IP Library › Granted Patent US 11,592,016
Granted Patent B2
US 11,592,016 · App. 16/928,980 · Granted Feb 28, 2023

Low-voltage microfluidic valve device and system for regulating the flow of fluid

Inventors: Michael N. Kozicki (Phoenix, AZ); Junseok Chae (Scottsdale, AZ)
Assignee: ARIZONA BOARD OF REGENTS ON BEHALF OF ARIZONA STATE UNIVERSITY
F04B43/043B01L3/502738F16K99/0026F16K99/0042B01L2300/0645B01L2300/12B01L2300/123B01L2300/165B01L2400/0415B01L2400/0633B01L2400/086F16K2099/0074F16K2099/0084
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Quick Facts
Patent No.
US 11,592,016
App. No.
16/928,980
Granted
Feb 28, 2023
Kind
B2
Abstract

A low-voltage microfluidic valve device and system for regulating the flow of fluid. One low-voltage microfluidic valve device for regulating the low of fluid includes a nano-textured dendritic metallic filament configured to grow and retract in response to a voltage. The low-voltage microfluidic valve device also includes a microfluidic channel configured to allow fluid flow, wherein the fluid flow is selectively interrupted by the growth of the nano-textured dendritic metallic filament. The low-voltage microfluidic valve device also includes a membrane positioned proximate to the fluid and configured to alter shape in response to the growth of the nano-textured dendritic metallic filament.

Claims (15)

1. A system of regulating a flow of a fluid, the system comprising:

a low-voltage microfluidic valve device, the low-voltage microfluidic valve device including

a first electrode and a second electrode opposite the first electrode,

a microfluidic channel formed between the first electrode and the second electrode;

a nano-textured dendritic metallic filament configured to grow and retract between the first electrode and the second electrode in response to a voltage applied to the first electrode and the second electrode,

a parylene membrane covering the microfluidic channel and configured to alter shape in response to the growth of the nano-textured dendritic metallic filament, and

the microfluidic channel configured to allow fluid flow over the parylene membrane, wherein the fluid flow is selectively interrupted by the parylene membrane when the shape of the parylene membrane is altered by the growth of the nano-textured dendritic metallic filament; and

a power supply, wherein the power supply is configured to provide the voltage applied to the first electrode and the second electrode of the low-voltage microfluidic valve device.

2. The system of claim 1 , wherein the low-voltage microfluidic valve device further includes an underlying metal and solid electrolyte.

3. The system of claim 2 , wherein the parylene membrane is configured to isolate the fluid from the underlying metal and solid electrolyte.

4. The system of claim 2 , wherein the underlying metal and solid electrolyte is constructed of silver-doped chalcogenide.

5. The system of claim 1 , wherein the nano-textured dendritic metallic filament is configured to grow and retract in response to the voltage applied across the first electrode and the second electrode.

6. The system of claim 1 , wherein the growth and retraction of the nano-textured dendritic metallic filament is based on a reversible petal effect that controls the fluid flow through the microfluidic channel.

7. The system of claim 1 , wherein the nano-textured dentritic metallic filament is configured to grow in response to a positive voltage and wherein the nano-textured dentritic metallic filament is configured to retract in response to a negative voltage.

8. The system of claim 1 , wherein the first electrode is constructed of silver and the second electrode is constructed of nickel, and wherein the nano-textured dendritic metallic filament is configured to grow and retract from the second electrode in response to a voltage applied across the first electrode and the second electrode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2020
From: KOZICKI, MICHAEL N.; CHAE, JUNSEOK
To: ARIZONA BOARD OF REGENTS ON BEHALF OF ARIZONA STATE UNIVERSITY
Reel/Frame 053208/0307 →
Continuity (3)
Division 15774440
Provisional Application 62259249 · Nov 24, 2015
Related Publication 20200338556A1 · Oct 29, 2020