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Combustion synthesis,structural,magnetic and dielectric properties of Gd3+-doped lead molybdato-tungstates 被引量:1
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作者 T.GRON m.maciejkowicz +6 位作者 E.TOMASZEWIC M.GUZIK M.OBOZ B.SAWICKI S.PAWLUS A.NOWOK Z.KUKULA 《Journal of Advanced Ceramics》 SCIE CSCD 2020年第2期255-268,共14页
Gd^3+-doped lead molybdato–tungstates with the chemical formula of Pb1–3xxGd2x(MoO4)1–3x(WO4)3x(where x=0.0455,0.0839,0.1430,corresponding to 9.53,18.32,33.37 mol%of Gd^3+,respectively,as well asdenotes cationic va... Gd^3+-doped lead molybdato–tungstates with the chemical formula of Pb1–3xxGd2x(MoO4)1–3x(WO4)3x(where x=0.0455,0.0839,0.1430,corresponding to 9.53,18.32,33.37 mol%of Gd^3+,respectively,as well asdenotes cationic vacancies)were successfully synthesized via combustion route.The XRD and SEM results confirmed the formation of single-phase,tetragonal scheelite-type materials(space group I41/a)with the uniform,spherical and oval grains ranging from 5 to 20mm.Individual grains are strongly agglomerated into big clusters with the size even above 50mm.The magnetic measurements as well as the Brillouin fitting procedure showed paramagnetic state with characteristic superparamagnetic-like behaviour and the short-range ferromagnetic interactions.The electrical and broadband dielectric spectroscopy studies revealed insulating properties with the residual electrical n-type conduction of 2×10^–9 S/m and low energy loss(tand»0.01)below 300 K.Dielectric analysis showed that no dipole relaxation processes in the Gd^3+-doped materials were observed.A fit of dielectric loss spectra of Gd^3+-doped samples by sum of the conductivity and the Havriliak–Negami,Cole–Cole,and Cole–Davidson functions confirmed this effect. 展开更多
关键词 SCHEELITE Gd^3+-substituted PbMoO4 combustion solid solution magnetic properties dielectric properties
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