CN112656729A - Oil control isolation composition and preparation method and application thereof - Google Patents

Oil control isolation composition and preparation method and application thereof Download PDF

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CN112656729A
CN112656729A CN202011644106.7A CN202011644106A CN112656729A CN 112656729 A CN112656729 A CN 112656729A CN 202011644106 A CN202011644106 A CN 202011644106A CN 112656729 A CN112656729 A CN 112656729A
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cosmetic
composition
cyclopentadimethylsiloxane
combination
oil control
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陈妍萍
曹臻
张伍
胡长胜
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Platinum Guangzhou Biotechnology Co ltd
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Platinum Guangzhou Biotechnology Co ltd
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Abstract

The invention discloses an oil control and isolation composition, a preparation method and application thereof, wherein the oil control and isolation composition comprises the following components in percentage by mass: 0.5-5% of boron nitride, 0.1-3% of sodium calcium borosilicate, 0.5-3% of a composition of HDI, trihydroxymethyl hexyl lactone cross-linked polymer and silica, 0.01-0.2% of sodium hyaluronate, 0.5-3% of trehalose and 0.1-3% of purslane extract. The components are compounded for use, and the oil control agent has the functions of synergy and oil control and isolation repair. The oil-control isolation composition is added into the cosmetics, so that the skin feeling comfort of the cosmetics can be enhanced, the oil can be effectively controlled, makeup removal can be prevented, wrinkles and flaws are weakened, the skin color is more uniform, the makeup holding capacity is strong, and the moisturizing and blue light resisting effects are good.

Description

Oil control isolation composition and preparation method and application thereof
Technical Field
The invention belongs to the technical field of cosmetics, and relates to an oil control and isolation composition, in particular to an oil control and isolation composition and a preparation method and application thereof.
Background
In recent years, the use amount of isolation products is increasing along with the increasing understanding of people about isolation common knowledge because of the great damage to the skin caused by external environmental factors such as PM2.5, haze, dust, ultraviolet rays and the like. The isolation product is a traditional Chinese medicine skin care product for protecting skin, and is mainly used for protecting skin and relieving irritation of adverse factors to the skin. The barrier cream was originally a low SPF sunscreen containing sunscreen. However, with the development of products, the sun screen has the function of decorating skin color, can be used as sun screen, has the function of foundation and integrates multiple functions. However, the current commercial products have some common problems:
(1) the commercially available isolation cream has single selectivity of skin feel to skin;
(2) the raw material addition effect of the blue light resistant product is general;
(3) the antioxidant effect is not obvious, and the makeup degree is weak.
Disclosure of Invention
In order to overcome the defects in the prior art, the invention provides an oil control and isolation composition, and a preparation method and application thereof. The oil-control isolation composition disclosed by the invention can effectively control oil and prevent makeup removal, is comfortable in skin feel, can weaken wrinkles and flaws, enables skin color to be more uniform, is strong in makeup holding capacity, and is good in moisturizing and blue light resisting effects.
In order to achieve the purpose, the invention adopts the technical scheme that: the oil control and isolation composition comprises the following components in percentage by mass: 0.5-5% of boron nitride, 0.1-3% of sodium calcium borosilicate, 0.5-3% of a composition of HDI, trihydroxymethyl hexyl lactone cross-linked polymer and silica, 0.01-0.2% of sodium hyaluronate, 0.5-3% of trehalose and 0.1-3% of purslane extract.
The boron nitride and the hexagonal boron nitride have light scattering properties, can achieve the effect of brightening the color of the surface of the face, can refract light rays and hide wrinkles, can improve the smoothness of the whole face, has good smoothness, moderate reverie power and beneficial skin adhesion, and can enable cosmetics to stay on the surface of the skin for a long time. Meanwhile, the lubricating property of the facial cleanser helps to compact, transfer and remove various cosmetic products, a compression additive is omitted, and the facial cleanser can absorb excessive facial grease and uniformly disperse pigments. The hexagonal boron nitride nanomaterial can control the size of the synthesized particles, and allows the nanostructure to be regulated and controlled in different formation stages, so as to control the size and the surface area; relevant researchers have shown that boron nitride has a better absorption effect in the infrared region.
Calcium sodium borosilicate, commonly used as an opacifying agent, colorant, is used to increase the sparkling shine of a cosmetic. Has the effects of blurring effect, matte effect, light protection effect and low oil absorption. In skin care products, wrinkles and blemishes can be effectively weakened, and the skin color is more uniform. The sodium calcium borosilicate is used in the formula, and the excellent light reflection characteristic of the calcium borosilicate is utilized to improve the smooth and soft skin feel of the formula, effectively protect blue light, improve the SPF value and have a certain soft-focus effect.
The HDI and trihydroxymethyl hexyl lactone cross-linked polymer is a high molecular component, can prevent solid coagulation and regulate skin feel of powder, and is often used as an anti-caking agent and a slip aid in cosmetics. Silica is a generic name for vein quartz, quartzite and quartz sandstone. Are often used as abrasives and opacifiers, adsorbents, skin feel modifiers. Often found in foundations and isolates, with a slight hiding power, can increase skin smoothness.
Sodium hyaluronate has anti-wrinkle, moisturizing, repairing, preventing, lubricating, film forming and thickening effects. The micromolecular hyaluronic acid can permeate into the dermis, so that the absorption of skin on nutrient substances is promoted, and the effects of beautifying and resisting wrinkles are achieved; sodium hyaluronate can promote skin regeneration of injured part by promoting proliferation and differentiation of epidermal cells and scavenging oxygen free radicals, and has certain preventing effect. The sunscreen skin care product is mixed with an ultraviolet absorbent for use, has a synergistic effect, can simultaneously reduce the transmission of ultraviolet rays and repair skin damage caused by a small amount of transmitted ultraviolet rays, and has a double protection effect.
Trehalose has strong moisturizing effect and physiological effects of sun protection, ultraviolet protection and the like. Can effectively eliminate free radicals, makes the DNA of cells not easy to mutate, and effectively protects the DNA from being damaged by radioactive rays; meanwhile, the trehalose has a stabilizing effect on the antioxidant polyphenol, and can effectively inhibit the oxidative rancidity of products containing fatty acid and esters. Also has excellent water retention and hygroscopicity, and can replace water in cells during severe dehydration. The hyaluronic acid and the trehalose are applied in a combined manner, complement and synergize, have the functions of biological preservation and intelligent moisture preservation, and can keep the freshness of tissues, skins and cosmetics all the time.
The purslane extract is a safe and reliable anti-irritation, anti-allergy and anti-inflammatory active ingredient from natural plants, can reduce irritation and cytotoxicity caused by sodium lauryl sulfate, inhibits an inflammatory factor IL-1, and can be widely applied to various basic formulas and children products for removing acne, resisting allergy, resisting dandruff, resisting mosquito bites and the like. In addition, the purslane extract can also promote the whitening effect of vitamin C glucoside, protect cells against long-wave ultraviolet rays and provide certain recovery for after-sun repair.
The oil-control and makeup-removal-prevention performance of boron nitride is utilized; the concealing power of the composition of the calcium sodium borosilicate, the HDI, the trihydroxymethyl hexyl lactone cross-linked polymer and the silica can weaken wrinkles and flaws and enable the skin color to be more uniform; meanwhile, the ultraviolet or infrared ray resistance and the after-sun repair effect of the purslane extract are achieved by using the composition of boron nitride, sodium calcium borosilicate, HDI, trihydroxymethyl hexyl lactone cross-linked polymer and silica, sodium hyaluronate, trehalose and purslane extract. Therefore, the composition of boron nitride, sodium calcium borosilicate, HDI, trihydroxymethyl hexyl lactone cross-linked polymer and silica, sodium hyaluronate, trehalose and purslane extract are compounded, so that the oil control and isolation repair functions are synergistic.
As a more preferable embodiment of the oil control barrier composition of the present invention, the oil control barrier composition comprises the following components by mass percent: 2% of boron nitride, 1% of sodium calcium borosilicate, 1% of a composition of HDI and trihydroxymethyl hexyl lactone cross-linked polymer and silica, 0.05% of sodium hyaluronate, 2% of trehalose and 1% of purslane extract.
In addition, the invention also provides application of the oil control barrier composition in the field of cosmetics, wherein the cosmetics are barrier milk, barrier cream or foundation.
The invention also claims a cosmetic product comprising the oil control barrier composition.
As a preferred embodiment of the cosmetic of the present invention, the cosmetic further comprises an antioxidant in the following mass percentage: 0.1-1% of tocopherol.
The tocopherol is a combination of tocopherol and soybean oil, is sold as DECANOX MTS-50, is purchased from Olympic companies, has an anti-oxidation effect, enables skin color not to be dark easily, and is low in color difference contrast after makeup.
As a preferred embodiment of the cosmetic of the present invention, the cosmetic further comprises an emollient and a humectant; the softening agent comprises the following components in percentage by mass of the cosmetic: 1-5% polydimethylsiloxane and vinyl polydimethylsiloxane crosspolymer, hydrogenated polyisobutylene, polymethylsiloxane silsesquioxane crosspolymer, and octyl polymethylsiloxane, 0.5-6% polydimethylsiloxane, 0.5-8% cyclopentadimethicone and cyclohexasiloxane, 0.5-5% hydrogenated polydecene, and 0.1-3% polymethylsilsesquioxane; the humectant comprises the following components in percentage by mass of the cosmetic: 1-15% glycerol and 1-15% 1, 3-butanediol.
The dimethicone/vinyl dimethicone crosspolymer, hydrogenated polyisobutylene, methicone silsesquioxane crosspolymer, and octyl methicone composition, which is available from Batai, under the trade name BT-9084, has the effects of moisturizing skin, removing sticky feel, controlling viscosity, and imparting silky feel to the product.
As a preferred embodiment of the cosmetic of the present invention, the cosmetic further comprises a film-forming agent, a coloring agent and an emulsifier; the film forming agent is a composition of cyclopentadimethylsiloxane and trimethylsiloxy silicate accounting for 0.5-10% of the cosmetic quality; the colorant comprises the following components in percentage by mass of the cosmetic: 0.5-4% CI 77891 and 0.1-5% CI 77007; the emulsifier comprises the following components in percentage by mass of the cosmetic: 0.5-3.5% of a combination of cyclopentadimethicone and PEG/PPG-18/18 dimethicone and 0.5-5% of lauryl PEG-9 dimethiconoethyl dimethicone.
The composition of the cyclopentadimethylsiloxane and the trimethylsiloxysilicate can form a layer of hydrophobic breathable film on the surface of skin, and can prevent makeup removal and enhance the isolation effect.
The CI 77007 enables the contrast of the difference between production batches to be low, and the problem of color matching difficulty between the production batches is solved.
The composition of cyclopentadimethylsiloxane and PEG/PPG-18/18 polydimethylsiloxane is sold under the name of DOWSILTM5225C Formulation Aid, available from kaleidoscope corporation, has lubricating, emulsifying, and film-forming properties.
As a preferred embodiment of the cosmetic according to the present invention, the cosmetic further comprises a thickener, a chelating agent, a preservative and a perfume; the thickener comprises the following components in percentage by mass of the cosmetic: 0.8-5% of a combination of cyclopentadimethylsiloxane, propylene carbonate and disteardimonium hectorite and 0.1-1.5% sodium chloride; the chelating agent is EDTA-2Na accounting for 0.01-0.06% of the weight of the cosmetic; the preservative is a composition of phenoxyethanol, methylparaben, ethylparaben and ethylglycerol accounting for 0.1-1% of the cosmetic quality; the essence accounts for 0.01-0.1% of the cosmetic composition by weight.
The cyclopentadimethylsiloxane, the propylene carbonate and the disteardimonium hectorite are compound thickeners, are sold under the trade name of Bentone Gel CPSV by Huatu corporation, have thickening and emulsification stabilizing effects, and can be used as suspension powder to provide smooth skin feel.
The composition of phenoxyethanol, methyl hydroxybenzoate, ethylparaben and ethyl glycerol is a mild compound preservative, does not contain long-carbon-chain paraben, is low in addition amount, and has broad-spectrum sterilization effect on bacteria, yeasts and molds. Has good gas phase protection effect.
As a more preferable embodiment of the cosmetic, the cosmetic comprises the following components in percentage by mass: 2% boron nitride, 1% sodium calcium borosilicate, 1% combination of HDI and trimethylolhexyllactone crosspolymer and silica, 0.05% sodium hyaluronate, 2% trehalose, 1% purslane extract, 0.5% tocopherol, 2% combination of cyclopentadimethylsiloxane and trimethylsiloxysilicate, 3% CI 77891, 2.5% CI 77007, 4% crosspolymer of polydimethylsiloxane and vinyl polydimethylsiloxane, hydrogenated polyisobutene, combination of polymethylsiloxane silsesquioxane crosspolymer and octyl methicone, 5% polydimethylsiloxane, 7% combination of cyclopentadimethylsiloxane and cyclohexasiloxane, 4% hydrogenated polydecene, 0.5% polymethylsilsesquioxane, 4% glycerol, 6% 1,3 butylene glycol, 3% cyclopentadimethylsiloxane and PEG/PPG-18/18 polydimethylsiloxane, 2% lauryl PEG-9 polydimethylsiloxyethyl dimethicone, 3% cyclopentadimethylsiloxane, a combination of propylene carbonate and disteardimonium hectorite, 1% sodium chloride, 0.03% EDTA-2Na, 0.4% preservative, 0.05% fragrance and 44.97% water.
In addition, the present invention provides a method for preparing the cosmetic, comprising the steps of:
(1) pre-dispersing the A-phase material uniformly, homogenizing for 2-3min to completely disperse the A-phase material without particles, and heating to 80-85 deg.C;
(2) pre-dispersing the B-phase materials according to the dissolving and dispersing sequence, and then heating to 80-85 ℃ to ensure that the B-phase materials are completely dispersed and have no particle state for later use;
(3) mixing the solutions obtained in the steps (1) and (2) for emulsification, controlling the emulsification speed and the rotation speed, homogenizing for 2-3min, cooling to 45 ℃ after taking out of the pot, adding a preservative and essence, and sealing and storing to obtain the cosmetic;
wherein the phase A material comprises: HDI and trimethylolhexylactone crosspolymer and silica, purslane extract, cyclopentadimethylsiloxane and trimethylsiloxysilicate, CI 77891, CI 77007, dimethicone and vinyl dimethicone crosspolymer, hydrogenated polyisobutene, methicone silsesquioxane crosspolymer and octyl methicone, dimethicone, a combination of cyclopentadimethylsiloxane and cyclohexasiloxane, hydrogenated polydecene, polymethylsilsesquioxane, glycerin, 1, 3-butanediol, a combination of cyclopentadimethylsiloxane and PEG/PPG-18/18 polydimethylsiloxane, a combination of lauryl PEG-9 dimethiconoethyl polydimethylsiloxane and cyclopentadimethylsiloxane, propylene carbonate and disteardimonium hectorite;
the phase B material comprises: boron nitride, sodium calcium borosilicate, sodium hyaluronate, trehalose, sodium chloride and EDTA-2 Na.
Compared with the prior art, the invention has the beneficial effects that:
(1) according to the invention, the composition of the crosslinked polymer of boron nitride, calcium sodium borosilicate, HDI and trihydroxymethyl hexyl lactone and silica, sodium hyaluronate, trehalose and a purslane extract are compounded, so that the composition has the functions of synergistic oil control, makeup prevention, isolation and repair, uniform skin color, strong makeup holding capacity and good moisturizing and blue light resistance.
(2) The tocopherol is added in the formula of the cosmetic, so that the antioxidant effect can be achieved, the skin color is not easy to dull, and the color difference contrast ratio after makeup before makeup is low.
(3) The CI 77007 ultramarine toner added in the cosmetic formula disclosed by the invention has the advantages that the difference contrast between batches is low, and the problem of difficult color matching between batches is solved for production.
Detailed Description
To better illustrate the objects, aspects and advantages of the present invention, the present invention will be further described with reference to specific examples.
Examples 1 to 4
Examples of cosmetic products of the oil control barrier composition of the present invention, the components of which are shown in table 1.
Table 1 examples 1 to 4 the mass% of each component in the cosmetic composition (%)
Figure BDA0002875971660000071
Figure BDA0002875971660000081
The preparation method of the cosmetic comprises the following steps:
(1) pre-dispersing the A-phase material uniformly, homogenizing for 3min to completely disperse the A-phase material without particles, and heating to 8 deg.C;
(2) pre-dispersing the B-phase material according to the dissolving and dispersing sequence, and then heating to 80 ℃ to ensure that the B-phase material is completely dispersed without particles for later use;
(3) mixing the solutions obtained in the step (1) and the step (2) for emulsification, controlling the emulsification speed and the rotation speed, homogenizing for 3min, cooling to 45 ℃ after taking out of a pot, adding a preservative and essence, and sealing and storing to obtain the cosmetic;
wherein the phase A material comprises: HDI and trimethylolhexylactone crosspolymer and silica, purslane extract, cyclopentadimethylsiloxane and trimethylsiloxysilicate, CI 77891, CI 77007, dimethicone and vinyl dimethicone crosspolymer, hydrogenated polyisobutene, methicone silsesquioxane crosspolymer and octyl methicone, dimethicone, a combination of cyclopentadimethylsiloxane and cyclohexasiloxane, hydrogenated polydecene, polymethylsilsesquioxane, glycerin, 1, 3-butanediol, a combination of cyclopentadimethylsiloxane and PEG/PPG-18/18 polydimethylsiloxane, a combination of lauryl PEG-9 dimethiconoethyl polydimethylsiloxane and cyclopentadimethylsiloxane, propylene carbonate and disteardimonium hectorite;
the phase B material comprises: boron nitride, sodium calcium borosilicate, sodium hyaluronate, trehalose, sodium chloride and EDTA-2 Na.
Comparative example 1
A comparative example of a cosmetic oil control barrier composition according to the present invention, which is the same as example 1 except for the following differences: this comparative example did not contain a combination of boron nitride, HDI and trimethylol hexyl lactone crosspolymer and silica.
Comparative example 2
A comparative example of a cosmetic oil control barrier composition according to the present invention, which is the same as example 1 except for the following differences: the comparative example did not contain sodium calcium borosilicate, sodium hyaluronate, trehalose, purslane extract.
Comparative example 3
A comparative example of a cosmetic oil control barrier composition according to the present invention, which is the same as example 1 except for the following differences: this comparative example contained no trehalose.
Comparative example 4
A comparative example of a cosmetic oil control barrier composition according to the present invention, which is the same as example 1 except for the following differences: the comparative example did not contain purslane extract.
Test example 1
Stability testing of cosmetic products of oil control barrier compositions as described in Table 2
Figure BDA0002875971660000091
Figure BDA0002875971660000101
The cosmetics of the oil control isolation composition have good performances in the aspects of viscosity, centrifugal separation, heat resistance and cold resistance stability.
Test example 2
Test products: cosmetics described in examples 1 to 4 and comparative examples 1 to 4
The test population: 160 female volunteers, whose skin was healthy, had no history of skin allergy, met the volunteer enrollment criteria, and were divided into 8 groups of 20 persons each, with an average age of 33 ± 2 years.
The test method comprises the following steps: the use effect was observed and felt by using the cosmetics of the oil control barrier compositions of examples 1 to 4 and comparative examples 1 to 4, respectively. The using method comprises the following steps: the test subjects cleaned their face, after basic skin care, 1.5g of the test article was applied to their palms, smeared on their faces, and used once every morning for two months with constant check at least once a week to see if there were systemic and local adverse reactions, and the results were recorded in detail.
The test evaluation results are shown in Table 3.
TABLE 3 TABLES A COMPLEX OF THE TABLES OF THE USE (TWO-MORE) FEEDBACK FOR THE COSMETIC AGENTS OF EXAMPLES 1 TO 4 AND COMPARATIVE EXAMPLES 1 TO 4
Figure BDA0002875971660000102
Figure BDA0002875971660000111
From the results in Table 3, it can be seen that the cosmetics of the oil control barrier compositions prepared in examples 1 to 4 all had good moisturizing, water-locking, refreshing, oil-controlling, and concealer effects. Lack of part of the components, and have reduced oil control, concealer and moisture retention effects. The composition of boron nitride, calcium sodium borosilicate, HDI, trihydroxymethyl hexyl lactone cross-linked polymer and silica, sodium hyaluronate, trehalose and purslane extract are compounded for use, so that the synergistic oil control, concealer and moisturizing functions are realized.
Finally, it should be noted that the above embodiments are only used for illustrating the technical solutions of the present invention and not for limiting the protection scope of the present invention, and although the present invention is described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications or equivalent substitutions can be made on the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention.

Claims (10)

1. The oil control and isolation composition is characterized by comprising the following components in percentage by mass: 0.5-5% of boron nitride, 0.1-3% of sodium calcium borosilicate, 0.5-3% of a composition of HDI, trihydroxymethyl hexyl lactone cross-linked polymer and silica, 0.01-0.2% of sodium hyaluronate, 0.5-3% of trehalose and 0.1-3% of purslane extract.
2. The oil control and isolation composition of claim 1, wherein the oil control and isolation composition comprises the following components in percentage by mass: 2% of boron nitride, 1% of sodium calcium borosilicate, 1% of a composition of HDI and trihydroxymethyl hexyl lactone cross-linked polymer and silica, 0.05% of sodium hyaluronate, 2% of trehalose and 1% of purslane extract.
3. Use of the oil control barrier composition according to claim 1 or 2 in the cosmetic field, wherein the cosmetic is a barrier cream, a make-up base or a foundation.
4. A cosmetic comprising the oil control barrier composition of claim 1 or 2.
5. The cosmetic of claim 4, further comprising an antioxidant in the following weight percent: 0.1-1% of tocopherol.
6. The cosmetic of claim 4, further comprising an emollient and a humectant; the softening agent comprises the following components in percentage by mass of the cosmetic: 1-5% polydimethylsiloxane and vinyl polydimethylsiloxane crosspolymer, hydrogenated polyisobutylene, polymethylsiloxane silsesquioxane crosspolymer, and octyl polymethylsiloxane, 0.5-6% polydimethylsiloxane, 0.5-8% cyclopentadimethicone and cyclohexasiloxane, 0.5-5% hydrogenated polydecene, and 0.1-3% polymethylsilsesquioxane; the humectant comprises the following components in percentage by mass of the cosmetic: 1-15% glycerol and 1-15% 1, 3-butanediol.
7. The cosmetic of claim 4, wherein said cosmetic further comprises film formers, colorants, and emulsifiers; the film forming agent is a composition of cyclopentadimethylsiloxane and trimethylsiloxy silicate accounting for 0.5-10% of the cosmetic quality; the colorant comprises the following components in percentage by mass of the cosmetic: 0.5-4% CI 77891 and 0.1-5% CI 77007; the emulsifier comprises the following components in percentage by mass of the cosmetic: 0.5-3.5% of a combination of cyclopentadimethicone and PEG/PPG-18/18 dimethicone, 0.5-5% of lauryl PEG-9 dimethicone ethyl dimethicone.
8. The cosmetic of claim 4, further comprising a thickener, a chelating agent, a preservative and a fragrance; the thickener comprises the following components in percentage by mass of the cosmetic: 0.8-5% of a combination of cyclopentadimethylsiloxane, propylene carbonate and disteardimonium hectorite and 0.1-1.5% sodium chloride; the chelating agent is EDTA-2Na accounting for 0.01-0.06% of the weight of the cosmetic; the preservative is a composition of phenoxyethanol, methylparaben, ethylparaben and ethylglycerol accounting for 0.1-1% of the cosmetic quality; the essence accounts for 0.01-0.1% of the cosmetic composition by weight.
9. The cosmetic composition according to claim 4, wherein the cosmetic comprises the following components in percentage by mass: 2% boron nitride, 1% sodium calcium borosilicate, 1% combination of HDI and trimethylolhexyllactone crosspolymer and silica, 0.05% sodium hyaluronate, 2% trehalose, 1% purslane extract, 0.5% tocopherol, 2% combination of cyclopentadimethylsiloxane and trimethylsiloxysilicate, 3% CI 77891, 2.5% CI 77007, 4% combination of polydimethylsiloxane and vinyl polydimethylsiloxane crosspolymer, hydrogenated polyisobutene, polymethylsiloxane silsesquioxane crosspolymer and octyl methicone, 5% dimethicone, 7% combination of cyclopentadimethylsiloxane and cyclohexasiloxane, 4% hydrogenated polydecene, 0.5% polymethylsilsesquioxane, 4% glycerol, 6% 1,3 butylene glycol, 3% cyclopentadimethylsiloxane and PEG/PPG-18/18 dimethicone, 2% lauryl PEG-9 polydimethylsiloxyethyl dimethicone, 3% cyclopentadimethylsiloxane, a combination of propylene carbonate and disteardimonium hectorite, 1% sodium chloride, 0.03% EDTA-2Na, 0.4% preservative, 0.05% fragrance and 44.97% water.
10. The method for preparing a cosmetic according to claim 9, comprising the steps of:
(1) pre-dispersing the A-phase material uniformly, homogenizing for 2-3min to completely disperse the A-phase material without particles, and heating to 80-85 deg.C;
(2) pre-dispersing the B-phase materials according to the dissolving and dispersing sequence, and then heating to 80-85 ℃ to ensure that the B-phase materials are completely dispersed and have no particle state for later use;
(3) uniformly mixing the solution in the step (1) and the solution in the step (2), emulsifying, controlling the emulsifying speed and the rotating speed, homogenizing for 2-3min, cooling to 45 ℃ after taking out of a pot, adding a preservative and essence, and sealing and storing to obtain the cosmetic;
wherein the phase A material comprises: HDI and trimethylolhexylactone crosspolymer and silica, purslane extract, cyclopentadimethylsiloxane and trimethylsiloxysilicate, CI 77891, CI 77007, dimethicone and vinyl dimethicone crosspolymer, hydrogenated polyisobutene, methicone silsesquioxane crosspolymer and octyl methicone, dimethicone, a combination of cyclopentadimethylsiloxane and cyclohexasiloxane, hydrogenated polydecene, polymethylsilsesquioxane, glycerin, 1, 3-butanediol, a combination of cyclopentadimethylsiloxane and PEG/PPG-18/18 polydimethylsiloxane, a combination of lauryl PEG-9 dimethiconoethyl polydimethylsiloxane and cyclopentadimethylsiloxane, propylene carbonate and disteardimonium hectorite;
the phase B material comprises: boron nitride, sodium calcium borosilicate, sodium hyaluronate, trehalose, sodium chloride and EDTA-2 Na.
CN202011644106.7A 2020-12-30 2020-12-30 Oil control isolation composition and preparation method and application thereof Pending CN112656729A (en)

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Application publication date: 20210416