Method for manipulating a solution using a ferroelectric electro-osmotic pump
First Claim
1. A method for manipulating a solution along a fluid pathway, said solution having first ions and second ions, said first ions having a first charge polarity and said second ions having a charge polarity opposite said first ions, said method comprising the steps of:
- providing a ferroelectric member having a surface;
placing said surface of said ferroelectric member in contact with said solution;
establishing a first electric field to polarize said ferroelectric member in a spontaneous poled state, and create a charge on said surface of said ferroelectric member to draw said first ions in a direction substantially perpendicular to the fluid pathway, towards said surface of said ferroelectric member; and
establishing a second electric field within said solution substantially parallel to the fluid pathway to create a force on said second ions in the direction of said second electric field and cause said solution to flow in the direction of said second electric field.
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Accused Products
Abstract
A device and method for pumping an electrolyte solution includes a conduit having a first end, a second end and a lumen for containing the electrolyte solution. An opening at each end of the conduit allows electrolyte solution to enter and exit the lumen of the conduit. The device further includes a ferroelectric member that is positioned along a portion of the conduit. The ferroelectric member is formed with a contact surface for interaction with the electrolyte solution. An electrode is positioned adjacent to the ferroelectric member to polarize the ferroelectric member and charge the contact surface. Driving electrodes are positioned to establish a potential difference in the electrolyte solution across the portion of the conduit containing the ferroelectric member.
51 Citations
3 Claims
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1. A method for manipulating a solution along a fluid pathway, said solution having first ions and second ions, said first ions having a first charge polarity and said second ions having a charge polarity opposite said first ions, said method comprising the steps of:
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providing a ferroelectric member having a surface;
placing said surface of said ferroelectric member in contact with said solution;
establishing a first electric field to polarize said ferroelectric member in a spontaneous poled state, and create a charge on said surface of said ferroelectric member to draw said first ions in a direction substantially perpendicular to the fluid pathway, towards said surface of said ferroelectric member; and
establishing a second electric field within said solution substantially parallel to the fluid pathway to create a force on said second ions in the direction of said second electric field and cause said solution to flow in the direction of said second electric field. - View Dependent Claims (2, 3)
establishing an alternating electric field of decreasing amplitude to de-polarize said ferroelectric member to cause said solution to stop flowing in the direction of said second electric field.
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3. A method as recited in claim 1 wherein the magnitude of said first and second electric fields vary with time and have the same angular frequency.
Specification