
PbF4
BiF3
BiF5
?PoF2
PoF4
PoF6
AtF
?AtF3
?AtF5
RnF2
?RnF
4

?RnF
6
FrF RaF2   LrF3 Rf Db Sg Bh Hs Mt Ds Rg Cn Nh Fl Mc Lv Ts Og
LaF3 CeF3
CeF4
PrF3
PrF4
NdF2
NdF3
NdF4
PmF3 SmF2
SmF3
EuF2
EuF3
GdF3 TbF3
TbF4
DyF2
DyF3
DyF4
HoF3 ErF3 TmF2
TmF3
YbF2
YbF3
AcF3 ThF3
ThF4
PaF4
PaF5
UF3
UF4
UF5
UF6
NpF3
NpF4
NpF5
NpF6
PuF3
PuF4
PuF5
PuF6
AmF2
AmF3
AmF4
? AmF6
CmF3
CmF4
 ?CmF6
BkF3
BkF
4
CfF3
CfF4
EsF3
EsF4
?EsF6
Fm Md No
  • v
  • t
  • e
Salts and covalent derivatives of the nitrate ion
HNO3 He
LiNO3 Be(NO3)2 B(NO3)4 RONO2
+CO3
+C2O4
NO3-
NH4NO3
HOONO2 FNO3
+F
Ne
NaNO3 Mg(NO3)2 Al(NO3)3
Al(NO3)4
Si P +SO4 ClONO2
+Cl
Ar
KNO3 Ca(NO3)2 Sc(NO3)3 Ti(NO3)4 VO(NO3)3 Cr(NO3)3 Mn(NO3)2 Fe(NO3)2
Fe(NO3)3
Co(NO3)2
Co(NO3)3
Ni(NO3)2 CuNO3
Cu(NO3)2
Zn(NO3)2 Ga(NO3)3 Ge As +SeO3 BrNO3
+Br
Kr
RbNO3 Sr(NO3)2 Y(NO3)3 Zr(NO3)4 NbO(NO3)3 MoO2(NO3)2 Tc Ru Rh(NO3)3 Pd(NO3)2
Pd(NO3)4
AgNO3
Ag(NO3)2
Cd(NO3)2 In(NO3)3 Sn(NO3)4 Sb4O4(OH)2(NO3)2 Te INO3
+IO3
Xe(NO3)2
CsNO3 Ba(NO3)2 * Lu(NO3)3 Hf(NO3)4 TaO(NO3)3 WO2(NO3)2 ReO3NO3 Os Ir3O(NO3)10 Pt(NO3)2 Au(NO3)3 Hg2(NO3)2
Hg(NO3)2
TlNO3
Tl(NO3)3
Pb(NO3)2 Bi(NO3)3
BiO(NO3)
Po(NO3)4 At Rn
FrNO3 Ra(NO3)2 ** Lr Rf Db Sg Bh Hs Mt Ds Rg Cn Nh Fl Mc Lv Ts Og
 
* La(NO3)3 Ce(NO3)3
Ce(NO3)4
Pr(NO3)3 Nd(NO3)3 Pm(NO3)3 Sm(NO3)3 Eu(NO3)3 Gd(NO3)3 Tb(NO3)3 Dy(NO3)3 Ho(NO3)3 Er(NO3)3 Tm(NO3)3 Yb(NO3)3
** Ac(NO3)3 Th(NO3)4 PaO(NO3)3 UO2(NO3)2 Np(NO3)4 Pu(NO3)4 Am(NO3)3 Cm(NO3)3 Bk(NO3)3 Cf(NO3)3 Es Fm Md No