267 results on '"Jing, YuLan"'
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2. Modification of magnetic and dielectric properties in Mn3+ substituted Co2Z hexaferrite for miniaturized patch antenna
3. Magnetic and dielectric properties of Mn2+ and Nb5+-doped NiCuZn ferrites for K-band junction circulators
4. High-frequency magnetic and dielectric properties of Ba1.5Sr1.5Co1Zn1Fe23O41 hexaferrites with Bi2O3 additives
5. The effect of B-site ions on crystal structure evolution and microwave dielectric properties of gillespite-type SrCu0.95B0.05(B2+: Cu, Co, Mn, Ni, Mg, Zn)Si4O10
6. Developing high performance, low temperature sintering and temperature stable K40 material in Co2O3/Nb2O5-modified Ba3Ti4Nb4O21 microwave dielectric ceramics for 5G-LTCC communication devices
7. Temperature-stable and medium-high K of Ti/W co-doped M-phase LNT microwave ceramics for LTCC dielectric devices
8. Simultaneously achieving high permittivity and low loss in CuO/Nb2O5 substituted Li2O-TiO2-Nb2O5 low-temperature microwave dielectric ceramics
9. The effects of Mn substitution on the crystalline phase structure, microstructure, DC resistivity, and magnetic-dielectric properties of Z-type hexaferrites
10. Medium K and temperature-stable Co2+-substituted LiNb0.6Ti0.5O3 microwave dielectric ceramics for LTCC miniaturized applications
11. Low loss Ba3Ti4Nb4O21 microwave dielectric ceramics through (Mn1/3Nb2/3)4+ ion control engineering for LTCC applications
12. The structural characteristics and microwave dielectric properties of Ti4+ doped CaMgSi2O6 ceramics
13. Structural characteristics and microwave dielectric properties of Zn1−xBixVxW1−xO4-based ceramics for LTCC applications
14. Effect of Bi2O3 and Co2O3 co-doping on power loss characteristics of low-temperature-fired NiCuZn ferrites
15. Characteristics and causes of crest cracking on a high core-wall rockfill dam: A case study
16. Electronic structure, Raman spectra, and microwave dielectric properties of Co-substituted ZnWO4 ceramics
17. Influence of Cu substitution and Bi2O3 doping on magnetic properties of low-temperature-fired NiCuZn ferrites
18. Effects of Cu2+ substitution on bond characteristics, Raman spectra, and microwave dielectric properties of Li2Mg0.6Zn0.4SiO4 ceramics
19. Bond characteristics and microwave dielectric properties on Zn3-xCux(BO3)2 ceramics with ultralow dielectric loss
20. Effects of MgO addition on the DC-bias-superposition characteristic of low-temperature-fired NiCuZn ferrites
21. Influence of substituting Na+ for Mg2+ on the crystal structure and microwave dielectric properties of Mg1-xNa2xWO4 ceramics
22. Microwave dielectric properties, microstructure, and bond energy of Zn3-xCoxB2O6 low temperature fired ceramics
23. Microwave dielectric properties of glass-free CaMg0.9-xLi0.2ZnxSi2O6 ceramics for LTCC applications
24. Crystal structure and microwave dielectric properties of Li2Mg0.6−xCoxZn0.4SiO4 ceramic for LTCC applications
25. Comparison of Magnetic Properties of Low-Temperature-Fired NiCuZn Ferrites Under Low- and High-Bi2O3 Doping Modes
26. Effects of Al2O3 addition on the DC--bias-superposition characteristic of the low-temperature-fired NiCuZn ferrites
27. Novel medium‐permittivity Ba2.92Cu0.08(Zn1/3Nb2/3)2Ti2Nb4O21 microwave dielectric ceramics with high Q × f value and densification for low‐temperature co‐fired ceramics electronic devices
28. Effects of Grain Morphology on the Microwave Dielectric Properties of Liinw2o8 Ceramics
29. Effects of calcination temperature and flux doping on the microstructure and magnetic properties of low-temperature-fired NiCuZn ferrites
30. Theoretical and experimental demonstration of the relationship between microstructure and the DC-bias-superposition characteristic of ferrite materials
31. Effects of Bi2O3 addition on power loss characteristics of low-temperature-fired NiCuZn ferrites
32. Influence of partial cobalt-ion substitution on the microstructure and dielectric properties of (Zn0.7Mg0.3)1-xCoxTiO3 ceramics
33. Comparison of DC-bias superposition characteristics of low-temperature-fired NiCuZn and MgCuZn ferrites with low Bi2O3 doping mode
34. Structure and microwave dielectric behaviour of low-temperature-fired Li2Zn1−xCoxTi3O8 (x = 0–0.07) ceramics for low temperature co-fired ceramic applications
35. Effects of Li-ion substitution on the microwave dielectric properties of low-temperature sintered ceramics with nominal composition Li2xMg2−xSiO4
36. Bi2O3 enhances magnetic and dielectric properties of low temperature co-fired Ba(CoTi)1.20Fe9.6O19 ferrite composites in an oxygen atmosphere for applications in high frequency antennas
37. Low-dielectric-constant LiAlO2 ceramics combined with LBSCA glass for LTCC applications
38. High-Q microwave dielectric properties of Li(Zn0.95Co0.05)1.5SiO4 ceramics for LTCC applications
39. Ultra-low-pressure sputtering to improve exchange bias and tune linear ranges in spin valves
40. Novel medium‐permittivity Ba2.92Cu0.08(Zn1/3Nb2/3)2Ti2Nb4O21 microwave dielectric ceramics with high Q × f value and densification for low‐temperature co‐fired ceramics electronic devices
41. Comparison between Nb2O5 and CaCO3 additions on the DC-bias-superposition characteristic of low-temperature-fired NiCuZn ferrites
42. Microstructure, magnetic, and power loss characteristics of low‐sintered NiCuZn ferrites with La2O3‐Bi2O3 additives
43. Voltage-impulse-induced three-state non-volatile magnetization switching in FeSiBC/PZT multiferroic heterostructure
44. Microwave dielectric properties of CaWO4–Li2TiO3 ceramics added with LBSCA glass for LTCC applications
45. Influence of lightly Sm-substitution on crystal structure, magnetic and dielectric properties of BiFeO3 ceramics
46. Effects of Co2O3 concentration on high Q-factor NiCuZn ferrites for 13.56 MHz radio identification communication
47. Microwave dielectric properties of LBBS glass added (Zn0.95Co0.05)2SiO4 for LTCC technology
48. Effects of Zn2+ substitution on the sintering behaviour and dielectric properties of Li2Mg1−xZnxSiO4 ceramics
49. Low loss Co2Z hexaferrite with matched permeability and permittivity in HF and VHF bands
50. Improving the high-frequency magnetic properties of as-deposited CoFe films by ultra-low gas pressure
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