| Literature DB >> 34950495 |
Yousef G Alghamdi1, Malik Abdul Rub1,2, Dileep Kumar3,4, Abdullah M Asiri1,2.
Abstract
The effect of various media (aqueous, NaCl, urea (U) and thiourea (TU)) on the micellization and adsorption activity of varied mixtures of imipramine hydrochloride (IMP) and benzethonium chloride (BZCl) is investigated via tensiometry. In an aqueous medium, the interactions between IMP and BZCl are also evaluated using UV-visible and FTIR spectroscopy. The interaction between components increases with increased mole fraction (α 1) of BZCl in the mixed system (IMP + BZCl). Different parameters, such as micellar and the mixed monolayer component composition, the interaction parameters of the solution and the interface, the activity coefficients of the components in solution and at the interface, and thermodynamic parameters, are computed using different proposed theoretical models (i.e. Clint, Motomura, Rubingh and Rosen). The cmc values obtained for the pure components and mixtures (IMP + BZCl) of all the compositions are found to be less in NaCl than in the aqueous solution while found more in the presence of U or TU. TU is more effective in increasing the cmc of the pure and mixed systems than U. The Gibbs free energy ( Δ G mic ∘ ) values of the studied pure and mixed systems are negative, showing the spontaneous nature of the reaction.Entities:
Keywords: adsorption; antidepressant drug; different spectroscopy; micellar/interfacial mole fraction; micellization
Year: 2021 PMID: 34950495 PMCID: PMC8692973 DOI: 10.1098/rsos.211527
Source DB: PubMed Journal: R Soc Open Sci ISSN: 2054-5703 Impact factor: 2.963
Scheme 1Molecular model of imipramine hydrochloride (IMP).
Scheme 2Structure of benzethonium chloride (BZCl) surfactant.
Source and purity of the compounds used.
| chemical | source | CAS number | purification methods | mass fraction purity |
|---|---|---|---|---|
| IMP | Sigma (USA) | 113-52-0 | vacuum drying | ≥0.98 |
| BZCl | Sigma (USA) | 121-54-0 | vacuum drying | ≥0.98 |
| NaCl | BDH (England) | 7647-14-5 | vacuum drying | 0.98 |
| U | Sigma (Germany) | 57-13-6 | vacuum drying | 0.98 |
| TU | Techno Pharmachem (India) | 62-56-6 | vacuum drying | 0.995 |
Figure 1Plot of surface tension (γ) against concentration (C) of IMP + BZCl mixture in five different mole fractions (α1) of BZCl: (a) water, (b) 50 mmol kg−1 NaCl, (c) 300 mmol kg−1 urea and (d) 300 mmol kg−1 thiourea system at 298.15 K.
Various physico-chemical parameters for IMP + BZCl mixed systems in various media at 298.15 K.a
| ln ( | ||||||||
|---|---|---|---|---|---|---|---|---|
| aqueous solution | ||||||||
| 0 | 41.85 | |||||||
| 0.1 | 10.20 | 18.05 | 0.552 | 0.612 | −2.34 | 0.626 | 0.490 | |
| 0.3 | 6.07 | 8.44 | 0.720 | 0.859 | −1.97 | 0.857 | 0.361 | |
| 0.5 | 3.97 | 5.51 | 0.772 | 0.934 | −2.65 | 0.872 | 0.206 | −2.65 |
| 0.7 | 3.60 | 4.09 | 0.879 | 0.971 | −2.0 | 0.971 | 0.214 | |
| 0.9 | 2.72 | 3.25 | 0.878 | 0.992 | −3.80 | 0.945 | 0.053 | |
| 1 | 2.95 | |||||||
| 50 mmol kg−1 NaCl | ||||||||
| 0 | 37.25 | |||||||
| 0.1 | 4.56 | 15.66 | 0.535 | 0.622 | −5.03 | 0.338 | 0.237 | |
| 0.3 | 2.38 | 7.26 | 0.622 | 0.864 | −5.52 | 0.455 | 0.118 | |
| 0.5 | 1.15 | 4.72 | 0.637 | 0.937 | −7.79 | 0.358 | 0.043 | −2.69 |
| 0.7 | 0.79 | 3.50 | 0.656 | 0.972 | −9.27 | 0.334 | 0.019 | |
| 0.9 | 0.58 | 2.78 | 0.679 | 0.993 | −11.5 | 0.305 | 0.005 | |
| 1 | 2.52 | |||||||
| 300 mmol kg−1 urea | ||||||||
| 0 | 45.20 | |||||||
| 0.1 | 12.05 | 20.13 | 0.549 | 0.599 | −2.10 | 0.653 | 0.532 | |
| 0.3 | 7.20 | 9.54 | 0.728 | 0.852 | −1.69 | 0.883 | 0.408 | |
| 0.5 | 5.15 | 6.26 | 0.815 | 0.931 | −1.79 | 0.940 | 0.304 | −2.60 |
| 0.7 | 4.0 | 4.65 | 0.866 | 0.969 | −2.16 | 0.962 | 0.198 | |
| 0.9 | 2.90 | 3.70 | 0.853 | 0.992 | −4.31 | 0.911 | 0.044 | |
| 1 | 3.36 | |||||||
| 300 mmol kg−1 thiourea | ||||||||
| 0 | 46.0 | |||||||
| 0.1 | 12.5 | 20.70 | 0.547 | 0.595 | −2.06 | 0.656 | 0.540 | |
| 0.3 | 7.52 | 9.86 | 0.730 | 0.850 | −1.63 | 0.888 | 0.421 | |
| 0.5 | 5.35 | 6.47 | 0.816 | 0.929 | −1.74 | 0.943 | 0.315 | −2.58 |
| 0.7 | 4.15 | 4.82 | 0.867 | 0.969 | −2.13 | 0.963 | 0.202 | |
| 0.9 | 3.01 | 3.83 | 0.853 | 0.992 | −4.28 | 0.912 | 0.044 | |
| 1 | 3.48 | |||||||
aStandard uncertainties (u) are u(T) = 0.20 K, u(NaCl) = 1 mmol kg−1, u(urea) = 2 mmol kg−1, u(thiourea) = 2 mmol kg−1 and u(p) = 5 kPa (level of confidence = 0.68). Relative standard uncertainties (u) are u(cmc/cmcid) = ±3%, u(βm) = ±3% and .
Figure 2Variation of cmc and cmcid value of IMP + BZCl mixtures with α1 variation of BZCl (experimental cmc (open symbol) and cmcid (filled symbol) (relative standard uncertainties (u) is u(cmc/cmcid) = ±3%).
Numerous interfacial parameters for IMP + BZCl mixed systems in different solvents at 298.15 K.a
| πcmc (mN m−1) | ln ( | |||||||||
|---|---|---|---|---|---|---|---|---|---|---|
| aqueous solution | ||||||||||
| 0 | 12.8 | 1.30 | 42.6 | 28.4 | 1.95 | |||||
| 0.1 | 0.560 | −3.65 | 0.493 | 0.319 | 19.2 | 0.87/1.13 | 34.1 | 36.9 | 2.76 | |
| 0.3 | 0.658 | −4.36 | 0.599 | 0.152 | 16.2 | 1.03/1.09 | 35.1 | 35.9 | 3.08 | |
| 0.5 | 0.692 | −5.39 | 0.599 | 0.076 | 15.6 | 1.07/1.08 | 35.6 | 35.4 | 3.28 | −2.87 |
| 0.7 | 0.773 | −4.58 | 0.790 | 0.065 | 16.1 | 1.03/1.06 | 36.4 | 34.7 | 3.26 | |
| 0.9 | 0.747 | −8.14 | 0.594 | 0.011 | 14.0 | 1.18/1.07 | 35.7 | 35.4 | 3.51 | |
| 1 | 16.8 | 0.99 | 36.8 | 34.2 | 3.20 | |||||
| 50 mmol kg−1 NaCl | ||||||||||
| 0 | 8.86 | 1.87 | 44.7 | 26.3 | 2.07 | |||||
| 0.1 | 0.654 | −7.25 | 0.420 | 0.045 | 10.8 | 1.54/1.83 | 32.9 | 38.1 | 3.83 | |
| 0.3 | 0.808 | −4.52 | 0.847 | 0.052 | 12.1 | 1.37/1.82 | 33.0 | 38.0 | 3.91 | |
| 0.5 | 0.830 | −5.29 | 0.857 | 0.026 | 13.1 | 1.27/1.82 | 32.9 | 38.1 | 4.12 | −5.07 |
| 0.7 | 0.818 | −6.95 | 0.794 | 0.010 | 13.3 | 1.25/1.82 | 32.9 | 38.1 | 4.30 | |
| 0.9 | 0.812 | −9.33 | 0.718 | 0.002 | 13.0 | 1.28/1.82 | 32.8 | 38.2 | 4.46 | |
| 1 | 9.17 | 1.81 | 32.7 | 38.3 | 4.27 | |||||
| 300 mmol kg−1 urea | ||||||||||
| 0 | 16.5 | 1.0 | 45.3 | 25.7 | 1.64 | |||||
| 0.1 | 0.691 | −3.01 | 0.751 | 0.237 | 18.2 | 0.91/1.20 | 34.2 | 36.8 | 2.73 | |
| 0.3 | 0.743 | −4.61 | 0.738 | 0.078 | 13.7 | 1.21/1.22 | 34.6 | 36.4 | 3.19 | |
| 0.5 | 0.840 | −3.69 | 0.909 | 0.074 | 13.7 | 1.21/1.25 | 35.8 | 35.2 | 3.26 | −4.15 |
| 0.7 | 0.741 | −8.18 | 0.578 | 0.011 | 10.6 | 1.57/1.22 | 35.8 | 35.2 | 3.66 | |
| 0.9 | 0.876 | −5.90 | 0.914 | 0.011 | 13.8 | 1.20/1.26 | 36.0 | 35.0 | 3.50 | |
| 1 | 12.8 | 1.29 | 36.8 | 34.2 | 3.45 | |||||
| 300 mmol kg−1 thiourea | ||||||||||
| 0 | 15.4 | 1.08 | 47.4 | 23.6 | 1.54 | |||||
| 0.1 | 0.693 | −5.04 | 0.622 | 0.089 | 13.6 | 1.22/1.51 | 32.9 | 38.1 | 3.06 | |
| 0.3 | 0.782 | −5.04 | 0.787 | 0.046 | 12.6 | 1.32/1.57 | 32.8 | 38.2 | 3.38 | |
| 0.5 | 0.828 | −5.18 | 0.857 | 0.029 | 11.9 | 1.40/1.60 | 33.5 | 37.5 | 3.54 | −4.96 |
| 0.7 | 0.838 | −6.19 | 0.849 | 0.013 | 12.0 | 1.38/1.60 | 33.3 | 37.7 | 3.69 | |
| 0.9 | 0.817 | −8.94 | 0.741 | 0.003 | 11.5 | 1.45/1.59 | 33.5 | 37.5 | 3.87 | |
| 1 | 9.74 | 1.71 | 32.6 | 38.4 | 3.99 | |||||
aStandard uncertainties (u) are u(T) = 0.20 K, u(NaCl) = 1 mmol kg−1, u(urea) = 2 mmol kg−1, u(thiourea) = 2 mmol kg−1 and u(p) = 5 kPa (level of confidence = 0.68). Relative standard uncertainties (u) are , u(β) = ±3%, , u(Γmax) = ±5%, u(Amin/Aid) = ±5%, u(π) = ±2%, u(pC20) = ±3% and u(γ) = ±2%.
Numerous thermodynamic parameters and packing parameter (P) for IMP + BZCl mixed systems in various solvents at 298.15 K.a
| aqueous system | ||||||
| 0 | −17.8 | −40.1 | 33.3 | 0.34 | ||
| 0.1 | −21.3 | −40.5 | 17.8 | −1.43 | −2.23 | 0.50 |
| 0.3 | −22.6 | −44.8 | 21.7 | −0.98 | −2.44 | 0.42 |
| 0.5 | −23.7 | −46.4 | 22.9 | −1.15 | −2.85 | 0.41 |
| 0.7 | −23.9 | −45.4 | 22.6 | −0.52 | −1.99 | 0.42 |
| 0.9 | −24.6 | −49.8 | 25.4 | −1.01 | −3.81 | 0.37 |
| 1 | −24.4 | −44.7 | 21.9 | 0.45 | ||
| 50 mmol kg−1 NaCl | ||||||
| 0 | −18.1 | −47.8 | 50.4 | 0.24 | ||
| 0.1 | −23.3 | −58.6 | 30.4 | −3.10 | −4.06 | 0.28 |
| 0.3 | −24.9 | −56.3 | 27.2 | −3.21 | −1.74 | 0.32 |
| 0.5 | −26.7 | −55.9 | 25.1 | −4.46 | −1.86 | 0.34 |
| 0.7 | −27.7 | −56.3 | 24.6 | −5.18 | −2.57 | 0.35 |
| 0.9 | −28.4 | −57.8 | 25.3 | −6.23 | −3.54 | 0.34 |
| 1 | −24.8 | −66.6 | 35.7 | 0.24 | ||
| 300 mmol kg−1 urea | ||||||
| 0 | −17.6 | −33.2 | 27.4 | 0.44 | ||
| 0.1 | −20.9 | −41.1 | 18.8 | −1.29 | −1.59 | 0.48 |
| 0.3 | −22.2 | −48.7 | 25.2 | −0.83 | −2.18 | 0.36 |
| 0.5 | −23.0 | −48.6 | 26.1 | −0.67 | −1.23 | 0.36 |
| 0.7 | −23.6 | −56.9 | 33.8 | −0.62 | −3.89 | 0.28 |
| 0.9 | −24.4 | −49.8 | 26.2 | −1.34 | −1.59 | 0.36 |
| 1 | −24.1 | −50.7 | 28.7 | 0.34 | ||
| 300 mmol kg−1 thiourea | ||||||
| 0 | −17.58 | −32.9 | 30.8 | 0.41 | ||
| 0.1 | −20.81 | −48.8 | 24.2 | −1.26 | −2.65 | 0.36 |
| 0.3 | −22.07 | −52.3 | 26.0 | −0.79 | −2.13 | 0.33 |
| 0.5 | −22.91 | −54.5 | 28.3 | −0.65 | −1.83 | 0.31 |
| 0.7 | −23.54 | −54.8 | 27.7 | −0.61 | −2.09 | 0.32 |
| 0.9 | −24.34 | −57.1 | 29.2 | −1.33 | −3.31 | 0.30 |
| 1 | −23.98 | −63.4 | 33.5 | 0.26 | ||
aStandard uncertainties (u) are u(T) = 0.20 K, u(NaCl) = 1 mmol kg−1, u(urea) = 2 mmol kg−1, u(thiourea) = 2 mmol kg−1 and u(p) = 5 kPa (level of confidence = 0.68). Relative standard uncertainties (u) are , , u(Gmin) = ±4%, .
Figure 3FTIR spectra of pure IMP and in existence of BZCl ((a) and (b)), and BZCl spectra in pure form and presence of IMP ((c) and (d)).
Figure 4UV–visible spectra of pure IMP and in occurrence of different concentration of BZCl in different media ((a) water, (b) 50 mmol kg−1 NaCl, (c) 300 mmol kg−1 urea and (d) 300 mmol kg−1 thiourea).
Figure 5The plot of 1/(A–A0) against 1/[BZCl] for the interaction of IMP with BZCl.