| Literature DB >> 32438770 |
Yongzhe Fan1, Huazhen Yang1, Haisheng Fan2, Qi Liu1, Chuang Lv1, Xue Zhao1, Mingxu Yang1,3, Jianjun Wu1, Xiaoming Cao1.
Abstract
The hexagonal boron nitride (Entities:
Keywords: acrylic coating; boron nitride nanosheet; corrosion resistance; hot-dip galvanized steel
Year: 2020 PMID: 32438770 PMCID: PMC7288039 DOI: 10.3390/ma13102340
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Figure 1Schematic diagram of KH560 modified boron nitride nanosheets.
Figure 2Schematic diagram of modified boron nitride reaction.
Figure 3XRD result of h-BN, BNNS and 560/BNNS.
Figure 4The SEM images of h-BN (a) and BNNS (b), (c) is the TEM image of BNNS, (d) are AFM result of BNNS, (e) is the thickness of BNNS.
Figure 5FT-IR result of BNNS and 560/BNNS.
Figure 6(a,b) are survey spectra of XPS results of BNNS and 560/BNNS, high resolution spectra (c,d) of BNNS, high resolution spectra (e,f) of 560/BNNS.
Figure 7TEM images (a,b) of 560/BNNS.
Figure 8SEM results of waterborne acrylic coating, BNNS/waterborne acrylic coating and 560/BNNS waterborne acrylic coating morphologies. (a) The waterborne acrylic coating; (b) the cross section of waterborne acrylic coating; (c) the BNNS/waterborne acrylic coating; (d) the cross section of BNNS/waterborne acrylic coating; (e) the 560/BNNS waterborne acrylic coating; (f) the cross section of 560/BNNS waterborne acrylic coating.
Figure 9Potentiodynamic polarization curves of pure waterboron acrylic coating, BNNS coating and 560/BNNS coating.
Potentiodynamic polarization parameters and corrosion rate calculation results.
| Sample | Icorr (A/cm2) | Ecorr (V) | Corrosion Rate (mm/year) |
|---|---|---|---|
| Pure waterboron acrylic Coating | 2.2 × 10−5 | −1.13 | 1.432 × 102 |
| BNNS Coating | 9.7 × 10−6 | −1.02 | 1.347 × 101 |
| 560/BNNS Coating | 2.3 × 10−7 | −1.06 | 3.734 × 100 |
Figure 10The EIS results of pure waterborne acrylic coating, BNNS coating and 560/BNNS coating. (a) is the Nyquist plot, (b,c) are the Bode plots, (d) is the equivalent electric circuit.
EIS fitting parameters of various samples.
| Sample | Pure Waterborne Acrylic Coating | BNNS Coating | 560/BNNS Coating |
|---|---|---|---|
| Rs (Ω·cm2) | 5.32 | 6.14 | 7.23 |
| Qc (Ω−1·cm−2·sn) | 1.32 × 10−4 | 5.37 × 10−5 | 1.44 × 10−6 |
| Rpores (Ω·cm−2) | 172 | 406 | 958 |
| Rt (Ω·cm−2) | 1500 | 2500 | 4435 |
| Qdl (Ω−1·cm−2·sn) | 6.52 × 10−3 | 2.65 × 10−3 | 5.84 × 10−4 |
Figure 11The EIS results of pure waterborne acrylic coating, BNNS coating and 560/BNNS coating after long-term immersion. (a) is the Nyquist plot, (b,c) are the Bode plots, (d) is the equivalent electric circuit.
EIS fitting parameters of long term immersion.
| Sample | Pure Waterborne Acrylic Coating | BNNS Coating | 560/BNNS Coating |
|---|---|---|---|
| Rs (Ω·cm−2) | 3.97 | 5.23 | 5.46 |
| Qc (Ω−1·cm−2·sn) | 3.24 × 10−3 | 4.21 × 10−4 | 3.16 × 10−5 |
| Rpore (Ω·cm2) | 26.8 | 254.2 | 485.3 |
| Qdl (Ω−1·cm−2·sn) | 1.24 × 10−3 | 1.42 × 10−3 | 2.54 × 10−4 |
| Rt (Ω·cm−2) | 469 | 1538 | 2525 |
| Rcorr (Ω·cm−2) | 248.5 | 176.3 | 122.1 |
| Qcorr (Ω−1·cm−2·sn) | 5.87 × 10−3 | 4.57 × 10−3 | 5.74 × 10−3 |
Figure 12Corrosion resistance mechanism model diagram.