Dense (Bi0.95Li0.05)(V0.9Mo0.1)O4-Na2Mo2O7 (100−x) wt.% (Bi0.95Li0.05)(V0.9Mo0.1)O4 (BLVMO)-x wt.% Na2Mo2O7 (NMO) composite ceramics were successfully fabricated through cold sintering at 150 °C under at 200 MPa for 30 min. X-ray diffraction, back-scattered scanning electron microscopy, and Raman spectroscopy not only corroborated the coexistence of BLVMO and NMO phases in all samples, but also the absence of parasitic phases and interdiffusion. With increasing NMO concentration, the relative pemittivity (εr) and the Temperature Coefficient of resonant Frequency (TCF) decreased, whereas the Microwave Quality Factor (Qf) increased. Near-zero TCF was measured for BLVMO-20wt.%NMO composites which exhibited εr ~ 40 and Qf ~...
A temperature-stable, ultra-high permittivity dielectric ceramic, based on CTLNT, has been successfu...
Ceramic-ceramic composites intended for applications as substrates for microwave MW antennas have b...
Dense Li<sub>6</sub>B<sub>4</sub>O<sub>9</sub> microwave dielectric ceramics were synthesized at low...
Dense (Bi0.95Li0.05)(V0.9Mo0.1)O4-Na2Mo2O7 (100−x) wt.% (Bi0.95Li0.05)(V0.9Mo0.1)O4 (BLVMO)-x wt.% N...
Dense (Bi0.95Li0.05)(V0.9Mo0.1)O4-Na2Mo2O7 (100−x) wt.% (Bi0.95Li0.05)(V0.9Mo0.1)O4 (BLVMO)-x wt.% N...
© 2017 American Chemical Society. A cold sintering process (150 °C, 30 min and 200 MPa) was employed...
A cold sintering process (150 °C, 30 min and 200 MPa) was employed to fabricate Na0.5Bi0.5MoO4−Li2Mo...
Bi2Mo2O9-K2MoO4 (BMO-KMO) composite ceramics with >95% theoretical density were densified by cold si...
Bi2Mo2O9-K2MoO4 (BMO-KMO) composite ceramics with >95% theoretical density were densified by cold si...
Ceramics-ceramic composites in series (1-x)Li2MoO4-xBaFe12O19 (LMO-BF12, 0.00 ≤ x ≤ 0.15) have been ...
In this paper, (1-x)LiWVO6-xK2MoO4 (LWVO-KMO, x = 60, 65, 70, 75, 80, 90 wt%) composite ceramics wit...
© 2019 Elsevier Ltd CaTiO3-K2MoO4 (CTO-KMO) dielectric composites were successfully cold-sintered at...
Dense (1-x)wt%CaSnSiO5-xwt%K2MoO4 (CSSO-KMO) composite ceramics were fabricated by the cold sinterin...
The cold-sintering process is utilized to fabricate ceramic–polymer (Na<sub>2</sub>Mo<sub>2</sub>O<s...
Low sintering temperature, ultra-low loss microwave ceramics are envisaged as future dielectrics for...
A temperature-stable, ultra-high permittivity dielectric ceramic, based on CTLNT, has been successfu...
Ceramic-ceramic composites intended for applications as substrates for microwave MW antennas have b...
Dense Li<sub>6</sub>B<sub>4</sub>O<sub>9</sub> microwave dielectric ceramics were synthesized at low...
Dense (Bi0.95Li0.05)(V0.9Mo0.1)O4-Na2Mo2O7 (100−x) wt.% (Bi0.95Li0.05)(V0.9Mo0.1)O4 (BLVMO)-x wt.% N...
Dense (Bi0.95Li0.05)(V0.9Mo0.1)O4-Na2Mo2O7 (100−x) wt.% (Bi0.95Li0.05)(V0.9Mo0.1)O4 (BLVMO)-x wt.% N...
© 2017 American Chemical Society. A cold sintering process (150 °C, 30 min and 200 MPa) was employed...
A cold sintering process (150 °C, 30 min and 200 MPa) was employed to fabricate Na0.5Bi0.5MoO4−Li2Mo...
Bi2Mo2O9-K2MoO4 (BMO-KMO) composite ceramics with >95% theoretical density were densified by cold si...
Bi2Mo2O9-K2MoO4 (BMO-KMO) composite ceramics with >95% theoretical density were densified by cold si...
Ceramics-ceramic composites in series (1-x)Li2MoO4-xBaFe12O19 (LMO-BF12, 0.00 ≤ x ≤ 0.15) have been ...
In this paper, (1-x)LiWVO6-xK2MoO4 (LWVO-KMO, x = 60, 65, 70, 75, 80, 90 wt%) composite ceramics wit...
© 2019 Elsevier Ltd CaTiO3-K2MoO4 (CTO-KMO) dielectric composites were successfully cold-sintered at...
Dense (1-x)wt%CaSnSiO5-xwt%K2MoO4 (CSSO-KMO) composite ceramics were fabricated by the cold sinterin...
The cold-sintering process is utilized to fabricate ceramic–polymer (Na<sub>2</sub>Mo<sub>2</sub>O<s...
Low sintering temperature, ultra-low loss microwave ceramics are envisaged as future dielectrics for...
A temperature-stable, ultra-high permittivity dielectric ceramic, based on CTLNT, has been successfu...
Ceramic-ceramic composites intended for applications as substrates for microwave MW antennas have b...
Dense Li<sub>6</sub>B<sub>4</sub>O<sub>9</sub> microwave dielectric ceramics were synthesized at low...