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The dependence of the emission spectra on compositional variations has been studied in binary alkaline earth orthosilicate systems activated by divalent europium. Isotherms at 1200°C were run in the systems (i) , (ii) , and (iii) . Phosphors produced in the system were considerably more efficient than those in either of the other two systems and consequently were studied in much greater detail. A complete series of crystalline solutions exist between the end‐members at 1200°C. The corresponding emission spectra vary in a fairly continuous manner from 505 nm for the pure barium end‐member to 575 nm for the pure strontium end‐member. X‐ray diffraction data revealed complete crystalline solution between and at 1200°C. However, the low level of brightness and the pronounced asymmetry of the emission peaks rendered this system less amenable to a detailed investigation. Emission spectra indicated the formation of an intermediate compound in the system. The existence of this compound, , was verified by x‐ray diffraction. The emission spectrum of this compound peaks at a considerably lower wavelength (∼490 nm) than those of its bounding compositions. The two later systems were further complicated due to the polymorphism of . Frequently the phase was partially converted from to .
Thomas L. Barry (Mon,) studied this question.