Amphiphilic tree-like calixarene used as solubilizer or dispersing agent
A dendritic, amphiphilic technology, applied in the field of chemistry, can solve problems such as limitations and achieve the effect of increasing firmness
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Embodiment 1
[0043] Calixarene compound Ia (in general formula I, x=y=z=3, R 1 = R 2 = R 3 =OCH 3 , m=4, n=8) synthesis:
[0044] Compound II a (in general formula II, x=y=z=3, R 1 = R 2 = R 3 =OCH 3 ) (1.0g, 1.6mmol) was dissolved in dichloromethane (15mL), and IIIa (in general formula III, m=4, n=8) (300mg, 0.28mmol) and triethylamine (0.3ml , 2.2mmol), reflux 3h, silica gel column chromatography (eluent CHCl 3 :CH 3 OH 60:1), finally a colorless viscous solid (450 mg) was obtained with a yield of 48.7%. Calixarene compound Ia can be dissolved in common solvents, both can be dissolved in very polar water, in polar alcohols, esters, ketones, nitriles, ethers, halogenated hydrocarbons, aromatic hydrocarbons, DMF, It can be dissolved in polar solvents such as DMSO, and can also be dissolved in non-polar solvents such as n-hexane, petroleum ether and other alkanes.
[0045] Calixarene Ia 1 H-NMR spectrum and 13 C-NMR spectra are shown in figure 1 and figure 2 . Its matrix-as...
Embodiment 2
[0047] The aqueous solution of calixarene compound Ia is using λ ex = When excited by light with a wavelength of 280nm, it will emit fluorescence, and the maximum emission wavelength is λ em = 450 nm (both excitation and emission slit width 5 nm). The fluorescence intensity of the maximum emission peak varies with the concentration as Figure 4 shown, at concentrations less than 1.0 x 10 -5 In the range of M, the fluorescence intensity increases with the increase of concentration; when the concentration is greater than 1.0×10 -5 In the range of M, the fluorescence intensity decreases with the increase of the concentration. Therefore, calixarene compound Ia will form micelles in aqueous solution, and its critical micelle concentration CMC=1.0×10 -5 M, that is, less than this concentration, Ia will not form micelles in aqueous solution, and greater than this concentration, Ia will form micelles in aqueous solution.
[0048] Calixarene compound Ia at 5.0×10 -4 The transmiss...
Embodiment 3
[0050] Solubilization test of naproxen, an anti-inflammatory, analgesic and fever-reducing drug. Dissolve 18 mg Ia in 0.5 mL deionized water to give 1.0 × 10 -2 M aqueous solution. Then 1.1 mg of naproxen was added and stirred at room temperature for 1 h to obtain a clear and transparent aqueous solution. If there is no Ia, the solubility of naproxen in pure 0.5mL deionized water is only 0.02mg, and the addition of Ia increases the solubility of naproxen in water by more than 50 times. The transmission electron micrograph of the Ia aqueous solution after adding naproxen is as Image 6 As shown, the diameter of the smallest nanomicelle is about 10nm, which is nearly double that of the micelle with a diameter of about 6nm without adding naproxen, and the center of the micelle has an obvious cavity with a size of about 4nm. The bundle shells are around 3nm thick, suggesting that these smallest particles are indeed micelles. The shape and size of the above-mentioned micelles a...
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