2019
DOI: 10.1111/jace.16855
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Structure, microwave dielectric performance, and infrared reflectivity spectrum of olivine‐type Mg2Ge0.98O4 ceramic

Abstract: An ultra‐low dielectric loss ceramics Mg2Ge0.98O4 with olivine structure was fabricated by conventional solid‐state route. The phase composition, crystal structure, and microwave dielectric properties were investigated. The phase of Mg2Ge0.98O4 is formed to the orthorhombic forsterite structure with a space group Pmnb (62). The dense microstructure and excellent microwave dielectric properties of Mg2Ge0.98O4 ceramic were obtained at 1360°C for 4 hours, with relative density ~96.4%, εr ~ 7.3, Q × f = 112 400 GH… Show more

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Cited by 20 publications
(7 citation statements)
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“…Subsequently, the contribution of the lattice vibration to the microwave dielectric properties was calculated and evaluated through the Kramers−Kronig (K−K) relationship. 39 The formulas for the dielectric response relationship, detailed in S1−S4 (Supporting Information), were compared with the complex dielectric spectrum obtained from down-conversion in the terahertz frequency band. Figure 8a shows that the measured far-infrared reflectance value of the Mg 1.8 (Ni x Co 1−x ) 0.2 Al 4 Si 5 O 18 (x = 0.5) ceramic sample is consistent with the fitted value.…”
Section: Resultsmentioning
confidence: 99%
“…Subsequently, the contribution of the lattice vibration to the microwave dielectric properties was calculated and evaluated through the Kramers−Kronig (K−K) relationship. 39 The formulas for the dielectric response relationship, detailed in S1−S4 (Supporting Information), were compared with the complex dielectric spectrum obtained from down-conversion in the terahertz frequency band. Figure 8a shows that the measured far-infrared reflectance value of the Mg 1.8 (Ni x Co 1−x ) 0.2 Al 4 Si 5 O 18 (x = 0.5) ceramic sample is consistent with the fitted value.…”
Section: Resultsmentioning
confidence: 99%
“…To better understand the influence of TA B L E 1 The unit cell data (a, c, and 𝑣 𝑚 ) calculated from the XRD patterns, trial, theoretical and corrected dielectric constant (ε r, ε th, and ε corr ) of LiIn Al 3+ substitution for In 3+ on the permittivity (ε r ), the theoretical permittivity (ε th = 9.77) of LiIn0 .95 Al0 .05 O 2 ceramic was first calculated according to the Clausius-Mossotti equation (see Supporting Information). 23 And then its porosity corrected permittivity (ε cor = 14.74) is obtained based on the following equation 24 :…”
Section: Resultsmentioning
confidence: 99%
“…With the x increasing, the ε r (maximum values for each composition) from 9.6 ( x = 0) increases to 13.5 ( x = 0.15) and then slightly decreased to 11.2. To better understand the influence of Al 3+ substitution for In 3+ on the permittivity ( ε r ), the theoretical permittivity ( ε th = 9.77) of LiIn0 .95 Al0 .05 O 2 ceramic was first calculated according to the Clausius–Mossotti equation (see Supporting Information) 23 . And then its porosity corrected permittivity ( ε cor = 14.74) is obtained based on the following equation 24 : 0.33emεbadbreak=εm0.33em()13P()εm12εm+1.$$\begin{equation}\ \varepsilon ^{\prime} = {\varepsilon }_m\ \left( {1 - \frac{{3P\left( {{\varepsilon }_m - 1} \right)}}{{2{\varepsilon }_m + 1}}} \right).\end{equation}$$…”
Section: Resultsmentioning
confidence: 99%
“…εr in the THz band is smaller than that at microwave frequencies, which is attributed to intrinsic factors such as dipoles and lattice vibrations. The intrinsic microwave dielectric properties of MAS-Tx (x=0, 1.5, 5.5) ceramics were further investigated by infrared reflectance, and the results analyzed using a classical harmonic model [43][44][45][46][47] :…”
Section: Resultsmentioning
confidence: 99%