Compositions and methods for the modification of imine covalent organic frameworks (COFs)
View Patent ↗The present invention provides for a method for modifying a covalent organic framework (COF), the method comprising: contacting a COF comprising an imine group with a phenylacetylene in, or to form, a mixture, in a suitable reaction condition for converting the imine group into a quinoline group, and COF comprising a quinoline group. The present invention also provides for a superhydrophobic surface comprising a solid surface coated with or comprising the covalent organic framework (COF).
1. A covalent organic framework (COF) comprising a quinoline group having the chemical structure:
wherein each R is independently —H, —COOR1, —CHO, —X, —CN, - or R1, wherein each R1 is independently a straight or branched substituted or unsubstituted alkyl chain, and X is a halogen.
2. The COF of claim 1 , wherein the COF does not comprise any imine group.
3. The COF of claim 1 , wherein the quinolone group has the chemical structure:
4. A superhydrophobic material comprising: an exposed surface comprising the covalent organic framework (COF) of claim 1 ; wherein the exposed surface has a water contact angle of equal to or more than about 90°.
5. The superhydrophobic material of claim 4 , wherein the superhydrophobic material is freestanding, or the superhydrophobic material is a surface coating on a substrate.
6. The superhydrophobic material of claim 5 , wherein the substrate is selected from the group consisting of glass, metal, plastic, paper, wood, concrete and masonry.
7. The superhydrophobic material of claim 5 , wherein the substrate is selected from the group consisting of a windshield, a glass plate, a metal plate, a metal object and a glove.
8. The superhydrophobic material of claim 4 , wherein the superhydrophobic material has a water contact angle of equal to or more than about 120°.
9. The superhydrophobic material of claim 8 , wherein the superhydrophobic material has a water contact angle from about 125° to about 155°.