IP Library Granted Patent US 11,918,951
Granted Patent B2
US 11,918,951 · App. 17/274,388 · Granted Mar 5, 2024

MOF compositions for selective separation of hydrocarbons

Inventors: Jing Li (Piscataway, NJ); Hao Wang (Shenzhen, CN)
Assignee: Rutgers, The State University of New Jersey
B01D53/0423C07F5/003C07F7/003B01D2253/204B01D2256/24B01D2257/7022
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Quick Facts
Patent No.
US 11,918,951
App. No.
17/274,388
Granted
Mar 5, 2024
Kind
B2
Abstract

The present disclosure relates to novel metal-organic frameworks (MOFs) comprising tetratopic ligands with small pore apertures. The present disclosure further relates to methods of utilizing the MOFs of the disclosure to separate hydrocarbons through adsorptive processes.

Claims (36)

1. A metal-organic framework comprising a metal (M) ion and a tetratopic organic ligand selected from the group consisting of:

(a) the metal ion is Y 3+ (M 3+ ), and

the tetratopic organic ligand is

(b) the metal ion is-selected from the group consisting of Y 3+ (M 3+ ), Zr 4+ (M 4+ ), and Hf 4+ (M 4+ ), and the tetratopic organic ligand is

and

(c) the metal ion is selected from the group consisting of Y 3+ (M 3+ ), Zr 4+ (M 4+ ), and Hf 4+ (M 4+ ), and the tetratopic organic ligand is

wherein L is selected from the group consisting of a bond, optionally substituted

C 1 -C 6 alkylene, optionally substituted C 2 -C 6 alkenylene, optionally substituted C 2 -C 6 alkynylene,

O, S, SO 2 , NH and NCH 3 , and

wherein each instance of n is independently 1, 2, or 3.

2. The metal-organic framework of claim 1 , wherein the metal ion is in the form of a (metal ion) 6 cluster.

3. The metal-organic framework of claim 2 , wherein the (metal ion) 6 cluster comprises at least one selected from the group consisting of a μ 3 -OH bridging ligand and a μ 3 -O bridging ligand.

4. The metal-organic framework of claim 2 , wherein the (metal ion) 6 cluster is bound to 12, 8, or 4 tetratopic organic ligands.

5. The metal-organic framework of claim 1 , wherein the framework has a ftw topology.

6. The metal-organic framework of claim 1 , wherein the framework crystallizes in a trigonal crystal system.

7. The metal-organic framework of claim 1 , wherein the framework crystallizes in a R-3c space group.

8. The metal-organic framework of claim 7 , wherein the framework has at least one of:

(a) unit cell dimensions a=18.0682(7) Å, c=45.3244(2) Å; and

(b) a unit volume of about 12814(1)Å 3 .

9. The metal-organic framework of claim 1 , wherein the framework has a unit formula of Y 6 (OH) 8 (abtc) 3 (H 2 O) 6 (DMA) 2 , wherein DMA is dimethylammonium.

10. The metal-organic framework of claim 1 , wherein the framework has at least one of:

(a) a surface area from about 300 m 2 /g to about 500 m 2 /g;

(b) a micropore volume from about 0.10 cm 2 /g to about 0.25 cm 2 /g; and

(c) a pore or window size of about 4 Å to about 7 Å.

11. The metal-organic framework of claim 1 , wherein the framework is thermally stable up to a temperature of about 400° C.

12. The metal-organic framework of claim 1 , wherein the framework has an X-ray powder diffraction spectrum comprising 20 values (in degrees) of about 6.86, 9.63, 9.78, 11.40, 11.71, 11.96, 13.74, and 15.10.

13. The metal-organic framework of claim 1 , wherein the framework is capable of reversibly adsorbing from about 1 mmol/g to about 2 mmol/g of propylene (mmol propylene/g MOF).

14. A method of at least partially separating a first aliphatic hydrocarbon compound from at least one distinct aliphatic hydrocarbon compound,

the method comprising contacting the first aliphatic hydrocarbon compound and the at least one distinct aliphatic hydrocarbon compound with the metal-organic framework of claim 1 ,

whereby the first aliphatic hydrocarbon compound and the at least one distinct aliphatic hydrocarbon compound are at least partially separated from one another.

15. The method of claim 14 , wherein the first aliphatic hydrocarbon compound and the at least one distinct aliphatic hydrocarbon compound are run through a column that is at least partially packed with the metal-organic framework.

16. The method of claim 14 , wherein the first aliphatic hydrocarbon compound is propylene and the at least one distinct aliphatic hydrocarbon compound is propane.

17. The method of claim 16 , wherein the metal-organic framework preferentially adsorbs propylene over propane.

18. The method of claim 14 , wherein the metal-organic framework preferentially adsorbs the first aliphatic hydrocarbon over the at least one distinct hydrocarbon compound.

19. The method of claim 14 , wherein the first aliphatic hydrocarbon compound and the at least one distinct aliphatic hydrocarbon compound are in gaseous form.

20. The metal-organic framework of claim 1 , wherein in (c) L is 1,2-ethylene and the metal ion is Y 3+ (M 3+ ).

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2024
From: LI, JING; WANG, HAO
To: RUTGERS, THE STATE UNIVERSITY OF NEW JERSEY
Reel/Frame 066249/0983 →
CONFIRMATORY LICENSE Recorded Jul 21, 2023
From: RUTGERS, THE STATE UNIV OF N.J.
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 064362/0029 →
Continuity (2)
Provisional Application 62731555 · Sep 14, 2018
Related Publication 20210339186A1 · Nov 4, 2021