IP Library Granted Patent US 12,104,016
Granted Patent B2
US 12,104,016 · App. 17/391,806 · Granted Oct 1, 2024

Flow reactor synthesis of polymers

Inventors: Patrick John Kinlen (Fenton, MO); Andrew M. Zweig (Ellisville, MO)
Assignee: THE BOEING COMPANY
C08G73/0266B01J19/0093B01J19/2415B01J19/242B01J19/2425B01J19/243C09D179/02B01J2219/00087B01J2219/00164B01J2219/00795B01J2219/00822B01J2219/00831B01J2219/00833B01J2219/00837B01J2219/0086B01J2219/00867B01J2219/00869B01J2219/00873B01J2219/00889B01J2219/00963B01J2219/24
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Quick Facts
Patent No.
US 12,104,016
App. No.
17/391,806
Granted
Oct 1, 2024
Kind
B2
Abstract

A flow reactor system and methods having tubing useful as polymerization chamber. The flow reactor has at least one inlet and at least one mixing chamber, and an outlet. The method includes providing two phases, an aqueous phase and a non-aqueous phase and forming an emulsion for introduction into the flow reactor.

Claims (28)

1. A system for continuous flow, diffusion-limited synthesis of a conductive polymer salt comprising:

a mixing chamber configured to form an emulsified reactant composition;

one or more amounts of tubing disposed to receive the emulsified reactant composition from the mixing chamber, wherein the one or more amounts of tubing are configured to provide diffusion-limiting conditions within the one or more amounts of tubing to polymerize a monomer of the emulsified reactant composition to form the conductive polymer salt in the one or more amounts of tubing; and

a fluid line coupled to each of the one or more amounts of tubing configured to introduce a collection medium into the one or more amounts of tubing.

2. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 1 wherein the one or more amounts of tubing are arranged in a coiled configuration.

3. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 1 wherein the one or more amounts of tubing are arranged in a planar configuration comprising a plurality of curved portions.

4. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 1 wherein the one or more amounts of tubing are coupled in a parallel configuration.

5. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 1 wherein the one or more amounts of tubing are coupled in a series configuration.

6. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 1 further comprising another mixing chamber configured to form the emulsified reactant composition and fluidically coupled to the one or more amounts of tubing.

7. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 1 further comprising a temperature controller configured to control a temperature within the one or more amounts of tubing.

8. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 1 further comprising at least one pressure unit coupled to the one or more amounts of tubing, the at least one pressure unit configured to monitor, during polymerization of the monomer, a pressure within the one or more amounts of tubing or a difference in pressure between an inlet and an outlet of the one or more amounts of tubing.

9. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 1 wherein each of the one or more amounts of tubing further comprise an outlet for discharging the conductive polymer salt and the collection medium.

10. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 1 wherein the emulsified reactant composition comprises an aqueous aniline solution and a non-aqueous acid solution.

11. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 1 wherein the conductive polymer salt is polyaniline (PANI).

12. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 10 further comprising an aqueous aniline solution fluid control device coupled to an inlet of the mixing chamber and a non-aqueous acid solution fluid control device coupled to an inlet of the mixing chamber.

13. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 1 further comprising a flow control valve disposed to control flow of the emulsified reactant composition into each of the one or more amounts of tubing.

14. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 1 wherein the one or more amounts of tubing comprise a fluoropolymer.

15. A system for continuous flow, diffusion-limited synthesis of a conductive polymer salt comprising:

a mixing chamber configured to form an emulsified reactant composition;

one or more amounts of tubing fluidically coupled to the mixing chamber,

wherein each of the one or more amounts of tubing comprise a plurality of inlet ports disposed along a length of the one or more amounts of tubing, the plurality of inlet ports configured to introduce the emulsified reactant composition from the mixing chamber into the one or more amounts of tubing, and

wherein the one or more amounts of tubing are configured to provide diffusion-limiting conditions within the one or more amounts of tubing to polymerize a monomer of the emulsified reactant composition and to form the conductive polymer salt in the one or more amounts of tubing; and

a fluid line coupled to each of the one or more amounts of tubing configured to introduce a collection medium into the one or more amounts of tubing.

16. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 15 further comprising a temperature controller configured to control a temperature within the one or more amounts of tubing.

17. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 15 further comprising at least one pressure unit coupled to the one or more amounts of tubing, the at least one pressure unit configured to monitor, during polymerization of the monomer, a pressure within the one or more amounts of tubing or a difference in pressure between an inlet and an outlet of the one or more amounts of tubing.

18. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 15 wherein each of the one or more amounts of tubing further comprise an outlet for discharging the conductive polymer salt and the collection medium.

19. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 15 wherein the one or more amounts of tubing are arranged in a coiled configuration to form an extended tubular flow reactor.

20. The system for continuous flow, diffusion-limited synthesis of a conductive polymer salt of claim 15 further comprising a flow control value disposed to control flow of the emulsified reactant composition into each of the plurality of inlet ports.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2021
From: KINLEN, PATRICK JOHN; ZWEIG, ANDREW M.
To: THE BOEING COMPANY
Reel/Frame 057057/0050 →
Continuity (6)
Continuation 16742282 · Jan 14, 2020
Continuation 16149867 · Oct 2, 2018
Division 15662503 · Jul 28, 2017
Continuation 15261441 · Sep 9, 2016
Continuation 14882073 · Oct 13, 2015
Related Publication 20210363302A1 · Nov 25, 2021