Mineralogy Database

X-Ray Diffraction Table

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Minerals Arranged by X-Ray Powder Diffraction

See Help on X-Ray Diffraction.

Powder X-ray Diffraction (XRD) is one of the primary techniques used by mineralogists and solid state chemists to examine the physico-chemical make-up of unknown materials. This data is represented in a collection of single-phase X-ray powder diffraction patterns for the three most intense D values in the form of tables of interplanar spacings (D), relative intensities (I/Io), mineral name and chemical formulae

The XRD technique takes a sample of the material and places a powdered sample in a holder, then the sample is illuminated with x-rays of a fixed wave-length and the intensity of the reflected radiation is recorded using a goniometer. This data is then analyzed for the reflection angle to calculate the inter-atomic spacing (D value in Angstrom units - 10-8 cm). The intensity(I) is measured to discriminate (using I ratios) the various D spacings and the results are compared to this table to identify possible matches. Note: 2 theta (Θ) angle calculated from the Bragg Equation, 2 Θ = 2(arcsin(n λ/(2d)) where n=1

For more information about this technique, see X-Ray Analysis of a Solid or take an internet course at Birkbeck College On-line Courses.  Many thanks to Frederic Biret for these data.

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Found 37 Records, Sorted by D1 using 1.54056 - CuKa1 for 2θ WHERE (d1 > 4.2434 AND d1 < 4.4166)
D1
Å (2θ)
I1
%)
D2
Å (2θ)
I2
(%)
D3
Å (2θ)
I3
(%)
Mineral Formula
4.248(20.89) 200 4.460(19.89) 194 3.822(23.25) 88 IMA2007-036 TiFeSi2
4.260(20.83) 200 4.680(18.95) 120 2.820(31.70) 80 Arsenopalladinite Pd8(As,Sb)3
4.260(20.83) 200 2.448(36.68) 160 2.118(42.65) 80 Bortnikovite Pd4Cu3Zn
4.260(20.83) 200 15.220(5.80) 200 5.940(14.90) 180 Uralborite CaB2O2(OH)4
4.262(20.82) 200 5.750(15.40) 200 6.780(13.05) 200 Crichtonite (Sr,La,Ce,Y)(Ti,Fe+++,Mn)21O38
4.268(20.80) 200 4.664(19.01) 200 6.020(14.70) 200 Nabiasite BaMn9[(V,As)O4]6(OH)2
4.276(20.76) 200 3.721(23.89) 140 2.610(34.33) 120 Nielsenite PdCu3
4.280(20.74) 200 3.240(27.51) 180 6.480(13.65) 140 Sinhalite MgAlBO4
4.280(20.74) 200 4.420(20.07) 180 5.200(17.04) 140 Palladoarsenide Pd2As
4.288(20.70) 200 2.162(41.74) 160 3.058(29.18) 140 Hongquiite TiO
4.292(20.68) 200 3.036(29.39) 160 4.952(17.90) 140 Wustite FeO
4.300(20.64) 200 4.580(19.36) 110 4.720(18.78) 80 Taimyrite (Pd,Cu,Pt)3Sn
4.302(20.63) 200 4.712(18.82) 200 3.726(23.86) 160 Haxonite (Fe,Ni)23C6
4.312(20.58) 200 6.086(14.54) 160 14.060(6.28) 120 Henryite Cu4Ag3Te4
4.320(20.54) 200 7.860(11.25) 150 5.560(15.93) 126 Antarcticite CaCl2ยท6(H2O)
4.320(20.54) 200 5.100(17.37) 160 6.060(14.61) 140 Stutzite Ag5-xTe3,(x=0.24-0.36)
4.332(20.48) 200 6.774(13.06) 200 3.850(23.08) 160 Stenonite (Sr,Ba,Na)2Al(CO3)F5
4.334(20.48) 200 4.712(18.82) 180 1.720(53.21) 160 Isomertieite Pd11Sb2As2
4.340(20.45) 200 3.990(22.26) 140 3.910(22.72) 140 Nickelphosphide (Ni,Fe)3P
4.344(20.43) 200 5.416(16.35) 200 5.296(16.73) 180 Crawfordite Na3Sr(PO4)(CO3)
4.352(20.39) 200 5.088(17.42) 180 6.292(14.06) 180 Ungarettiite NaNa2(Mn++2Mn+++3)Si8O22O2
4.358(20.36) 200 2.188(41.23) 160 2.326(38.68) 160 Tulameenite Pt2FeCu
4.360(20.35) 200 4.280(20.74) 160 5.440(16.28) 160 Ferriallanite-(Ce) CaCe(Fe+++,Fe++,Al)3[SiO4][Si2O7]O(OH)
4.360(20.35) 200 4.460(19.89) 200 5.340(16.59) 200 Kotoite Mg3B2O6
4.380(20.26) 200 3.944(22.52) 140 4.200(21.14) 140 Schreibersite (Fe,Ni)3P
4.380(20.26) 200 4.180(21.24) 160 3.120(28.59) 100 Cesarolite PbH2Mn++++3O8
4.380(20.26) 200 5.868(15.09) 178 6.206(14.26) 156 Zoltaiite BaV++++2V+++12Si2O27
4.382(20.25) 200 2.288(39.35) 170 3.794(23.43) 150 Roaldite (Fe,Ni)4N
4.382(20.25) 200 3.840(23.14) 140 2.684(33.36) 120 Tetraferroplatinum PtFe
4.382(20.25) 200 4.562(19.44) 180 2.460(36.49) 120 Mertieite-II Pd8(Sb,As)3
4.384(20.24) 200 6.054(14.62) 200 4.176(21.26) 160 Stumpflite Pt(Sb,Bi)
4.384(20.24) 200 3.870(22.96) 100 2.648(33.82) 80 Ferronickelplatinum Pt2FeNi
4.388(20.22) 200 4.540(19.54) 200 3.154(28.27) 100 Stibiopalladinite Pd5Sb2
4.392(20.20) 200 3.468(25.67) 180 15.680(5.63) 180 Solongoite Ca2B3O4(OH)4Cl
4.394(20.19) 200 4.790(18.51) 160 2.542(35.28) 60 Miessiite Pd11Te2Se2
4.400(20.16) 200 7.560(11.70) 140 8.520(10.37) 100 Tsnigriite Ag9SbTe3(S,Se)3
4.400(20.16) 200 4.540(19.54) 200 3.160(28.22) 140 Stannopalladinite (Pd,Cu)3Sn2 (?)

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