Chemically resistant fluorinated multiblock polymer structures, methods of manufacturing and use
Multi-block isoporous structures for non-aqueous and/or harsh chemical media having at least one of high separation specificity, chemical resistance, and antifouling properties, methods of manufacturing and use, for replacements or alternatives to existing separation membrane technologies.
1. A multiblock isoporous fluorinated polymer material comprising at least two distinct polymer blocks, wherein a first of said distinct polymer blocks is a fluorinated block having a structure:
wherein the multiblock isoporous fluorinated polymer material contains continuous microporous domains and isoporous mesoporous wall structures; and
wherein the isoporous mesoporous wall structures comprise isoporous mesopores.
2. The material of claim 1 wherein the multiblock fluorinated polymer material is asymmetric.
3. The material of claim 1 , wherein the mesopores have a size of about 1-200 nm.
4. The material of claim 1 wherein the material is formed into a two-dimensional structure.
5. The material of claim 1 wherein the material is formed into a three-dimensional structure.
6. The material of claim 1 wherein the material is made by a process comprising:
a. polymerizing a multiblock polymer comprising 3,4-poly(isoprene) blocks; and
b. fluorination of the 3,4-poly(isoprene) blocks via introduction of a hydroxyl group on a double bond of the 3,4-poly(isoprene) followed by esterification with heptafluorobutanoyl chloride to produce the multiblock fluorinated polymer.
7. The material of claim 6 , wherein the fluorination of the 3, 4-poly (isoprene) blocks is performed before the formation of the isoporous structure.
8. The material of claim 1 wherein the material does not degrade, decompose, or dissolve when exposed to acidic solutions, basic solutions, petrochemical products, organic solvents, or other organic small molecules.
9. The material of claim 1 wherein the material does not degrade, decompose, or dissolve at elevated temperatures relative to room temperature.
10. A process separating or detecting an analyte of interest, the method comprising contacting a medium containing the analyte of interest with the material of claim 1 .