IP Library Patent Application 18908865
Patent Application
App. No. 18/908,865

QUASI-PERMANENT CHARGE-BEARING NANOFIBER AND METHOD OF FORMING THEREOF

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Patent No.
US None
App. No.
18/908,865
Abstract

Provided herein is a novel formulation of a quasi-permanent charge-bearing nanofiber, and a one-step fabrication method of the nanofiber thereof. The novel formulation allows flexibility in adjusting the type of charges and crystallinity of the nanofiber product as desired, and the one-step fabrication method allows easy and cost-effective production of these nanofibers without the use of external physical charging. The charge-bearing nanofibers of the present invention also show remarkable stability under different temperature and chemical conditions, and a significant charge retention over a time period of 12 months.

Claims (16)

1 . A method of forming quasi-permanent charge-bearing nanofibers, comprising:

preparing an aqueous fabrication solution comprising at least one water-soluble polymer, one charge-bearing polymer, water and acetic acid;

electrospinning the aqueous solution to obtain nanofibers; and

subjecting the nanofibers to ionized air to obtain quasi-permanent charge-bearing nanofibers.

2 . The method of claim 1 , wherein the at least one water-soluble polymer is selected from polyvinyl alcohol, polyethylene oxide, gelatin, chitosan, polycaprolactone, polylactic acid, collagen and hyaluronic acid.

3 . The method of claim 1 , wherein the at least one charge-bearing polymer is selected from polyacrylic acid, polyethyleneimine, polylysine or polyhexanide.

4 . The method of claim 1 , wherein the ionized air is produced by electrodes placed at a distance of 10-50 mm apart applying a voltage of 50-100 kV.

5 . A quasi-permanent charge-bearing nanofiber fabricated using the method of claim 1 .

6 . The quasi-permanent charge-bearing nanofiber of claim 4 , wherein the magnitude of the surface charge of the nanofiber is at least 10 mV.

7 . The quasi-permanent charge-bearing nanofiber of claim 4 , wherein the surface charge retention of the nanofiber 12 months after fabrication under room temperature is at least 60%.

8 . The quasi-permanent charge-bearing nanofiber of claim 4 , wherein the surface charge retention of the nanofiber 72 hours after fabrication under a temperature of 50° C. is at least 55%.

9 . The quasi-permanent charge-bearing nanofiber of claim 4 , wherein the surface charge retention of the nanofiber 72 hours after fabrication under a temperature of −20° C. is at least 60%.

10 . The quasi-permanent charge-bearing nanofiber of claim 4 , wherein the hydration level of the nanofiber is at least 50% higher than non-charge bearing nanofibers.

11 . The quasi-permanent charge-bearing nanofiber of claim 4 , wherein the total antioxidant capacity of the nanofiber is at least 300% higher than non-charge bearing nanofibers.

12 . The quasi-permanent charge-bearing nanofiber of claim 4 , wherein the nanofiber bears positive charge and the charge-bearing polymer in the aqueous fabrication solution comprises polyhexanide.

13 . The quasi-permanent charge-bearing nanofiber of claim 4 , wherein the nanofiber bears negative charge and the charge-bearing polymer in the aqueous fabrication solution comprises polyacrylic acid.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 17, 2026
From: NANO AND ADVANCED MATERIALS INSTITUTE LIMITED
To: HONG KONG APPLIED SCIENCE AND TECHNOLOGY RESEARCH INSTITUTE COMPANY LIMITED
Reel/Frame 075402/0602 →