IP Library Granted Patent US 11,999,836
Granted Patent B2
US 11,999,836 · App. 17/251,694 · Granted Jun 4, 2024

Cellulosic gels, films and composites including the gels, and methods of forming same

Inventors: Ivan I. Smalyukh (Boulder, CO); Andrew Johnston Hess (Louisville, CO); Quingkun Liu (Boulder, CO); Joshua A. De La Cruz (Denver, CO); Blaise Fleury (Boulder, CO); Eldho Abraham (Boulder, CO); Bohdan Senyuk (Boulder, CO); Vladyslav Cherpak (Westminster, CO)
C08J9/28C08J5/18C08K5/544C08K7/02B82Y30/00B82Y40/00C08J2201/026C08J2201/0504C08J2205/026C08J2205/028C08J2301/02C08K2201/011
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Quick Facts
Patent No.
US 11,999,836
App. No.
17/251,694
Granted
Jun 4, 2024
Kind
B2
Abstract

Disclosed are cellulose-based 5 flexible aerogels and xerogels containing bacterial cellulose nanorods, ribbons, fibers, and the like, wherein the gels have tunable optical, heat transfer, and stiffness properties. Further disclosed are highly transparent and flexible cellulose nanofiber-polysiloxane composite aerogels featuring enhanced mechanical robustness, tunable optical anisotropy, and low thermal conductivity.

Claims (15)

1. A process for preparing networked cellulosic aerogels, the process comprising the steps of:

a) contacting a dispersion of bacterial cellulose with an oxidizing system that oxidizes hydroxyl units of cellulose to carboxylate and/or carboxylic acid units to form a solution of oxidized cellulose nanofibers;

b) reacting the oxidized cellulose nanofibers with a surface modifying agent to form a solution of surface modified cellulose nanofibers;

c) contacting the surface modified cellulose nanofibers with a crosslinking agent to form a bacterial cellulose nanofiber matrix;

d) hydrolyzing the matrix in the presence of a catalyst to form networked cellulosic hydrogel;

e) exchanging solvent contained in the hydrogel with a solvent to form an organogel; and

f) removing the solvent to form an aerogel.

2. The process according to claim 1 , wherein the bacterial cellulose is obtained from one or more of Acetobacter hansenii and Acetobacter xylinum.

3. The process according to claim 1 , wherein the surface modified cellulose nanofibers are modified by a compound chosen from a C 1 -C 6 linear or branched, saturated or unsaturated alkylamine, a low molecular weight compound comprising a cationic moiety, oligomers and/or polymers.

4. The process according to claim 1 , wherein surfaces of the nanofibers are modified by a compound comprising allylamine.

5. The process of claim 1 , wherein the crosslinking agent comprises a polysiloxane precursor.

6. The process of claim 5 , wherein the polysiloxane precursor comprises one or more of vinylmethyldimethoxysilane, methyltrimethoxysilane, and methyltriethoxysilane.

7. The process of claim 1 , wherein the surface modifying agent comprises a compound comprising an amine functional group and one or more silicon atoms.

8. The process of claim 1 , wherein the surface modifying agent comprises one or more of a silylamine and aminopropyltrimethoxysilane.

9. The process of claim 1 , wherein the surface modifying agent comprises aminoalkylsilanes.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2025
From: SMALYUKH, IVAN I.; HESS, ANDREW JOHNSTON; LIU, QINGKUN; DE LA CRUZ, JOSHUA A.; FLEURY, BLAISE; ABRAHAM, ELDHO; SENYUK, BOHDAN; CHERPAK, VLADYSLAV
To: THE REGENTS OF THE UNIVERSITY OF COLORADO, A BODY CORPORATE
Reel/Frame 070736/0078 →
CONFIRMATORY LICENSE Recorded Dec 18, 2020
From: UIVERSITY COLORADO
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 054810/0765 →
Continuity (2)
Provisional Application 62684670 · Jun 13, 2018
Related Publication 20210253820A1 · Aug 19, 2021