| Literature DB >> 29491804 |
Deepak Kumar1, K Durga Bhaskar Yamajala1, Asit B Samui1, Shaibal Banerjee1.
Abstract
Acryloyl based novel energetic monomers having nitro acrylates and nitro triazole acrylates were synthesized and further used for polymerization. Due to scavanging properties of nitro groups, syntheses of nitro aromatic polymers are not facile at normal conditions. In this regard, we report a simple protocol to synthesize these energetic group embeded acroloyl polymers. These polymers were characterized by FTIR, and NMR spectroscopic techniques. gel permeation chromatography (GPC) technique was employed in order to understand molecular mass of these polymers along with average molecular weight, number average weight and poly dispersity index. Glass transition temperature (Tg) was determined by using DSC analysis. It was observed that with increase in nitro groups in polymers there is a decrease in glass transition temperature. Two steps degradation were depicted in the TGA thermograph in nitro containing polymers. Heat release during this reaction was found up to 951 J/g. Increase in nitrogen content in polymer unit enhanced the heat release of polymers.Entities:
Keywords: Acrylamide polymers; click chemistry; triazole polymers
Year: 2016 PMID: 29491804 PMCID: PMC5812170 DOI: 10.1080/15685551.2016.1258977
Source DB: PubMed Journal: Des Monomers Polym ISSN: 1385-772X Impact factor: 2.650
Different conditions to optimized the reaction.
| Compound | Reaction mixture | Temperature (°C) | Time (h) | Yield (%) |
|---|---|---|---|---|
| 1(b) | Triethylamine/ethyl methyl ketone | 0 for 1 h and 25 for 5 h | 6 | 57 |
| K2CO3/acetone | 0 for 1 h and 25 for 5 h | 6 | 55 | |
| Triethylamine/dichloromethane | 0 for 1 h and 25 for 5 h | 6 | 65 |
Figure 1.1H NMR of monomer 1(a) & polymer 3(a).
Structure and yield of compounds (1a–1e).
| S. No. | Compound | Yield (%) |
|---|---|---|
| 1a | R2=H, R1=NO2, R3=H | 75 |
| 1b | R2=NO2, R1=H, R3=H | 65 |
| 1c | R2=H, R1=CF3, R3=H | 78 |
| 1d | R2=NO2, R3=CF3, R1=H | 80 |
| 1e | R2=NO2, R3=NO2, R1=H | 65 |
Figure 2.13C NMR of monomer 1(a) & polymer 3(a).
Structure and yield of compounds (2a–2c).
| S. No. | Compound | Yield (%) |
|---|---|---|
| 2a | R2=H, R1=NO2 | 68 |
| 2b | R2=NO2, R1=H | 71 |
| 2c | R2=H, R1=CF3 | 66 |
Different conditions to optimized polymer reaction.
| Compound | Solvent | Free radical initiator | Temperature (°C) & Time (h) | Yield (%) |
|---|---|---|---|---|
| 3(b) | Toluene | Benzoyl peroxide | 110 & 24 | 20 |
| Tetrahydrofuran | AIBN | 70 & 24 | – | |
| 2-Butanone | AIBN | 75 & 24 | 30 | |
| 14-Dioxane | AIBN | 100 & 24 | 64 |
Structure and yield of compounds (3a–3e).
| S. No. | Compound | Yield (%) |
|---|---|---|
| 3a | R2=H,R1=NO2, R3=H | 62 |
| 3b | R2=NO2, R1=H, R3=H | 64 |
| 3c | R2=H, R1=CF3, R3=H | 75 |
| 3d | R2=NO2, R3=CF3, R1=H | 58 |
| 3e | R2=NO2, R3=NO2, R1=H | 51 |
Figure 3.1H NMR of triazole monomer 2(a) & polymer 3(f).
Figure 4.13C NMR of triazole monomer 2(a) & polymer 3(f).
Structure and yield of compounds (3f–3h).
| S. No. | Compound | Yield (%) |
|---|---|---|
| 3f | R2=H, R1=NO2 | 62 |
| 3g | R2=NO2, R1=H | 63 |
| 3h | R2=H, R1=CF3 | 80 |
Molecular weight of polymers.
| Polymer | Average | Average | PDI |
|---|---|---|---|
| 3(a) | 5448 | 4097 | 1.33 |
| 3(b) | 8314 | 8314 | 1.00 |
| 3(c) | 2791 | 2791 | 1.00 |
| 3(d) | 2791 | 2791 | 1.00 |
| 3(f) | 8985 | 5146 | 1.74 |
| 3(g) | 3877 | 2216 | 1.74 |
| 3(h) | 48,938 | 31,798 | 1.53 |
Figure 5.TGA diffractogram of poly 3NA (3a).
Figure 6.TGA diffractogram of poly 3TrZ (3f).
Thermal studies of polymers.
| Polymer | ∆H (J/g) | Weight loss (%) | Temperature range (°C) | |
|---|---|---|---|---|
| 3(a) | 83.66 | 93.18 | 15 | 95–174 |
| 30 | 174–377 | |||
| 3(b) | 96.53 | 149.47 | 38 | 94.77–411 |
| 3(c) | 86.49 | 237.09 | 87 | 156–235 |
| 10 | 235–417 | |||
| 3(d) | 90.33 | 81.37 | 37 | 94–436 |
| 3(e) | 78.15 | 298.93 | 41 | 212–399 |
| 3(f) | 78.10 | 779.60 | 38 | 244.73–369.9 |
| 12 | 369.9–525.99 | |||
| 3(g) | 125 | 951.59 | 33 | 256–362 |
| 12 | 362–501 | |||
| 3(h) | 90.5 | 420.41 | 80 | 288.4–452 |
O.B. of polymers.
| Polymer | %Nitrogen content | O.B. (%) |
|---|---|---|
| 3(a) | 14.57 | −174.95 |
| 3(b) | 14.57 | −174.95 |
| 3(c) | 6.50 | −171.12 |
| 3(d) | 10.76 | −126.13 |
| 3(e) | 17.72 | −111.37 |
| 3(f) | 20.40 | −145.94 |
| 3(g) | 20.40 | −145.94 |
| 3(h) | 14.14 | −156.18 |