| Literature DB >> 31878225 |
Yue Jia1, Zhongfu Li1, Haiqi Wang1, Muhammad Saeed2, Houzhi Cai1.
Abstract
The extraordinary optoelectronic properties of platinum diselenide (PtSe2), whose structure is similar to graphene and phosphorene, has attracted great attention in new rapidly developed two-dimensional (2D) materials beyond the other 2D material family members. We have investigated the surface plasmon resonance (SPR) sensors through PtSe2 with the transfer matrix method. The simulation results show that the anticipated PtSe2 biochemical sensors have the ability to detect analytic. It is evident that only the sensitivities of Ag or Au film biochemical sensors were observed at 118°/RIU (refractive index unit) and 130°/RIU, whereas the sensitivities of the PtSe2-based biochemical sensors reached as high as 162°/RIU (Ag film) and 165°/RIU (Au film). The diverse biosensor sensitivities with PtSe2 suggest that this kind of 2D material can adapt SPR sensor properties.Entities:
Keywords: Kretschmann; PtSe2; SPR; biosensor; transition metal dichalcogenides (TMDCs)
Year: 2019 PMID: 31878225 PMCID: PMC6982880 DOI: 10.3390/s20010131
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1Sketch diagram of the PtSe2 surface plasmon resonance (SPR) biochemical sensor to enhance the sensitivity.
Figure 2Real and imaginary parts of the complex dielectric function for PtSe2 at a wavelength of 633 nm.
Figure 3Variation of reflectivity with incident angles for (a),(c) the conventional biochemical sensor based on simplex Ag or Au film; and (b),(d) the proposed biochemical sensors with PtSe2 on Ag or Au, respectively.
Figure 4(a,c) The reflectances of the PtSe2 biosensor on Ag film and Au film change with different numbers of PtSe2 layers, respectively; (b,d) the reflectance of PtSe2 biosensor with 2.0 nm PtSe2 varies with the refractive indices of the sensing medium on Ag film and Au film, respectively.
Figure 5(a) Electric field distributions for the PtSe2 on Ag film and Au film sensors; (b) Variation of sensitivity with respect to PtSe2 in different thicknesses; (c) The sensitivities of the proposed biochemical sensors with 2.0 nm PtSe2 vary with the refractive indices of sensing medium on Ag film and Au film, respectively; (d) Variation of quality factors with respect to the thickness of PtSe2 varying from 0 to 7 nm of PtSe2 biosensor.
Change in thickness of PtSe2, layer numbers (L), highest sensitivity (S), minimum resonance angle (θ) at n = 1.33, and resonance angle change (Δθ) from n = 1.330 to n = 1.335. The smallest reflectivity (R), full width at half-maximum (FWHM), and figure of merit (FOM) is at n = 1.33, and detection accuracy (DA) is at n = 1.33 to n = 1.34 for the PtSe2 SPR biochemical sensors.
| PtSe2 | Thickness (nm) |
| Δ | FWHM | DA | FOM | ||||
|---|---|---|---|---|---|---|---|---|---|---|
| Ag | Without PtSe2 | 0 | 0 | 118 | 67.64 | 0.59 | 0.0269 | 1.48 | 0.797 | 79.72 |
| PtSe2 | 2.0 | 5 | 128 | 69.14 | 0.64 | 0.1096 | 3.15 | 0.4063 | 40.63 | |
| 3.3 | 9 | 139 | 70.49 | 0.69 | 0.2951 | 5.61 | 0.2477 | 24.77 | ||
| 4.4 | 12 | 147 | 71.90 | 0.73 | 0.4837 | 9.17 | 0.1603 | 16.03 | ||
| 5.3 | 14 | 156 | 72.84 | 0.78 | 0.5487 | 9.96 | 0.1566 | 15.66 | ||
| 6.1 | 16 | 162 | 73.86 | 0.81 | 0.6043 | 10.85 | 0.1493 | 14.93 | ||
| Au | Without PtSe2 | 0 | 0 | 130 | 69.57 | 0.65 | 0.0063 | 3.73 | 0.3485 | 34.85 |
| PtSe2 | 2.0 | 5 | 144 | 71.40 | 0.72 | 0.0555 | 6.49 | 0.2218 | 22.18 | |
| 3.3 | 9 | 156 | 73.01 | 0.78 | 0.1808 | 9.74 | 0.1601 | 16.01 | ||
| 4.4 | 12 | 165 | 74.69 | 0.82 | 0.3515 | 11.68 | 0.1412 | 14.12 |
The optimized layers, change in resonance angle (Δθ), highest sensitivity (S), and reference.
| Layers in the Structure | Δ | Reference | |
|---|---|---|---|
| Ag, 5 nm black phosphorus | 0.90 | 181 | [ |
| Ag, 5 nm BP, 5 L graphene | 1.08 | 217 | [ |
| Ag, 5 nm BP, 1 L MoS2 | 1.09 | 218 | [ |
| Ag, 5 nm BP, 1 L WS2 | 1.18 | 237 | [ |
| Au, 4 L MoS2, Au, 1 L graphene | 0.91 | 182 | [ |
| Ag, 6.1 nm PtSe2 | 0.81 | 162 | This work |
| Au, 4.4 nm PtSe2 | 0.82 | 165 | This work |