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Ecosustainable Development of Novel Bio-inorganic Hybrid Materials as UV Protection Systems for Potential Cosmetic Applications

机译:新型生物-无机杂化材料作为潜在化妆品应用中的紫外线防护系统的生态可持续发展

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摘要

A new organoclay, bio-inorganic hybrid material, was successfully prepared following the "green chemistry" principles, exploiting microwave irradiation (as an alternative energetic source) in both the solvent-free synthesis of the organic filler (UVB filter) and in its hydrothermal intercalation in a sodium Bentonite clay (renewable natural inorganic source at low temperature). The organic filler is a benzylidene camphor derivative with the same cationic moiety as the well-known UV filter camphor benzalkonium methosulfate. The aim of the research was the ecosustainable development of a new UV protection model, suitable for use in cosmetic and pharmaceutical products, with potential advantages of stability, efficiency and safety compared to the commercially available UVB sunscreens. The organically modified clay was thoroughly investigated using X-ray diffraction (XRD), infrared spectroscopy (IR), thermo gravimetric analysis and differential thermal analysis (DTA). Results confirmed the complete intercalation of the organic filler in the interlayer region of the smectite clay, leading to a new bio-inorganic hybrid material with potential for cosmetic and pharmaceutical applications in the UV protection field, as confirmed by preliminary photochemical studies. This work represents the first example in the use of Na-Bentonite cationic clay (usually employed as rheological additive) as hosting agent of the synthesized quaternary UVB filter, as well as in the complete MW-assisted preparation of the organoclay, starting from the synthesis of the organic UV sunscreen to its hydrothermal intercalation.
机译:遵循“绿色化学”原理成功地制备了一种新型的有机粘土,生物-无机杂化材料,在无溶剂合成有机填料(UVB过滤器)及其水热中利用了微波辐射(作为替代的高能源)。嵌入膨润土钠粘土中(低温时可再生的天然无机源)。有机填料是亚苄基樟脑衍生物,其阳离子部分与众所周知的UV滤光剂樟脑苯甲基硫酸铵。该研究的目的是生态上可持续发展的新型紫外线防护模型,该模型适用于化妆品和药品,与市售的UVB防晒霜相比具有潜在的稳定性,效率和安全性优势。使用X射线衍射(XRD),红外光谱(IR),热重分析和差热分析(​​DTA)对有机改性的粘土进行了彻底研究。结果证实了有机填料在蒙脱石粘土的夹层区域中的完全嵌入,从而导致了一种新的生物-无机杂化材料,该材料具有在紫外线防护领域用于化妆品和药物应用的潜力,这一点已由初步的光化学研究证实。这项工作代表了使用钠膨润土阳离子粘土(通常用作流变添加剂)作为合成的季铵UVB过滤剂的载体剂以及从合成开始的完整的MW辅助制备有机粘土的第一个实例。有机紫外线防晒剂对其热液插层的影响。

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