By D. L. Beke (eds.)
This new quantity of Landolt-Börnstein contains subvolumes, A "Diffusion in Semiconductors" and B "Diffusion in Non-Metallic Solids". This separation used to be priceless, as the box and the variety of facts is simply too huge to be compressed right into a unmarried quantity in basic terms. This separation additionally displays the anticipated distinction within the curiosity of power clients. Subvolume A has already been released in 1998. To hasten booklet of subvolume B the compilations were published because the authors accomplished their manuscripts. hence, and thanks to the big volume of knowledge within the box of Diffusion in Oxides subvolume B is extra subdivided into components: the current half 1, containing all info for Diffusion in Non-Metallic Solids with out Diffusion in Oxides and half 2 containing the knowledge for Diffusion in Oxides, that's in preparation.
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Additional resources for Diffusion in Non-Metallic Solids (Part 1)
78F1 1173-1443 Conductivity. 73N2 NiO (doped with Cr2O3 : 1 - 16 mole %) 1 mole % Cr2O3 4 ⋅ 10−3 230 1603-1853 Diffusion couple. Fig. 94. 9 73N2 1173-1443 Conductivity. 2 1106-1298 Thermogravimetric. 68B2 Landolt -Bö rnst ein New Series III/33B1 Ref. p. 10-58] Composition 10 Chemical diffusion in bulk inhomogeneous non-metallic compounds D0 Q [10−4m2s−1] [kJmol−1] ~ D [m2s−1] T-range [K] Method/Remarks 10-29 Ref. 6 YBa2Cu3O7-x ~5 ⋅ 10−12 1173-1323 Diffusion couple. 65S1 1180-1520 Conductivity. 76B1 1323 1323 1323 1323 1323 1323 Coulometric titration.
Coeff. D [m s ] ~ 2 –1 Chem. diff. coeff. 0 NiO ~ Fig. 71. Chemical diffusion coefficient D in CoO-NiO as a function of mole fraction of NiO at 1573 K in air [73S2]. 50 10 T = 1793 K 8 ~ 2 –1 Chem. diff. coeff. 62 single cryst. polycryst. 58 –3 –1 Inv. temp. 52 ~ Fig. 72. Chemical diffusion coefficient D (of Cr) in Cr2O3-MgO (MgO phase) as a function of inverse temperature 1/T at various values of at% Cr [71H1]. Cr2O3 - MgO ~ –16 2 –1 Chem. diff. coeff. D [10 m s ] 5 at 2 10 8 2 –8 8 6 4 2 20 1613 K 0 (MgO phase) 4 2 10 Cr2O3 - MgO 6 4 10 [Ref.
5 ~ Fig. 6. Chemical diffusion coefficient D in Ag2+δS at 573 K as a function of composition δ [76H1]. ~ Fig. 5. Chemical diffusion coefficient D in Ag2+δS at 473 K as a function of composition δ [76H1]. 5 ~ –5 2 –1 Chem. diff. coeff. D [10 m s ] ~ –5 2 –1 Chem. diff. coeff. 0 T = 473 K [Ref. p. 10-58 –1 0 1 2 3 –6 Composition δ [10 ] 4 ~ Fig. 7. Chemical diffusion coefficient D in Ag2+δS at 573 K as a function of composition δ [83B1]. 5 0 1 2 3 –3 Composition δ [10 ] 4 ~ Fig. 10. Chemical diffusion coefficient D in Ag2+δSe at 473 K as a function of composition δ [76H1].