| Literature DB >> 35493216 |
AbdulKarim-Talaq Mohammad1, Wahaj Raed Abbas1.
Abstract
Four new series of chalcones containing imidazole bromonium and benzimidazole bromonium salts with spacer alkyl chains (C n , n = 2 and 4) were synthesized and the chemical structure, thermal behavior, photoluminescence and gas sensing were characterized by several technical methods. The studies have indicated similar mesomorphic properties of the synthesized compounds, dependent on the terminal alkyl-chain and lengths of the alkoxy-spacer. Almost compounds with shorter alky chains, 4a-4e, 5a-5c, 6a-6c and 7a-7d, did not show liquid crystal properties, while the results of other compounds confirm the existence of smectic A in cooling and heating cycles. Photoluminescence of compounds 5a-5i and 7a-7i was also studied. The emission in the blue region reveals that the material has blue light emission properties. Sensing behavior of compounds 4i and 5i was investigated for NH3 and NO2 gases. The sensors exhibited high sensitivity toward NH3, while sensitivity toward the oxidizing gas NO2 is lower. This journal is © The Royal Society of Chemistry.Entities:
Year: 2021 PMID: 35493216 PMCID: PMC9044318 DOI: 10.1039/d1ra07731g
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Scheme 1General synthetic route for chemical structures of series 4, 5, 6 and 7.
Phase temperatures and corresponding enthalpy change of compounds 4a–4e, 5a–5c, 6a–6c and 7a–7d summarized from DSC resultsa
| No. | Spacer/ | Heating/cooling scan (onest °C min−1 [°C]/Δ |
|---|---|---|
| 4a | Butane/6 | Cr 156.1 (34.90) Iso 176.5 |
| Iso 160.9 (−29.90) Cr | ||
| 4b | Butane/7 | Cr 149.2 (26.20) Iso 174.7 |
| Iso 155.3 (−51.80) Cr | ||
| 4c | Butane/8 | Cr 145.2 (68.20) Iso 170.5 |
| Iso 151.7 (−29.90) Cr | ||
| 4d | Butane/9 | Cr 142.1 (26.67) Iso 162.7 |
| Iso 149.3 (−19.40) Cr | ||
| 4e | Butane/10 | Cr 129.0 (31.29) Iso 156.0 |
| Iso 140.2 (−51.20) Cr | ||
| 4f | Butane/11 | Cr1 118.5 (47.18) Cr2 146.1 (36.30) SmA 158.2 (4.61) Iso 164.2 |
| Iso 161.3 (−0.9) SmA 134.6 (−56.01) Cr2 121.3 (−41.10) Cr1 | ||
| 4g | Butane/12 | Cr1 109.2 (28.79) Cr2 128.9 (30.22) SmA 143.1(1.90) Iso 156.0 |
| Iso 150.3 (−4.5) SmA 133.4(-40.1) Cr2 115.6 (−37.18) Cr1 | ||
| 4h | Butane/13 | Cr1 108.20 (−35.61) Cr2 130.80 (−19.60) SmA 142.6 (6.8) Iso 158.7 |
| Iso 152.8 (−3.2) SmA 125.6 (−28.1) Cr2 99.56 (−41.1) Cr1 | ||
| 4i | Butane/14 | Cr1 84.0 (20.46) Cr2 96.6 (18.79) SmA 139.87 (0.91) Iso 150.5 |
| Iso 141.20 (−1.20) SmA 122.20 (29.01) Cr2 86.30 (−30.69) Cr1 | ||
| 5a | Hexane/6 | Cr1 140.1 (45.1) Cr2167.4 (30.9) Iso 181.3 |
| Iso 174.4 (−25.30) Cr2 153.2 (−68.9) Cr1 | ||
| 5b | Hexane/7 | Cr1 135.4 (59.23) Cr2 166.7 (89.80) Iso 179.1 |
| Iso 175.2 (−77.20) Cr2 150.7 (−60.23) Cr1 | ||
| 5c | Hexane/8 | Cr1 127.1 (50.12) Cr2163.9 (63.20) Iso 171.7 |
| Iso 167.5 (−40.90) Cr2 151.8 (−62.11) Cr1 | ||
| 5d | Hexane/9 | Cr1 120.4 (38.90) Cr2 144.9 (67.50) Iso 168.2 °C |
| Iso 162.4 (−3.57) SmA 140.7 (−72.90) Cr | ||
| 5e | Hexane/10 | Cr 121.45 (67.30) SmA 137.89 (7.81) Iso 154.7 |
| Iso 148.45 (−0.68) SmA 125.20 (−48.40) Cr | ||
| 5f | Hexane/11 | Cr1 125.6 (66.11) Cr2 138.9 (49.90) SmA 154.6 (8.90) Iso 167.0 |
| Iso 163.89 (−0.97) SmA 147.5 (−52.20) Cr2 122.16 (67.20) Cr1 | ||
| 5g | Hexane/12 | Cr1 98.9 (39.80) Cr2 119.70 (61.20) SmA 139.30 (2.89) Iso 158.2 |
| Iso 153.5 (−7.80) SmA 137.4 (41.03) Cr | ||
| 5h | Hexane/13 | Cr1 90.7 (80.90) Cr2114.70 (76.30) SmA 140.5 (5.12) Iso 160.2 |
| Iso 144.3 (−2.11) SmA 120.30 (40.89) Cr2 96.4 (70.40) Cr1 | ||
| 5i | Hexane/14 | Cr1 83.0 (65.46) Cr2 93.6 (70.34) SmA 143.87 (0.91) Iso 161.5 °C |
| Iso 137.20 (−13.56) SmA 118.89 (28.12) Cr2 81.30 (−29.19) Cr1 | ||
| 6a | Butane/6 | Cr1 130.8 (27.6) Cr2 148.8 (50.91) Iso 176.6 |
| Iso 162.5 (−47.10) Cr2 138.6 (−55.10) Cr1 | ||
| 6b | Butane/7 | Cr1 132.5 (69.20) Cr2 145.2 (73.90) Iso 174.5 °C |
| Iso 164.8 (−51.20) Cr2 144.8 (−72.20) Cr1 | ||
| 6c | Butane/8 | Cr1 121.4 (49.10) Cr2 142.5 (39.89) Iso 167.5 °C |
| Iso 143.7 (−78.90) Cr | ||
| 6d | Butane/9 | Cr 113.8 (56.10) SmA 147.3 (6.78) Iso 165.2 |
| Iso 161.4 (−2.18) SmA 142.3 (−66.90) Cr | ||
| 6e | Butane/10 | Cr 89.7 (29.45) SmA 134.7 (4.36) Iso 153.0 |
| Iso 148.3 (−0.91) SmA 130.4 (−70.3) Cr | ||
| 6f | Butane/11 | Cr1114.7 (61.20) Cr2 133.4 (30.18) SmA 142.1 (7.90) Iso 163.5 |
| Iso 159.8 (−6.10) SmA 137.9 (−67.80) Cr1 105.9 (−40.20) Cr1 | ||
| 6g | Butane/12 | Cr1 120.6 (87.20) Cr2 128.9 (66.90) SmA 146.3 (3.56) Iso 163.3 |
| Iso 160.8 (−2.60) SmA 113.4 (−45.10) Cr2 102.5 (−46.70) Cr1 | ||
| 6h | Butane/13 | Cr1 121.3 (73.20) Cr2 134.6 (38.40) SmA 144.6 (2.20) Iso 162.5 |
| Iso 158.3 (−1.80) SmA 137.5 (−58.9) Cr2 111.2 (−29.0) Cr1 | ||
| 6i | Butane/14 | Cr1 119.7 (65.9) Cr1 132.5 (70.11) SmA 138.7 (5.09) Iso 154.5 |
| Iso 150.3 (−0.97) SmA 131.2 (−57.80) Cr2 119.5 (−68.99) Cr1 | ||
| 7a | Hexane/6 | Cr 120.3 (37.80) Iso 178.7 |
| Iso 146.4 (−45.60) Cr | ||
| 7b | Hexane/7 | Cr 121.3 (70.20) Iso 177.2 |
| Iso 134.3 (−41.27) Cr | ||
| 7c | Hexane/8 | Cr 114.6 (50.34) Iso 176.5 |
| Iso 121.4 (−26.70) Cr | ||
| 7d | Hexane/9 | Cr1 112.6 (28.10) Cr2 149.8 (56.30) 173.2 °C |
| Iso 152.9 (−70.26) Cr2 134.2 (−41.30) Cr1 | ||
| 7e | Hexane/10 | Cr1 105.7 (37.32) Cr2 130.9 (60.20) SmA 151.7 (2.41) Iso 168.0 |
| Iso 165.2 (−0.97) SmA 143.7 (−81.74) Cr2 116.4 (40.11) Cr1 | ||
| 7f | Hexane/11 | Cr 107.5 (50.20) SmA 155.1 (4.20) Iso171.0 |
| Iso 166.2 (−2.11) SmA 143.2 (−40.07) Cr | ||
| 7g | Hexane/12 | Cr1 91.2 (36.50) Cr2 129.7 (61.07) SmA 138.6 (8.11) Iso160.0 |
| Iso 156.2 (−3.20) SmA 132.1 (−41.09) Cr | ||
| 7h | Hexane/13 | Cr1 94.2 (50.26) Cr2 119.2 (30.96) SmA 142.8 (6.81) Iso 166.5 |
| Iso 163.9 (−4.11) SmA 141.7 (38.07) Cr2 108.7 (26.15) Cr1 | ||
| 7i | Hexane/14 | Cr1 98.3 (41.90) Cr2 123.41 (41.06) SmA 147.8 (5.61) Iso 165.5 |
| Iso 161.5 (−2.78) SmA 144.2 (−26.50) Cr2 99.61 (−43.20) Cr1 |
Note: Cr1/Cr2 = crystal to crystal transition; SmA = smectic A phase; Iso = isotropic phase.
Fig. 1DSC plot showing the heating, and cooling transition temperatures and mesophase range of 4f, 5i, 6g and 7c.
Fig. 2(a) The SmA phase at 131 °C (cooling cycle) of compound 4f. (b) SmA phase at 148 °C (heating cycle) of compound 5e. (c) SmA phase at 131 °C (cooling cycle) of compound 6g. (d) SmA phase at 154 °C (heating cycle) of compound 7g.
Fig. 3Plot of transition temperatures vs. numbers of carbon atoms in the alkyl chain for series 4a–4i, 5a–5i, 6a–6i and 7a–7i.
Fig. 4Luminescence spectra of compounds (a) 5i and (b) 7i (excitation wavelength is 350 nm).
Fig. 5(a) The sensitivity with working temperature for 4i/n-Si against NH3 gas. (b) The response and recovery time with working temperature for 4i/n-Si against NH3 gas. (c) The sensitivity with working temperature for 5i/n-Si against NH3 gas. (d) The response and recovery time with working temperature for 5i/n-Si against NH3 gas. (e) The sensitivity with working temperature for 4i/n-Si against NO2 gas. (f) The response and recovery time with working temperature for 4i/n-Si against NO2 gas. (g) The sensitivity with working temperature for 5i/n-Si against NO2 gas. (h) The response and recovery time with working temperature for 5i/n-Si against NO2 gas.
Fig. 6XRD pattern of compounds (a) 4g, (b) 5e, (c) 6g and (d) 7g.