IP Library Granted Patent US 11,628,419
Granted Patent B2
US 11,628,419 · App. 16/961,158 · Granted Apr 18, 2023

Functionalized porous organic polymers as uranium nano-traps for efficient uranium extraction

Inventors: Shengqian Ma (Tampa, FL); Qi Sun (Tampa, FL); Briana Aguila (Tampa, FL)
Assignee: UNIVERSITY OF SOUTH FLORIDA
B01J20/267B01J20/2808B01J20/28066B01J20/28071B01J20/28083B01J20/3085C08F112/34G21F9/12C08F2810/00
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Quick Facts
Patent No.
US 11,628,419
App. No.
16/961,158
Granted
Apr 18, 2023
Kind
B2
Abstract

Compositions are provided for efficient uranium extraction, for example from wastewater, seawater, or other water sources. The compositions can include a functionalized porous organic polymer functionalized with one or more uranium binding moieties, e.g. having a plurality of amidoxime or amidrazone groups covalently attached thereto. The compositions can include covalent organic frameworks, porous aromatic frameworks, and various porous organic polymers, especially those having a hierarchical pore size distribution over a range of pore sizes. The compositions can have functional groups such as amidoxime or an amidrazone covalently attached thereto. The hierarchical pore size distribution can be determined based upon at least 60% of the pore sizes in the range of pore sizes having a pore volume of at least 0.01 cm 3 g −1 in the pore size distribution at 77 K. Methods of making the compositions and methods of using the compositions are also provided.

Claims (20)

1. A composition for uranium capture, the composition comprising a porous organic polymer comprising a plurality of amidoxime or amidrazone groups covalently attached thereto;

wherein the composition comprises a covalent organic framework (COF) comprising a plurality of two-dimensional polymers (2d-polymers), each comprising repeat units according to the following formula:

where each occurrence of R 1 is independently a hydrogen, a halide, an alkyl or heteroalkyl having 1 to 3 carbon atoms, a hydrogen-bond donor, an amidoxime, or an amidrazone so long as at least one occurrence of R 1 is an amidoxime or an amidrazone, and where n is an integer from 2 to 12;

wherein each of the 2d-polymers in the plurality of 2d-polymers stacks via non-covalent interactions to form a plurality of pores.

2. The composition according to claim 1 , wherein n is 4 to 6.

3. A method of making the composition of claim 1 , the method comprising:

(i) condensing a plurality of 2,5-diamino-substituted phenyl monomers with a plurality of triformylphloroglucinol monomers to form a plurality of nitrile functionalized two-dimensional polymers (2d-polymers);

wherein the 2,5-diamino-substituted phenyl monomers have a structure according to the following formula:

where each occurrence of R 1 in the 2,5-diamino-substituted phenyl monomer is independently a hydrogen, a halide, an alkyl or heteroalkyl having 1 to 3 carbon atoms, a hydrogen-bond donor, or a nitrile so long as at least one occurrence of R 1 is a nitrile; and

(ii) converting the at least one nitrile into an amidoxime or an amidrazone to form a plurality of two-dimensional polymers (2d-polymers), each comprising repeat units according to the following formula

where each occurrence of R 1 in the 2d-polymer is independently a hydrogen, a halide, an alkyl or heteroalkyl having 1 to 3 carbon atoms, a hydrogen-bond donor, an amidoxime, or an amidrazone so long as at least one occurrence of R 1 is an amidoxime or an amidrazone, and where n is an integer from 2 to 12;

wherein each of the 2d-polymers in the plurality of 2d-polymers self assembles via non-covalent interactions to form a three-dimension structure comprising a plurality of pores.

4. The method according to claim 3 , wherein n is 4 to 6.

5. The method according to claim 3 , wherein each occurrence of R 1 in the 2d-polymer is independently a hydrogen, a hydrogen-bond donor, or an amidoxime;

wherein as at least one occurrence of R 1 is an amidoxime; and

wherein at least one occurrence of R 1 is a hydrogen-bond donor.

6. A method of making the composition of claim 1 , the method comprising:

forming a mixture comprising a precursor monomer and a free radical initiator in an aprotic solvent, wherein the precursor monomer has a structure according to the formula CH 2 ═CHA 1 CH═CH 2 where A 1 is a conjugated core having one or more nitrile moieties covalently attached thereto;

heating the mixture to a first elevated temperature for a first period of time to form the porous organic polymer having nitrile moieties covalently attached thereto;

converting the nitrile moieties into an amidoxime or an amidrazone to form the porous organic polymer having one or more amidoxime or amidrazone moieties covalently attached thereto.

Assignments (2)
CONFIRMATORY LICENSE Recorded Mar 2, 2023
From: UNIVERSITY OF SOUTH FLORIDA
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 062915/0335 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 4, 2020
From: MA, SHENGQIAN; SUN, QI; AGUILA, BRIANA
To: UNIVERSITY OF SOUTH FLORIDA
Reel/Frame 053698/0495 →
Continuity (2)
Provisional Application 62616914 · Jan 12, 2018
Related Publication 20210162371A1 · Jun 3, 2021