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Phosphate of transition elements A3M4(PO4)6 (A=Fe, Ni, Zn, Mg, Cu, Cr and M=Fe, V, Cr) are prepared by solid methods, at 1223 K.
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While bulk rare earth oxides can be readily prepared by solid state methods at high temperature (>900 °C), approaches for preparing REO nanoparticles are limited.
In order to obtain a deep red emitting Mn4+ doped phosphor for applications in white LEDs, we choose Mg7Ga2GeO12 with AO6 polyhedra favoring the emission of Mn4+ ions as host and design a novel Mg7Ga2GeO12 Mn4+ phosphor by solid state method at 1400 °C in air.
X-ray phase and structural analysis revealed that all La1−x Sm x FeO3 samples synthesized by solid state method at 1473 K for 40 h adopt orthorhombic perovskite structure isotypic with GdFeO3.
Oligodeoxynucleotides were synthesized by solid phase methods using an ABI 394 DNA synthesizer (Life Technologies, Carlsbad, CA).
Foldamers 5– 8 were synthesized by solid phase methods as described in the Supporting Information.
Cobalt ferrite (CF) powder was synthesized by solid state reaction method at two different calcination temperatures (1120 K and 1320 K) then milled in two steps, gradually reducing the milling media size.
In contrast, the chemical synthesis of RNA by solid-phase methods offers advantages over biochemical approaches.
A range of Al doped Li2Na2Ti6O14 anode materials are synthesized by a simple solid state method at 800 °C.
Herein, we report the exploration of synthesizing the polyaniline/noble metal hybrid materials by solid-state synthesis method at room temperature.
Strontium aluminate phosphors containing different concentrations of Dy3+ ions (SrAl2O4 Dy3+) were prepared by solid state reaction method by sintering at 1100 °C for 3 h.
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