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. 2022 Apr 27;15(9):3158. doi: 10.3390/ma15093158

Table 2.

Structure, formula, main characteristic Raman peak(s) or doublet wavenumber of crystalline pigments; period of use is given.

Color Structural Type Formula 1 Main Raman Peaks 3/cm−1 Period of Use/Century
Opacifier(white) Cassiterite 2 SnO2 635–775 Roman
Baddaleyite ZrO2 180–190 20th
Zirconia (stabilized) ZrO2:Ca,Mg 265 20th
Apatite (Na,K,Ca)1Pb4(AsO4)3 815 <18th
Rutile 2 TiO2 445–610 20th
Zircon ZrSiO4 1009 20th
Whitlockite Ca3(PO4)2 965 <17th
Wollastonite CaSiO4 635–970 18th
Fluorite CaF2 320 Medieval
CaSb2O6 671 Roman
CaSb2O7 482–633 Roman
Yellow Pyrochlore Pb2(Sb,Sn,Fe,Si)12O7-δ 130 to 140 Renaissance
Pb(Sn,Fe,Si)1O4 130 to 140 Antiquity
Zircon (Zr,V)1SiO4 1009 >1960
Zircon (Zr,Pr)1SiO4 1009 >1960
Baddeleyite (Zr,V)O2 180–190 20th
Rutile (Ti,Ni,S)1O2 445–610 20th
Cassiterite (Sn,V)O2 635–775 20th
Wurtzite CdS 275 20th
PbUO4 circa 830 19th
Sphene CaSnSiO5 580 20th
ZnCrO4 840 >~1850
Blue Hauyne, lazurite 4 Na8(Al6Si6O24)Sn 542–1090 Antiquity
Zeolite Na8(Al8Si8O32)Sn 19th
Olivine Co2SiO4 810–830 18th
Phenacite (Co,Zn)12SiO4 19th
Spinel CoAl2O4 690 End of 18th
Spinel (Co,Zn)1Al2O4 690 19th
Zircon (Zr,V)1SiO4 1009 >1950
BaMnO4 ? 20th
Green Yellow pigment in blue matrix See above 18th
Garnet 3CaO.Cr2O3.3SiO2 ~750 data
Olivine Ni2SiO4 ~850 20th
Corundum Cr2O3 ~540 19th
Spinel Co(Cr,Ti)12O4 700–800 19th
Red Corundum 2,4 (Fe,Al,X)12O3 200–300 Antiquity
Wurtzite CdSe 190 20th
Wurtzite Cd(S,Se)1 190–275 20th
metal Au° - 17th
metal Cu° - Roman
Pink Sphene CaO.SnO2.SiO2:Cr 750–940 19th
Corundum (Al,Mn)12O3 ~420–750 20th
Blue Spinel Zn(Al,Cr)2O4 630–850 <18th
Zircon (Zr,Fe)1SiO4 1009 20th
Gray Cassiterite 2 (Sn,Sb)1O2 635–775 20th
Brown Spinel Fe2TiO4 650–700 20th
Spinel (Zn,Ni,Fe)1FeO4 650–700 <18th
Rutile (Ti,Mn,Cr,S,Nb)1O2 450–600 20th
Black Spinel CuCr2O4 450–600 19th
Spinel 4 (Co,Fe)(Fe,Cr)12O4 450–600 <18th
Spinel 4 (Fe,Mn)(Fe,Cr,Mn)12O4 450–600 <18th
CuO 300–350 <18th
disordered C 1350–1590 <18th

1 The relative content of elements given within brackets is not given; they vary from less than 0.01 to 0.5. 2 The structure of rutile and cassiterite are similar; hematite belongs to corundum structure. 3 Representative wavenumber of the stronger peaks; wavenumber can be shifted as a function of the laser excitation wavelength and precise non-stoichiometry/composition. 4 Synthetic or natural compound.