Tham khảo Ytri(III) nitrat

  1. Dong, Bin; Hua, Rui N.; Cao, Bao S.; Li, Zhi P.; He, Yang Y.; Zhang, Zhen Y.; Wolfbeis, Otto S. (2014). “Size dependence of the upconverted luminescence of NaYF4:Er,Yb microspheres for use in ratiometric thermometry”. Physical Chemistry Chemical Physics. 16 (37): 20009–12. Bibcode:2014PCCP...1620009D. doi:10.1039/C4CP01966K. ISSN 1463-9076. PMID 25123272.
  2. 1 2 Zhuang, R.F.; Qiu, J.B.; Zhu, Y.P. (1990). “A study on reaction mechanism in preparation of Y-Ba-Cu-O superconducting material from the thermoreaction method of nitrates”. Journal of Solid State Chemistry. 86 (1): 125–128. doi:10.1016/0022-4596(90)90122-E. ISSN 0022-4596.
  3. 1 2 Xu, F.M.; Zhang, Z.J.; Shi, X.L.; Tan, Y.; Yang, J.M. (2011). “Effects of adding yttrium nitrate on the mechanical properties of hot-pressed AlN ceramics”. Journal of Alloys and Compounds. 509 (35): 8688–8691. doi:10.1016/j.jallcom.2011.05.110. ISSN 0925-8388.
  4. Scargill, D.; Alcock, K.; Fletcher, J.M.; Hesford, E.; McKay, H.A.C. (1957). “Tri-n-butyl phosphate as an extracting solvent for inorganic nitrates—II Yttrium and the lower lanthanide nitrates”. Journal of Inorganic and Nuclear Chemistry. 4 (5–6): 304–314. doi:10.1016/0022-1902(57)80012-8. ISSN 0022-1902.
  5. Duan, Tian-Wei; Yan, Bing (2014). “Hybrids based on lanthanide ions activated yttrium metal–organic frameworks: functional assembly, polymer film preparation and luminescence tuning”. J. Mater. Chem. C. 2 (26): 5098–5104. doi:10.1039/C4TC00414K. ISSN 2050-7526.
  6. Bhanushali, Mayur J.; Nandurkar, Nitin S.; Jagtap, Sachin R.; Bhanage, Bhalchandra M. (2008). “Y(NO3)3·6H2O catalyzed aza-Michael addition of aromatic/hetero-aromatic amines under solvent-free conditions”. Catalysis Communications. 9 (6): 1189–1195. doi:10.1016/j.catcom.2007.11.002. ISSN 1566-7367.
Hợp chất nitơ
Hợp chất chứa ion nitrat
HNO3He
LiNO3Be(NO3)2B(NO
3)−
4
CNO−
3
,
NH4NO3
OFNO3Ne
NaNO3Mg(NO3)2Al(NO3)3SiPSClNO3Ar
KNO3Ca(NO3)2Sc(NO3)3Ti(NO3)4,
TiO(NO3)2
V(NO3)2,
V(NO3)3,
VO(NO3)2,
VO(NO3)3,
VO2NO3
Cr(NO3)2,
Cr(NO3)3,
CrO2(NO3)2
Mn(NO3)2,
Mn(NO3)3
Fe(NO3)2,
Fe(NO3)3
Co(NO3)2,
Co(NO3)3
Ni(NO3)2CuNO3,
Cu(NO3)2
Zn(NO3)2Ga(NO3)3GeAsSeBrNO3Kr
RbNO3Sr(NO3)2Y(NO3)3Zr(NO3)4,
ZrO(NO3)2
NbMo(NO3)2,
Mo(NO3)3,
Mo(NO3)4,
Mo(NO3)6
TcRu(NO3)3Rh(NO3)3Pd(NO3)2,
Pd(NO3)4
AgNO3,
Ag(NO3)2
Cd(NO3)2In(NO3)3Sn(NO3)2,
Sn(NO3)4
Sb(NO3)3TeINO3Xe(NO3)2
CsNO3Ba(NO3)2 Hf(NO3)4,
HfO(NO3)2
TaW(NO3)6ReO3NO3Os(NO3)2Ir3O(NO3)10Pt(NO3)2,
Pt(NO3)4
Au(NO3)3Hg2(NO3)2,
Hg(NO3)2
TlNO3,
Tl(NO3)3
Pb(NO3)2Bi(NO3)3,
BiO(NO3)
Po(NO3)2,
Po(NO3)4
AtRn
FrNO3Ra(NO3)2 RfDbSgBhHsMtDsRgCnNhFlMcLvTsOg
La(NO3)3Ce(NO3)3,
Ce(NO3)4
Pr(NO3)3Nd(NO3)3Pm(NO3)2,
Pm(NO3)3
Sm(NO3)3Eu(NO3)3Gd(NO3)3Tb(NO3)3Dy(NO3)3Ho(NO3)3Er(NO3)3Tm(NO3)3Yb(NO3)3Lu(NO3)3
Ac(NO3)3Th(NO3)4PaO(NO3)3U(NO3)4,
UO2(NO3)2
Np(NO3)4Pu(NO3)4,
PuO2(NO3)2
Am(NO3)3Cm(NO3)3Bk(NO3)3Cf(NO3)3EsFmMdNoLr