Novel scheelite‐type [Ca0.55(Nd1‐xBix)0.3]MoO4 (0.2 ≤ x ≤ 0.95) ceramics were prepared using the solid‐state reaction method. According to the X‐ray diffraction data, a solid solution was formed in 0.2 ≤ x ≤ 0.95 and all the samples belong to pure scheelite phase with the tetragonal structure. As revealed by Raman spectroscopy, the number of vibrational modes decreased with the increase in x value, which further indicated that Bi3+ ions occupied A‐site of scheelite structure. As the x value increased, the sintering temperature decreased from 740°C to 660°C; the permittivity increased from 12.6 to 20.3; the Qf value first decreased slightly and gradually remained stable. Based on the infrared reflectivity spectrum analysis, the calculated pe...
Phase formation, crystal structure and dielectric properties of NaCa4V5O17 ceramics fabricated via a...
MoO3 ceramics can not be well densified via conventional solid state method and a low relative densi...
Dense (Bi0.95Li0.05)(V0.9Mo0.1)O4-Na2Mo2O7 (100−x) wt.% (Bi0.95Li0.05)(V0.9Mo0.1)O4 (BLVMO)-x wt.% N...
K 0.5 (Nd 1-x Bi x ) 0.5 MoO 4 (0.2 ≤ x ≤ 0.7) ceramics were prepared via the solid-state reaction m...
A series of (1 − x)BiVO4–xLaNbO4 (0.0 ≤ x ≤ 1.0) ceramics were prepared via a solid state reaction m...
In the present work, a novel series of water insoluble ultra-low temperature firing (Na,Ag)2MoO4 mic...
ABSTRACT: In the present work, the (K0.5xBi1−0.5x)(MoxV1−x)O4 ceramics (0≤x ≤ 1.00) were prepared vi...
Bi(Sc 1/3 Mo 2/3 )O 4 ceramics were prepared via solid state reaction method. It crystallized with a...
© 2017 American Chemical Society. A cold sintering process (150 °C, 30 min and 200 MPa) was employed...
At extremely low temperatures, Ag2CaV4O12 was easily synthesized using the traditional solid-state a...
Bi 2 (Li 0.5 Ta 1.5 )O 7 + xBi 2 O 3 (x = 0, 0.01 and 0.02) ceramics were prepared using a solid sta...
A series of (Bi 1-x Y x )VO 4 (0.4 ≤ x ≤ 1.0) ceramics were synthesized using the traditional solid-...
CaTiO3-K2MoO4 (CTO-KMO) dielectric composites were successfully cold-sintered at 150 °C for 30 min w...
Low sintering temperature, ultra-low loss microwave ceramics are envisaged as future dielectrics for...
Dense (Bi0.95Li0.05)(V0.9Mo0.1)O4-Na2Mo2O7 (100−x) wt.% (Bi0.95Li0.05)(V0.9Mo0.1)O4 (BLVMO)-x wt.% N...
Phase formation, crystal structure and dielectric properties of NaCa4V5O17 ceramics fabricated via a...
MoO3 ceramics can not be well densified via conventional solid state method and a low relative densi...
Dense (Bi0.95Li0.05)(V0.9Mo0.1)O4-Na2Mo2O7 (100−x) wt.% (Bi0.95Li0.05)(V0.9Mo0.1)O4 (BLVMO)-x wt.% N...
K 0.5 (Nd 1-x Bi x ) 0.5 MoO 4 (0.2 ≤ x ≤ 0.7) ceramics were prepared via the solid-state reaction m...
A series of (1 − x)BiVO4–xLaNbO4 (0.0 ≤ x ≤ 1.0) ceramics were prepared via a solid state reaction m...
In the present work, a novel series of water insoluble ultra-low temperature firing (Na,Ag)2MoO4 mic...
ABSTRACT: In the present work, the (K0.5xBi1−0.5x)(MoxV1−x)O4 ceramics (0≤x ≤ 1.00) were prepared vi...
Bi(Sc 1/3 Mo 2/3 )O 4 ceramics were prepared via solid state reaction method. It crystallized with a...
© 2017 American Chemical Society. A cold sintering process (150 °C, 30 min and 200 MPa) was employed...
At extremely low temperatures, Ag2CaV4O12 was easily synthesized using the traditional solid-state a...
Bi 2 (Li 0.5 Ta 1.5 )O 7 + xBi 2 O 3 (x = 0, 0.01 and 0.02) ceramics were prepared using a solid sta...
A series of (Bi 1-x Y x )VO 4 (0.4 ≤ x ≤ 1.0) ceramics were synthesized using the traditional solid-...
CaTiO3-K2MoO4 (CTO-KMO) dielectric composites were successfully cold-sintered at 150 °C for 30 min w...
Low sintering temperature, ultra-low loss microwave ceramics are envisaged as future dielectrics for...
Dense (Bi0.95Li0.05)(V0.9Mo0.1)O4-Na2Mo2O7 (100−x) wt.% (Bi0.95Li0.05)(V0.9Mo0.1)O4 (BLVMO)-x wt.% N...
Phase formation, crystal structure and dielectric properties of NaCa4V5O17 ceramics fabricated via a...
MoO3 ceramics can not be well densified via conventional solid state method and a low relative densi...
Dense (Bi0.95Li0.05)(V0.9Mo0.1)O4-Na2Mo2O7 (100−x) wt.% (Bi0.95Li0.05)(V0.9Mo0.1)O4 (BLVMO)-x wt.% N...