Chaitanya V Sai Vikrama, Senapati Sanjib
Department of Biotechnology, Indian Institute of Technology Madras, Chennai 600036, India.
J Am Chem Soc. 2008 Feb 13;130(6):1866-70. doi: 10.1021/ja0739234. Epub 2008 Jan 17.
Molecular dynamics simulations of random quaternary mixtures of protein-water-CO2-fluorosurfactants show the self-assembly of reverse micelles in supercritical carbon dioxide where the protein becomes entrapped inside the aqueous pool. Analyses show that the protein native state remains intact in the water pool. This is because of the bulk nature of the enclosed water that provides a suitable environment for the extracted protein. Results from ab initio calculations imply that the existing fluorosurfactants can be made more effective in stabilizing water-in-CO2 microemulsions by a partial hydrogenation in their tails. A Lewis acid-Lewis base interaction among CO2 and the surfactant tails enhances the stability of the aqueous droplets substantially. The study can help accelerate the search for surfactant process for environmentally benign applications in dense CO2.
蛋白质 - 水 - 二氧化碳 - 氟表面活性剂随机四元混合物的分子动力学模拟表明,在超临界二氧化碳中会自组装形成反胶束,蛋白质被困在水相中。分析表明,蛋白质的天然状态在水池中保持完整。这是因为封闭水的大量性质为提取的蛋白质提供了合适的环境。从头算计算结果表明,现有的氟表面活性剂可以通过其尾部的部分氢化在稳定二氧化碳包水微乳液方面变得更有效。二氧化碳与表面活性剂尾部之间的路易斯酸 - 路易斯碱相互作用显著提高了水滴的稳定性。该研究有助于加速寻找用于致密二氧化碳中环境友好应用的表面活性剂工艺。