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New SrSmGa3O7 Ceramics: Sintering Behavior, Structure, Electrical, and Microwave Dielectric Properties

delete2025-05-17
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PRE
AI
张晓 (Xiao Zhang)
X
Xiaodong Feng
Z
Zeyu Zheng
F
Feng Si
B
Bin Tang
DOI:10.1021/acsami.5c05654delete
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Abstract

Abstract

En 中文
The development of high-frequency communication technology urgently requires new types of microwave dielectric ceramics with excellent performance. New melilite-structured SrSmGa3O7 ceramics were prepared by using the conventional solid-state method. The impedance analysis demonstrates that SrSmGa3O7 ceramics have good insulation characteristics, with the conducting activation energies of 0.51 and 1.01 eV for the grain and grain boundary, respectively. The bond valence theory suggests that the stretched Sm-O and Ga-O bonds have a major influence on epsilon(r), leading to a higher measured value than the theoretical one (7.6). The calculation by P-V-L chemical bond theory shows that the Sr/Sm-O bond significantly affects the bond ionicity (f(i)), and the Ga-O bonds have a crucial influence on the lattice energy (U-b) and bond energy (E-b). This result provides guidance for SrSmGa3O7 ceramic modification to enhance its performance. The 1425 degrees C sintered SrSmGa3O7 ceramic exhibited the optimal microwave dielectric properties (epsilon(r) = 12.1 +/- 0.1, Q x f = 27,740 +/- 613 GHz (at 11.4 GHz), and tau(f) = -37.5 +/- 0.4 ppm/degrees C), indicating that the SrSmGa3O7 ceramics are a favorable dielectric material for high-frequency applications.
Keywords:
SrSmGa3O7 ceramics
sinteringkinetics
P-V-L theory
impedance
microwave dielectric properties

Journal

ACS Applied Materials and Interfaces cover
ACS Applied Materials and Interfaces
IF:
8.2
Papers:
6.1W
Citations:
38.7W

Organization

C
China Elect Technol Grp Corp
Scholars:
62
Papers: 44
Citations: 12