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Selective flux of organic liquids and solids using nanoporous membranes of polydicyclopentadiene

机译:聚二环戊二烯纳米多孔膜对有机液体和固体的选择性通量

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摘要

Membranes were fabricated from the ring opening metathesis polymerization of dicyclopentadiene with the Grubbs first generation catalyst, and the permeability of twenty-one molecules through them was studied. Both polar and apolar molecules with molecular weights from 101 to 583 g mol~(-1) permeated these membranes with values for flux of 10~(-5) to 10~(-6) mol cm~(-2) h~(-1) but selected molecules did not permeate them and had flux 10~4 to 10~5 times slower. The difference in flux was large between molecules that permeated and those that did not permeate, but no trend was observed that correlated flux with molecular weight or hydrophobicity. Rather, molecules that did not permeate the membranes had large cross-sectional areas that led to low rates of diffusion within the highly cross-linked polydicyclopentadiene membranes. The degree of cross-linking within the polydicyclopentadiene membranes was measured using infrared spectroscopy and approximately 84% of the dicyclopentadiene monomer had reacted to form cross-links. These are the first organic solvent nanofiltration membranes that separate molecules with molecular weights from 100 to 600 g mol~(-1) based on cross-sectional areas.
机译:由二环戊二烯与Grubbs第一代催化剂的开环复分解聚合反应制得膜,并研究了21个分子对它们的渗透性。分子量从101到583 g mol〜(-1)的极性和非极性分子都透过这些膜,其通量值为10〜(-5)到10〜(-6)mol cm〜(-2)h〜( -1),但选定的分子没有渗透,并且通量慢10〜4至10〜5倍。渗透的分子与未渗透的分子之间的通量差异很大,但是没有观察到将通量与分子量或疏水性相关的趋势。相反,未渗透膜的分子具有较大的横截面积,从而导致在高度交联的聚二环戊二烯膜中的扩散速率较低。使用红外光谱法测量聚二环戊二烯膜内的交联度,并且约84%的二环戊二烯单体反应形成交联。这些是第一类基于横截面积分离分子量为100至600 g mol〜(-1)的分子的有机溶剂纳米过滤膜。

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