| Literature DB >> 28872606 |
Yongqian Shi1,2, Libi Fu3, Xilei Chen4, Jin Guo5, Fuqiang Yang6, Jingui Wang7, Yuying Zheng8, Yuan Hu9.
Abstract
A series of aluminum hypophosphite (AHPi)/graphite-like carbon nitride (g-C₃N₄) (designated as CAHPi) hybrids were prepared, followed by incorporation into thermoplastic polyurethane (TPU). The introduction of CAHPi hybrids into TPU led to a marked reduction in the peak of the heat release rate (pHRR), total heat release, weight loss rate, smoke production rate and total smoke production (TSP). For instance, pHRR and TSP decreased by 40% and 50% for TPU/CAHPi20. Furthermore, the increasing fire growth index and decreasing fire performance index were obtained for TPU/CAHPi systems, suggesting reduced fire hazards. It was found that improved fire safety of TPU nanocomposites was contributed by condensed phase and gas phase mechanisms. On one hand, g-C₃N₄ accelerated the thermal decomposition of AHPi for the formation of more char layers. On the other hand, g-C₃N₄ induced AHPi to generate more free radical capture agents when exposed to flame, besides protecting AHPi against thermal oxidation.Entities:
Keywords: flame retardancy; graphitic carbon nitride; inorganic compounds; mechanisms; smoke suppression
Year: 2017 PMID: 28872606 PMCID: PMC5618370 DOI: 10.3390/nano7090259
Source DB: PubMed Journal: Nanomaterials (Basel) ISSN: 2079-4991 Impact factor: 5.076
Figure 1(a) X-ray diffraction (XRD) patterns and (b) Fourier transform infrared (FTIR) spectra of g-C3N4, aluminum hypophosphite (AHPi) and their hybrids.
Figure 2Scanning electron microscope (SEM) images of (a) bulk g-C3N4; (b,c) AHPi; (d) CAHPi5; (e) CAHPi10 and (f) CAHPi20.
Figure 3(a,c) Thermogravimetric analysis (TGA) and (b,d) derivative thermogravimetry (DTG) curves of thermoplastic polyurethane (TPU) and its nanocomposites in N2 and air atmospheres.
TGA data of TPU and its nanocomposites in N2 and air atmospheres.
| Sample No. | TPU | TPU/CAHPi5 | TPU/CAHPi10 | TPU/CAHPi20 | TPU/AHPi | |
|---|---|---|---|---|---|---|
| N2 | T-10 (°C) | 322.7 | 301.7 | 302.0 | 305.2 | 304.6 |
| Tmax1 (°C) | 331.0 | 326.5 | 324.4 | 333.2 | 324.4 | |
| Tmax2 (°C) | 426.0 | 386.2 | 384.1 | 390.7 | 399.4 | |
| Tmax3 (°C) | – | – | – | – | – | |
| Residues at 800 °C (wt %) | 2.5 | 9.7 | 10.4 | 8.3 | 10.2 | |
| Air | T-10 (°C) | 329.0 | 301.5 | 298.0 | 299.2 | 296.2 |
| Tmax1 (°C) | 342.0 | 322.2 | 317.7 | 315.4 | 315.4 | |
| Tmax2 (°C) | 408.3 | 397.4 | 395.2 | 397.4 | 397.4 | |
| Tmax3 (°C) | 580.7 | 576.5 | 571.9 | 558.7 | 549.9 | |
| Residues at 800 °C (wt %) | 0.7 | 7.6 | 7.0 | 5.3 | 7.8 | |
Figure 4Weight loss of TPU and its nanocomposites during combustion.
Figure 5(a) Heat release rate (HRR); (b) total heat release (THR); (c) smoke production rate (SPR) and (d) total smoke production (TSP) curves of TPU and its nanocomposites during combustion.
Related cone calorimeter data for TPU and its nanocomposites at 35 kW·m−2.
| Sample No. | TTI 1 (s) | HRR (kW·m−2) | THR (MJ·m−2) | SPR (m2·s−1) | TSP (m2·m−2) | FPI 2 (m2·s−1·kW−1) | FGI 3 (kW·m−2·s−1) |
|---|---|---|---|---|---|---|---|
| TPU | 51 | 1031 | 78.2 | 0.10 | 849.7 | 0.049 | 7.637 |
| TPU/CAHPi5 | 53 | 896 | 79.1 | 0.08 | 781.3 | 0.059 | 6.179 |
| TPU/CAHPi10 | 59 | 698 | 78.2 | 0.07 | 730.4 | 0.084 | 4.986 |
| TPU/CAHPi20 | 65 | 622 | 73.0 | 0.05 | 696.9 | 0.104 | 4.013 |
| TPU/AHPi | 64 | 1153 | 81.9 | 0.09 | 728.2 | 0.056 | 7.206 |
1 TTI: time to ignition; 2 FPI: fire performance index; 3 FGI: fire growth index.
Comparisons in different work on flame-retardant TPU nanocomposites. Peak of the heat release rate (pHRR).
| Sample No. | Additives Content (wt %) | pHRR Reduction (%) | TSP Reduction (%) | Ref. |
|---|---|---|---|---|
| TPU/AHPi | 25 wt % AHPi | 31% | - | [ |
| TPU/AHPi | 30 wt % AHPi | 27% | −146% | [ |
| TPU/AHPi/[Emim]PF6 | 19.94 wt % AHPi + 0.06 wt % [Emim]PF6 | 92% | 54% | [ |
| This work | 10 wt % CAHPi20 | 40% | 50% | - |
Figure 6Digital photographs of (a) TPU; (b) TPU/CAHPi5; (c) TPU/CAHPi10; (d) TPU/CAHPi20 and; (e) TPU/AHPi after the cone calorimeter test.
Figure 7Raman spectra of char residues of (a) TPU/CAHPi5; (b) TPU/CAHPi10; (c) TPU/CAHPi20 and; (d) TPU/AHPi. Notes: Black curve represents the real signal; Red curve represents the fitting signal; Blue curve represents the fitting signal at 1350 cm−1; Green curve represents the fitting signal at 1590 cm−1.
Figure 8Real-time Fourier transform infrared spectroscopy (RTFTIR) spectra for condensed products of (a) AHPi and (b) CAHPi20. RT: Real-time.