IP Library Granted Patent US 9,790,329
Granted Patent B2
US 9,790,329 · App. 14/672,462 · Granted Oct 17, 2017

Photoligation of an amphiphilic polymer with mixed coordination provides compact and reactive quantum dots

Inventors: Hedi Mattoussi (Tallahassee, FL); Wentao Wang (Tallahassee, FL); Goutam Palui (Tallahassee, FL)
Assignee: The Florida State University Research Foundation, Inc.
C08G81/025C08F8/32C09D123/36C09D187/005G01N33/5005G01N33/582C09D135/00
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Quick Facts
Patent No.
US 9,790,329
App. No.
14/672,462
Granted
Oct 17, 2017
Kind
B2
Abstract

The disclosure is directed to multi-coordinating polymers as ligands that combine two distinct metal-chelating groups, lipoic acid and imidazole, for the surface functionalization of QDs. These ligands combine the benefits of thiol and imidazole coordination to reduce issues of thiol oxidation and weak binding affinity of imidazole. The ligand design relies on the introduction of controllable numbers of lipoic acid and histamine anchors, along with hydrophilic moieties and reactive functionalities, onto a poly(isobutylene-alt-maleic anhydride) chain via a one-step nucleophilic addition reaction. We further demonstrate that this design is fully compatible with a novel and mild photoligation strategy to promote the in-situ ligand exchange and phase transfer of hydrophobic QDs to aqueous media under borohydride-free conditions. Ligation with these polymers provides highly fluorescent QDs that exhibit great long-term colloidal stability over a wide range of conditions.

Claims (22)

1. A composition comprising a polymer comprising repeat unit (A′) and repeat unit (B), as represented by the following structures:

2. The composition of claim 1 wherein the polymer further comprises repeat unit (C) 2 as represented by the following structure:

3. The composition of claim 1 wherein the polymer further comprises repeat unit (D), as represented by the following structure:

wherein Y has a value between one and about 100 and each R is independently selected from the group consisting of hydroxy (—OH), methoxy (—OCH 3 ), amino (—NH 2 ), azido (—N 3 ), thiol (—SH), lipoic acid, ethynyl (—C≡CH), carboxyl (—COOH), aldehyde (—C(O)H), maleimide, and biotin.

4. The composition of claim 1 wherein the polymer comprises a coating over a nanoparticle.

5. The composition of claim 4 wherein the nanoparticle comprises a magnetic material.

6. The composition of claim 4 wherein the nanoparticle comprises a material selected from the group consisting of Fe 3 O 4 , Fe 2 O 3 , FePt, Co, Mn-doped Fe 3 O 4 , CdSeS/ZnS, InP/ZnS, PbS, CdTe, CoPt, FeCoPt, CoFe 2 O 4 , MnO, Mn 3 O 4 , Co 3 O 4 , FeO, Ni, TiO 2 , A 1 2 O 3 , CdSe, PbSe, ZrO 2 , ZnO, Au, Ag, and graphene oxide.

7. A composition comprising a polymer comprising repeat unit (A″) and repeat unit (B), as represented by the following structures:

8. The composition of claim 7 wherein the polymer further comprises repeat unit (C), as represented by the following structure:

9. The composition of claim 7 wherein the polymer further comprises repeat unit (D), as represented by the following structure:

wherein Y has a value between one and about 100 and each R is independently selected from the group consisting of hydroxy (—OH), methoxy (—OCH 3 ), amino (—NH 2 ), azido (—N 3 ), thiol (—SH), lipoic acid, ethynyl (—C≡CH), carboxyl (—COOH), aldehyde (—C(O)H), maleimide, and biotin.

10. The composition of claim 7 wherein the polymer comprises a coating over a nanoparticle.

11. The composition of claim 10 wherein the nanoparticle comprises a magnetic material.

12. The composition of claim 10 wherein the nanoparticle comprises a material selected from the group consisting of Fe 3 O 4 , Fe 2 O 3 , FePt, Co, Mn-doped Fe 3 O 4 , CdSeS/ZnS, InP/ZnS, PbS, CdTe, CoPt, FeCoPt, CoFe 2 O 4 , MnO, Mn 3 O 4 , Co 3 O 4 , FeO, Ni, TiO 2 , Al 2 O 3 , CdSe, PbSe, ZrO 2 , ZnO, Au, Ag, and graphene oxide.

13. A composition comprising a polymer comprising repeat unit (A′), repeat unit (A″), and repeat unit (B), as represented by the following structures:

14. The composition of claim 13 wherein the polymer further comprises repeat unit (C), as represented by the following structure:

15. The composition of claim 13 wherein the polymer further comprises repeat unit (D), as represented by the following structure:

wherein Y has a value between one and about 100 and each R is independently selected from the group consisting of hydroxy (—OH), methoxy (—OCH 3 ), amino (—NH 2 ), azido (—N 3 ), thiol (—SH), lipoic acid, ethynyl (—C≡CH), carboxyl (—COOH), aldehyde (—C(O)H), maleimide, and biotin.

16. A method of preparing a polymer comprising repeat unit (A″) and repeat unit (B), as represented by the following structures:

the method comprising contacting poly(isobutylene-alt-maleic anhydride) with N-(2-aminoethyl)-6,8-dimercaptooctanamide and histamine.

17. The method of claim 16 wherein the method comprises contacting poly(isobutylene-alt-maleic anhydride) and the amine-containing reactant with a compound having the structure:

wherein Y has a value between one and about 100 and each R 2 is independently selected from the group consisting of hydroxy (—OH), methoxy (—OCH 3 ), amino (—NH 2 ), azido (—N 3 ), thiol (—SH), lipoic acid, ethynyl (—C≡CH), carboxyl (—COOH), aldehyde (—C(O)H), maleimide, and biotin; wherein the polymer further comprises repeat unit (D):

Assignments (3)
CONFIRMATORY LICENSE Recorded Aug 3, 2017
From: FLORIDA STATE UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 043419/0525 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ATTORNEY DOCKET NUMBER PREVIOUSLY RECORDED AT REEL: 035284 FRAME: 0745. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Apr 2, 2015
From: MATTOUSSI, HEDI; WANG, WENTAO; PALUI, GOUTAM
To: THE FLORIDA STATE UNIVERSITY RESEARCH FOUNDATION
Reel/Frame 035365/0621 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2015
From: MATTOUSSI, HEDI; WANG, WENTAO; PALUI, GOUTAM
To: THE FLORIDA STATE UNIVERSITY RESEARCH FOUNDATION, INC.
Reel/Frame 035284/0745 →
Continuity (2)
Provisional Application 61974122 · Apr 2, 2014
Related Publication 20150284493A1 · Oct 8, 2015