Sun Ya-Ping, Meziani Mohammed J, Pathak Pankaj, Qu Liangwei
Department of Chemistry, Howard L. Hunter Chemistry Laboratory, Clemson University, Clemson, South Carolina 29634-0973, USA.
Chemistry. 2005 Feb 18;11(5):1366-73. doi: 10.1002/chem.200400422.
In this concept paper we highlight applications of supercritical fluid technology in particle formation and production, especially some recent advances in the rapid expansion of supercritical solutions (RESS) processing technique. We also highlight the simple but significant modification to the traditional RESS by using a liquid solvent or solution at the receiving end of the supercritical solution expansion, or the rapid expansion of a supercritical solution into a liquid solvent (RESOLV), and applications of the technique to the preparation of nanoparticles. In particular, successes and challenges in the use of RESOLV for nanoscale (<100 nm) polymeric particles and the subsequent protection of the suspended nanoparticles from agglomeration are discussed.
在本概念文件中,我们重点介绍了超临界流体技术在颗粒形成与生产中的应用,特别是超临界溶液快速膨胀(RESS)加工技术的一些最新进展。我们还着重介绍了对传统RESS的一种简单而重要的改进,即在超临界溶液膨胀的接收端使用液体溶剂或溶液,也就是超临界溶液快速膨胀至液体溶剂(RESOLV),以及该技术在纳米颗粒制备中的应用。特别讨论了使用RESOLV制备纳米级(<100 nm)聚合物颗粒以及随后防止悬浮纳米颗粒团聚方面的成功与挑战。