Rundel Jack T, Paul Brian K, Remcho Vincent T
Department of Chemistry, Oregon State University, Corvallis, OR 97331, USA.
J Chromatogr A. 2007 Aug 31;1162(2):167-74. doi: 10.1016/j.chroma.2007.06.042. Epub 2007 Jun 27.
A nanofiltration method has been developed in a microfluidic format for the continuous-flow pressure-driven purification of half-generation poly(amidoamine) (PAMAM) dendrimers, a family of macromolecules characterized by highly branching structures radiating from a central core, without additional solvents or buffers. An organic solvent resistant nanofiltration membrane, STARMEM 122, has been fully integrated into a hard polymer microfluidic module by transmission laser welding. The membrane was initially characterized in a bench-top test fixture to determine the solvent permeance and percent rejection of a surrogate molecule, Rhodamine B, at lower than typical operating pressures (P<7 bar). The microfluidic module then underwent similar testing at 1.4 bar with the surrogate and with the generation-0.5 PAMAM dendrimer. This approach to nanofiltration will readily interface to upstream microreactors.
已开发出一种微流控形式的纳滤方法,用于以连续流动、压力驱动的方式纯化半代聚(酰胺胺)(PAMAM)树枝状大分子,这是一类大分子,其特征是从中心核向外辐射的高度分支结构,无需额外的溶剂或缓冲剂。一种耐有机溶剂的纳滤膜STARMEM 122已通过透射激光焊接完全集成到硬聚合物微流控模块中。该膜最初在台式测试装置中进行表征,以确定在低于典型操作压力(P<7巴)时替代分子罗丹明B的溶剂渗透率和截留率。然后,微流控模块在1.4巴下用替代物和0.5代PAMAM树枝状大分子进行了类似测试。这种纳滤方法将很容易与上游微反应器连接。