| Literature DB >> 30621301 |
Xiaoyu Dai1,2, Yanzhao Liang3,4, Yuting Zhao5,6, Shuaiwen Gan7,8, Yue Jia9,10, Yuanjiang Xiang11,12.
Abstract
Single layers of tin selenide (SnSe), which have a similar structure as graphene and phosphorene, also show excellent optoelectronic properties, and have received much attention as a two-dimensional (2D) material beyond other 2D material family members. Surface plasmon resonance (SPR) sensors based on three monolayer SnSe allotropes are investigated with the transfer matrix method. The simulated results have indicated that the proposed SnSe-containing biochemical sensors are suitable to detect different types of analytes. Compared with the conventional Ag-only film biochemical sensor whose sensitivity is 116°/RIU, the sensitivities of these SnSe-based biochemical sensors containing α-SnSe, δ-SnSe, ε-SnSe, were obviously increased to 178°/RIU, 156°/RIU and 154°/RIU, respectively. The diverse biosensor sensitivities achieved with these three SnSe allotropes suggest that these 2D materials can adjust SPR sensor properties.Entities:
Keywords: SPR sensor; SnSe allotrope; high sensitivity
Year: 2019 PMID: 30621301 PMCID: PMC6339051 DOI: 10.3390/s19010173
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1Sketch diagram of the SPR biochemical sensor made using three types of SnSe allotropes to enhance the sensitivity.
Figure 2Measured refractive indices for the three SnSe allotropes [22].
Figure 3Variation of reflectivity with incidence angle for (a) the conventional biochemical sensor based on a simplex Ag film, (b–d) are the proposed biochemical sensors with α-SnSe, δ-SnSe, ε-SnSe, respectively.
Figure 4(a) Change of reflectivity relative to incidence angles, (b) the electric field distributions of the biochemical sensors proposed by SnSe from n = 1.33 to n = 1.37, (c) incidence angles of three SnSe allotropes from n = 1.33 to n = 1.37, (d) the variation of the sensitivities of the proposed biochemical sensors with different number of SnSe layers with the refractive indices of the sensing medium.
Figure 5(a) Change of the reflectance of α-SnSe biosensor, (b) variation of sensitivity with respect to different numbers of SnSe allotrope layers, (c) change of resonance angle with respect to different layer numbers of SnSe allotropes, (d) the electric field distribution for the proposed SPR sensor.
Change in different Ag thickness (d), layer numbers (L), highest sensitivity (S), minimum resonance angle (θ), resonance angle change (Δθ), and the smallest reflectivity (R) for the SnSe allotrope-based SPR biochemical sensors at n = 1.33.
| SnSe Allotropes |
| Δ | ||||
|---|---|---|---|---|---|---|
| without SnSe | 52 | 0 | 116 | 67.64 | 0.58 | 0.02690 |
| α-SnSe | 52 | 1 | 118 | 68.08 | 0.59 | 0.00003 |
| 52 | 8 | 152 | 72.27 | 0.76 | 0.3954 | |
| 52 | 13 | 178 | 76.91 | 0.89 | 0.5854 | |
| δ-SnSe | 52 | 17 | 118 | 68.14 | 0.59 | 0.01282 |
| 52 | 5 | 138 | 70.60 | 0.69 | 0.4446 | |
| 52 | 9 | 156 | 73.98 | 0.78 | 0.6327 | |
| ε-SnSe | 52 | 13 | 118 | 67.96 | 0.59 | 0.00100 |
| 52 | 8 | 138 | 70.70 | 0.69 | 0.4513 | |
| 52 | 15 | 156 | 74.33 | 0.78 | 0.6476 | |
| without SnSe | 50 | 0 | 116 | 67.64 | 0.58 | 0.00590 |
| α-SnSe | 50 | 1 | 118 | 68.08 | 0.59 | 0.00680 |
| 50 | 8 | 152 | 72.25 | 0.76 | 0.3295 | |
| 50 | 13 | 178 | 76.86 | 0.89 | 0.5288 | |
| δ-SnSe | 50 | 17 | 120 | 68.13 | 0.60 | 0.03950 |
| 50 | 5 | 138 | 70.59 | 0.69 | 0.3805 | |
| 50 | 9 | 156 | 73.95 | 0.78 | 0.5821 | |
| ε-SnSe | 50 | 13 | 118 | 67.96 | 0.59 | 0.01420 |
| 50 | 8 | 138 | 70.69 | 0.69 | 0.3875 | |
| 50 | 15 | 154 | 74.31 | 0.77 | 0.5987 | |
| without SnSe | 48 | 0 | 116 | 67.64 | 0.58 | 0.02691 |
| α-SnSe | 48 | 1 | 118 | 68.08 | 0.59 | 0.00003 |
| 48 | 8 | 150 | 72.23 | 0.75 | 0.2632 | |
| 48 | 13 | 176 | 76.80 | 0.88 | 0.4673 | |
| δ-SnSe | 48 | 17 | 118 | 68.14 | 0.59 | 0.01281 |
| 48 | 5 | 138 | 70.58 | 0.69 | 0.3146 | |
| 48 | 9 | 154 | 73.92 | 0.77 | 0.5264 | |
| ε-SnSe | 48 | 13 | 118 | 67.96 | 0.59 | 0.00103 |
| 48 | 8 | 136 | 70.68 | 0.68 | 0.3218 | |
| 48 | 15 | 156 | 74.27 | 0.78 | 0.5447 |