Table 4 A comparative study with the most available PnCs’ temperature sensors.

From: Fano resonance in one-dimensional quasiperiodic topological phononic crystals towards a stable and high-performance sensing tool

Designed sensor

Sensitivity

QF

Geometrical stability

References

Ultra-sensitive one-dimensional phononic crystals temperature sensor

1500 Hz/°C

3708

Not verified

7

Temperature biosensor based on triangular lattice phononic crystals

7100 Hz/K

Not verified

89

phononic crystal cavity for sensing different biodiesel fuels

37,243 Hz/°C

267

Not verified

90

Phononic membrane with the coupling of Fano resonant modes as a highly sensitive temperature sensor

2400 Hz/°C

15.86

Not verified

91

Temperature influences on the performance of biodiesel phononic crystal sensor

361.6 Hz/°C

57.8

Not verified

92

3D-printed phononic fluidic cavity sensor

1400 Hz

Not verified

93

Phononic crystal-based sensor to detect acoustic variations in methyl & ethyl nonafluorobutyl ether

0.0042 K–1

352

Not verified

94

1D quasiperiodic topological phononic crystals temperature sensor

124,950 Hz/°C

461.54

Verified

The current study