CN112545935A - 一种纳米包裹表面活性剂组合物及其制备方法 - Google Patents

一种纳米包裹表面活性剂组合物及其制备方法 Download PDF

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CN112545935A
CN112545935A CN202011454813.XA CN202011454813A CN112545935A CN 112545935 A CN112545935 A CN 112545935A CN 202011454813 A CN202011454813 A CN 202011454813A CN 112545935 A CN112545935 A CN 112545935A
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张申俊
衡英
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Abstract

本发明公开了一种纳米包裹表面活性剂组合物及其制备方法,属于化妆品领域。其组分乳木果油脂质体、PEG‑6辛酸/癸酸甘油酯类、聚甘油‑10月桂酸酯、辣木籽保湿混合物、甘油。其制备方法包括多次搅拌和溶解混合。本发明制备的纳米包裹表面活性剂组合物特别适用于卸妆产品领域,具有快速卸妆、温和无刺激、提亮肤色的效果。

Description

一种纳米包裹表面活性剂组合物及其制备方法
技术领域
本发明涉及表面活性剂技术领域,具体涉及一种纳米包裹表面活性剂组合物及其制备方法。
背景技术
卸妆产品是化妆品市场的一个重要组成部分。眼影、睫毛膏、腮红、唇膏和蜜粉等彩妆产品的去除是许多女性的日常问题。该问题已经通过包括溶剂作用或乳化作用而起卸妆效果的产品而得到解决,例如可获得O/W乳膏、凝胶、油或水剂型的产品形式。
卸妆产品本质上是一种以表面活性剂为主要成分的混合物;由于人体皮肤表面会有一层皮脂膜,当卸妆产品的清洁力度过大时,虽然能够有效的除去彩妆产品,但同时会对皮脂膜造成损伤,长时间则会到时皮肤严重受损、敏感肌等问题;当卸妆产品清洁力度不足时,虽然不会损伤肌肤,但无法较好的去除彩妆产品。
发明内容
本发明提供一种纳米包裹表面活性剂组合物及其制备方法,特别适用于卸妆类产品。
本发明第一个目的,通过以下技术方案予以实现:
一种纳米包裹表面活性剂组合物,以质量份计算包括组分:
Figure BDA0002828306390000021
优选地,所述辣木籽保湿混合物中以质量份计算包括组分:
辛酸/癸酸甘油三酯 94-98
辣木籽油 1-5
黑种草籽提取物 1。
优选地,所述乳木果油脂质体为乳木果油通过脂质体包裹而成。
本发明第二个目的,通过以下技术方案予以实现:
一种纳米包裹表面活性剂组合物的制备方法,其特征在于,包步骤:
(1)将乳木果油脂质体和辣木籽保湿混合物混合并溶解搅拌均匀;
(2)依次加入甘油、PEG-6辛酸/癸酸甘油酯类和聚甘油-10月桂酸酯搅拌均匀。
乳木果油脂质体是由牛油果树果脂、卵磷脂、辛酸/癸酸甘油三酯、胆甾醇、甘油和水组成的具有特征气味的乳白色至淡黄色粘稠液体;能够有效防止肌肤因干燥开裂、恢复和保持肌肤自然弹性;同时还保持水润、清爽的肤感。
本发明制备的纳米包裹表面活性剂组合物特别适用于卸妆产品领域,具有快速卸妆、温和无刺激、提亮肤色的效果。
附图说明
图1为本发明纳米包裹表面活性剂组合物的粒径表征;
图2为本发明实施例1中的温和卸妆水A的粒径表征。
具体实施方式
下面具体实施例对本发明作进一步说明,以使本领域技术人员可以更好的理解本发明并能予以实施,但所举实施例不作为对本发明的限定。按照本领域的普通技术知识和惯用手段,在不脱离本发明上述基本技术思想前提下,对本发明上述结构做出的其它多种形式的修改、替换或变更,均应落在本发明的保护范围。
本发明所用的辣木籽油为植物Moringa Oleifera的提取物;所用的黑种草籽提取物为植物Nigella sativa的提取物;所用乳木果油为植株Vitellaria paradoxaC.F.Gaertn的提取物;所用牛油果树果脂为植物Butyrospermum parkii的提取物;所用香叶天竺葵油为植物Pelargonium graveolens的提取物。
预先制备
纳米包裹表面活性剂组合物和辣木籽保湿混合物的具体组分如下表1中所示。
表1
Figure BDA0002828306390000031
Figure BDA0002828306390000041
制备方法为:
1.将乳木果油脂质体加入反应锅里面,以25rpm搅拌下,加入辣木籽保湿混合物,搅拌5-8分钟,然后以2500rpm均质1-2分钟,确保成均一乳液;
2.加入甘油,以30rpm搅拌15-18分钟,确保均一乳液;
3.依次加入PEG-6辛酸/癸酸甘油酯类和聚甘油-10月桂酸酯,以15rpm搅拌15分钟,确保半透均一乳液。
实施例1卸妆水
按下表2配制温和卸妆水A和普通卸妆水B对照测试:
表2
Figure BDA0002828306390000042
其制备方法为:
1、C相室温(25℃)预溶解均匀透明,D相室温(25℃)预混合均匀透明,备用;
2、A相依次加入水剂锅,以20rpm搅拌升温至80℃,保温搅拌15分钟,降温;
3、降温至40℃依次加入B和C相,以20rpm搅拌10分钟;
4、降温至38℃依次加入D相,以20rpm搅拌5分钟,确保均匀透明;
5、过500目滤网过滤出料,灌装、包装。
实施例2卸妆乳
按下表3配制温和卸妆乳C和普通卸妆乳D对照测试:
表3
Figure BDA0002828306390000051
Figure BDA0002828306390000061
其制备方法为:
1.A、B相分别称料,A相置于油相锅,B相置于水相锅,分别以20rpm加热至75±3℃,保温搅拌5-8分钟;
2.将A相加入B相,以25rpm搅拌5分钟后加入C相,以2500rpm均质3-5分钟,然后冷却降温;当温度降至45℃时,加入D相中各组分,以20rpm搅拌5分钟,确保均匀;
3.对标准版(白色流动乳液,稠度12000-15000mpa.s),合格后200目过滤出料,灌装、包装。
实施例3温和卸妆啫喱
按下表4配制温和卸妆啫喱E和普通卸妆啫喱F对照测试。
表4
Figure BDA0002828306390000062
1.D相室温(25℃)预混合均匀透明,待用;
2.A相依次加入水剂锅,以25rpm搅拌升温至80℃,保温搅拌15分钟;
3.降温至45℃依次加入B相和C相,以25rpm搅拌8-10分钟,确保均匀;
4.降温至38℃加入D相,以20rpm搅拌8-10分钟,确保均匀透明;
5.对标准版(无色透明啫喱,稠度35000-50000mpa.s),合格后200目过滤出料,灌装、包装。
实施例1-3的部分原料来源和型号如表5所示:
表5
Figure BDA0002828306390000071
Figure BDA0002828306390000081
品质实验
对实施例1-3所得的产品按照常规卸妆流程,左右脸等量对照测试,对卸妆力度、刺激性、提亮肤色(按GB/T 35914-2018卸妆油(液、乳、膏、霜)测试)进行如下测试:
以30名女性志愿者为研究测试对象,年龄在20-50岁,选用等量的粉底液(W/O)、眼影、眼线、不沾杯口红进行全脸化妆,然后使用等量的施例1-3所得的产品,分3组,进行左右脸对照卸妆测试。
第一组,随机抽取10人,按试用者1-10编码,对照测试卸妆水,温和卸妆水A用于左脸,普通卸妆水B用于右脸,测试结果如下表6所示:
表6卸妆水对照测试结果表
Figure BDA0002828306390000082
Figure BDA0002828306390000091
第二组,后面的试用者随机抽取10人,按试用者11-20编码,对照测试卸妆乳,温和卸妆乳C用于左脸,普通卸妆乳D用于右脸,测试结果如下表7所示:
表7卸妆乳对照测试结果表
Figure BDA0002828306390000092
Figure BDA0002828306390000101
第三组,剩下的10人,按试用者21-30编码,对照测试卸妆啫喱,温和卸妆啫喱E用于左脸,普通卸妆啫喱F用于右脸,测试结果如下表8:
表8卸妆啫喱对照测试结果表
Figure BDA0002828306390000102
Figure BDA0002828306390000111
试用结论:
采用本发明制作的温和卸妆水A、温和卸妆乳C和温和卸妆啫喱E卸妆能力、温和性、皮肤提亮度都明显优于普通卸妆水B、普通卸妆乳D、普通卸妆啫喱F。
本发明制作的卸妆产品,卸妆时间短,卸妆彻底,无刺激,同时能适当提亮肤色。
粒径检测
采用激光衍射-散射式粒度分布测定法对该纳米包裹表面活性剂组合物(图1所示)和实施例1中温和卸妆水A(图2所示)进行粒径表征,粒径在50-200nm之间,大部分分布于100nm左右;加在卸妆水配方里面,粒径大小也未发生明显变化,证明能稳定存在于卸妆水配方体系。

Claims (4)

1.一种纳米包裹表面活性剂组合物,其特征在于,以质量份计算包括组分:
Figure FDA0002828306380000011
2.根据权利要求1所述的纳米包裹表面活性剂组合物,其特征在于,所述辣木籽保湿混合物中以质量份计算包括组分:
辛酸/癸酸甘油三酯 94-98
辣木籽油 1-5
黑种草籽提取物 1。
3.根据权利要求1所述的纳米包裹表面活性剂组合物,其特征在于,所述乳木果油脂质体为乳木果油通过脂质体包裹而成。
4.权利要求1-3任一所述的纳米包裹表面活性剂组合物的制备方法,其特征在于,包括以下步骤:
(1)将乳木果油脂质体和辣木籽保湿混合物混合并溶解搅拌均匀;
(2)依次加入甘油、PEG-6辛酸/癸酸甘油酯类和聚甘油-10月桂酸酯搅拌均匀。
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CN105596237A (zh) * 2016-01-20 2016-05-25 广州丹奇日用化工厂有限公司 一种皮脂膜修复型卸妆膏及其制备方法
CN110037945A (zh) * 2019-04-24 2019-07-23 广州环亚化妆品科技有限公司 一种胶束组合物及其制备方法和应用

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三哈网: "适合敏感肌的卸妆水,我选茉莉之源", 《三哈网》 *
再生医学美容护肤品牌: "卸妆水、卸妆油、卸妆膏到底哪个更好用", 《搜狐网》 *
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Application publication date: 20210326