Table 1 Sintering process, mean grain size and dielectric properties of some LnCu3Ti4O12 (Ln = Na1/2Bi1/2, Na1/2Sm1/2, Na1/2Eu1/2, Na1/2La1/2, Na1/2Y1/2, Na1/3Ca1/3Bi1/3 and Na1/3Ca1/3Yb1/3 etc.) ceramics.

From: Effects of multiple cations and sintering temperature on microstructure and dielectric properties in Na1/2Ln1/2Cu3Ti4O12 (Ln = Sm and Eu) ceramic materials

Samples

Preparation method

Sintering conditions

Mean grain size (μm)

Dielectric constant (1 kHz)

Dielectric loss (1 kHz)

References

Bi1/2Na1/2Cu3Ti4O12

Pechini method

1000 °C for 10 h

3.2

2.77 × 103

0.11

30

Na1/2Bi1/2Cu3Ti4O12

Sol–gel

1000 °C for 3 h

2.2

≈ 104

9

Na1/3Ca1/3Bi1/3Cu3Ti4O12

Solid state method

1060 °C for 5 h

2–20

2.59 × 104

0.038

27

Na1/2Sm1/2Cu3Ti4O12

Sol–gel

1050 °C for 18 h

3.67

8.04 × 103

0.045

31

Na1/2Sm1/2Cu3Ti4O12

Solid state method

1110 °C for 10 h

7.02 × 103

0.041

32

Na1/2La1/2Cu3Ti4O12

Solid state method

1080 °C for 5 h

2–4

6.1 × 103

0.037

33

Na1/2La1/2Cu3Ti4O12

Spark plasma sintering

925 °C for 10 min

0.3

 > 103

14

Na1/2Y1/2Cu3Ti4O12

Solid state method

1085 °C for 5 h

11

1.4 × 104

0.04

18

Na1/2Y1/2Cu3Ti4O12

Solid state method

1110 °C for 10 h

10.32

1.8 × 104

0.03

28

Na1/2Y1/2Cu3Ti4.1O12

Solid state method

1090 °C for 5 h

4.06

2.56 × 104

0.022

8

(Na1/3Ca1/3Yb1/3)Cu3Ti4O12

Sol–gel

1075 °C for 12 h

0.18–0.4

5488

0.075

21

Na1/2Sm1/2Cu3Ti4O12

Solid state method

1000 °C for 10 h

19.73

5.5 × 103

0.055

This work

Na1/2Eu1/2Cu3Ti4O12

Solid state method

1000 °C for 10 h

16.9

4.7 × 103

0.066

This work