| Literature DB >> 35702243 |
Dong Fu1,2, Xiaoru Gao3, Jue Wang1, Haijian Jiang1, Mingming Zheng1, Peng Li1, Bo Huang1, Kan Kan1, Xiaochen Zhang1.
Abstract
A novel series of picoline-based ionic liquid surfactants, N-alkyoxycarbonyl-3-picoline bromides [C n Empy][Br] (n = 10, 12, 14), have been synthesized. The thermal stability, aggregation behavior and surface activity of the synthetic ionic liquid surfactants were investigated systematically though a series of methods, such as thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), tensiometry and conductivity. The thermodynamics of micellization of the ionic liquid surfactants solution were studied by using the conductivity method in the temperature range 278.15-318.15 K. The surface activity parameters and thermodynamics parameters were derived, respectively. The enthalpy-entropy compensation effect was further discussed by using relative thermodynamics parameters. It was found that the [C n Empy][Br] have moderate surface activity, and their critical micelle concentration (CMC) decreased with the ester-functionalized chain length and exhibited a U-shape with temperature. The calculation results of the thermodynamic parameters showed that the micellization processes of [C n Empy][Br] were spontaneous, endothermic at low temperature and exothermic at higher temperature. This journal is © The Royal Society of Chemistry.Entities:
Year: 2022 PMID: 35702243 PMCID: PMC9097595 DOI: 10.1039/d2ra01706g
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Scheme 1The general synthetic pathways of [CEmpy][Br].
Decomposition and phase transition temperatures of the ester-functionalized ILSsa
| [C10Empy][Br] | [C12Empy][Br] | [C14Empy][Br] | |
|---|---|---|---|
|
| — | 50 ± 0.30 | 52 ± 0.26 |
|
| 92 ± 0.32 | 103 ± 0.30 | 100 ± 0.26 |
|
| 261 ± 0.32 | 267 ± 0.30 | 269 ± 0.26 |
|
| 170 ± 0.21 | 182 ± 0.28 | 168 ± 0.14 |
|
| 220 ± 0.21 | 226 ± 0.28 | 224 ± 0.14 |
Units: Tstart, start decomposition temperature; Tonset, onset decomposition temperatures; T1, melting points; T2, thermal transition temperatures; T3, complete decomposition temperatures.
Fig. 1Curves of the conductivity against concentration for [CEmpy][Br] (n = 10, 12, 14) at 298.15 K.
Surfactivity parameters of N-alkyoxycarbonyl-3-picoline bromidesa
| Surfactants |
| CMC/C20 | p |
|
|
| CMC |
|---|---|---|---|---|---|---|---|
| [C10Empy][Br] | 32.1 | 2.00 | 1.94 | 40.0 | 1.29 | 0.128 | 23.3 |
| [C12Empy][Br] | 31.0 | 2.04 | 2.58 | 41.1 | 1.63 | 0.102 | 5.37 |
| [C14Empy][Br] | 30.1 | 2.16 | 3.06 | 42.0 | 1.95 | 0.085 | 1.88 |
| C10EPyrBr[ | — | — | 2.7 | 41.0 | — | 0.071 | 17 |
| C12EPyrBr[ | — | — | 3.5 | 43.0 | — | 0.064 | 4.1 |
| C14EPyrBr[ | — | — | 4.0 | 48.0 | — | 0.045 | 0.91 |
Units: γCMC, mN m−1; πCMC, mN m−1; ΓMAX, μmol m−2, AMIN, nm2; CMC, mmol L−1.
Fig. 2The plot of log CMC vs. ester hydrophobic chain length for [CEmpy][Br].
Fig. 3The plot of surface tension against concentration of [CEmpy][Br].
Fig. 4The plot of conductivity vs. concentration of [CEmpy][Br] at different temperatures and the curves of CMC value vs. temperature of [CEmpy][Br] at different temperatures.
The thermodynamic parameters of [CEmpy][Br]a
| Surfactants |
| CMC |
| Δ | Δ | Δ |
|
|---|---|---|---|---|---|---|---|
| [C10Empy][Br] | 278.15 | 23.54 | 0.360 | −29.49 | 6.281 | 0.128 | 35.60 |
| 283.15 | 22.72 | 0.378 | −29.78 | 4.336 | 0.120 | 33.98 | |
| 288.15 | 22.26 | 0.398 | −30.01 | 2.286 | 0.112 | 32.27 | |
| 293.15 | 22.19 | 0.414 | −30.24 | 0.1396 | 0.104 | 30.49 | |
| 298.15 | 22.40 | 0.430 | −30.41 | −2.112 | 0.095 | 28.32 | |
| 303.15 | 22.76 | 0.445 | −30.56 | −4.472 | 0.086 | 26.07 | |
| 308.15 | 23.31 | 0.457 | −30.73 | −6.953 | 0.077 | 23.73 | |
| 313.15 | 24.06 | 0.457 | −31.10 | −9.646 | 0.068 | 21.29 | |
| 318.15 | 24.83 | 0.459 | −31.43 | −12.44 | 0.060 | 19.09 | |
| [C12Empy][Br] | 278.15 | 6.18 | 0.321 | −35.34 | 7.116 | 0.149 | 42.56 |
| 283.15 | 5.93 | 0.323 | −36.09 | 4.580 | 0.140 | 40.77 | |
| 288.15 | 5.84 | 0.323 | −36.79 | 1.858 | 0.131 | 38.61 | |
| 293.15 | 5.82 | 0.325 | −37.40 | −1.061 | 0.122 | 36.35 | |
| 298.15 | 5.93 | 0.335 | −37.73 | −4.158 | 0.111 | 33.69 | |
| 303.15 | 6.11 | 0.341 | −38.10 | −7.441 | 0.101 | 30.62 | |
| 308.15 | 6.38 | 0.348 | −38.38 | −10.91 | 0.090 | 27.43 | |
| 313.15 | 6.54 | 0.357 | −38.69 | −14.54 | 0.079 | 24.11 | |
| 318.15 | 6.99 | 0.357 | −39.02 | −18.45 | 0.067 | 20.68 | |
| [C14Empy][Br] | 278.15 | 2.23 | 0.297 | −49.86 | 8.487 | 0.174 | 48.40 |
| 283.15 | 2.09 | 0.304 | −40.65 | 4.749 | 0.160 | 45.30 | |
| 288.15 | 2.07 | 0.319 | −41.06 | 0.759 | 0.145 | 41.78 | |
| 293.15 | 2.09 | 0.324 | −41.60 | −3.463 | 0.130 | 38.12 | |
| 298.15 | 2.16 | 0.335 | −41.90 | −7.923 | 0.114 | 33.99 | |
| 303.15 | 2.28 | 0.339 | −42.27 | −12.67 | 0.098 | 29.71 | |
| 308.15 | 2.48 | 0.347 | −42.41 | −17.66 | 0.080 | 24.65 | |
| 313.15 | 2.63 | 0.348 | −42.82 | −23.00 | 0.063 | 19.73 | |
| 318.15 | 2.78 | 0.350 | −43.21 | −28.64 | 0.046 | 14.63 |
Units: T, K; CMC, mmol L−1; ΔGmic, kJ mol−1; ΔHmic kJ mol−1; ΔSmic, kJ mol−1 K−1; TΔSmic, kJ mol−1.
Fig. 5The plot of temperature vs. enthalpy change for [CEmpy][Br].
Fig. 6Entropy–enthalpy compensation plots for [CEmpy][Br].