IP Library Granted Patent US 9,645,108
Granted Patent B2
US 9,645,108 · App. 13/907,512 · Granted May 9, 2017

Scanning drop sensor

Inventors: Jian Jin (Berkeley, CA); Chengxiang Xiang (Costa Mesa, CA); John Gregoire (Sierra Madre, CA)
Assignees: California Institute of Technology; Lawrence Berkeley National Laboratory
G01N27/4035G01N27/416G01N27/417
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Quick Facts
Patent No.
US 9,645,108
App. No.
13/907,512
Granted
May 9, 2017
Kind
B2
Abstract

Electrochemical experiments are performed on a collection of samples by suspending a drop of electrolyte solution between an electrochemical experiment probe and one of the samples that serves as a test sample. During the electrochemical experiment, the electrolyte solution is added to the drop and an output solution is removed from the drop. The probe and collection of samples can be moved relative to one another so the probe can be scanned across the samples.

Claims (32)

1. A system, comprising:

an electrochemical experiment probe configured to be positioned over a test sample with a drop of liquid electrolyte solution suspended between the electrochemical experiment probe and the test sample;

one or more first conduits arranged so as to add electrolyte solution to the drop; and

one or more output conduits arranged to remove output solution from the test sample, and

a drop conduit in fluid communication with the one or more first conduits and comprising a drop port open to the test sample,

wherein the one or more output conduits are positioned such that a first end of an output conduit is adjacent to an exit of the drop conduit.

2. The system of claim 1 , wherein the one or more first conduits are included in the probe.

3. The system of claim 2 , wherein the test sample is one of a plurality of samples and further comprising:

a sample collection including the samples positioned on an electrically conducting substrate.

4. The system of claim 2 , further comprising:

electronics configured to control a flow of electrolyte solution through the one or more first conduits such that the electrolyte solution is added to the drop and to control a flow of an output solution through the one or more output conduits such that the output solution is removed from the drop and flows through the one or more output conduits.

5. The system of claim 4 , wherein the one or more output conduits each contacts the drop.

6. The system of claim 5 , wherein the electronics control a volumetric flowrate through the one or more output conduits such that the volumetric flowrate through the one or more output conduits exceeds the volumetric flowrate of electrolyte solution into the drop.

7. The system of claim 5 , wherein the electronics control the flow of output solution out of the drop through the one or more output conduits such that both the output solution and an atmosphere in which the drop is positioned flow through the one or more output conduits.

8. The system of claim 4 , further comprising:

a reference electrode having a functional end in physical contact with the drop.

9. The system of claim 4 , further comprising: a counter electrode is positioned in one or more of the first conduits such that a liquid is in contact with both the drop and the counter electrode.

10. The system of claim 4 , further comprising:

wherein the electronics are configured to perform one or more electrochemical experiments on the test sample.

11. The system of claim 10 , wherein the one or more electrochemical experiments make use of a working electrode, a counter electrode, and a reference electrode; and

the reference electrode has a functional end in physical contact with the drop;

the counter electrode is positioned in one or more of the first conduits such that a liquid is in contact with both the drop and the counter electrode; and

the working electrode is defined by a location where the drop contacts the test sample.

12. The system of claim 10 , wherein the electronics perform the one or more electrochemical experiments on the test sample concurrently with adding the electrolyte to the drop and concurrently with removing output solution from the drop.

13. The system of claim 11 , wherein the drop has a volume less than 1 μL.

14. The system of claim 12 , wherein the test sample occupies an area of the substrate less than 1 mm 2 .

15. The system of claim 4 , further comprising:

one or more actuators configured to move the sample collection and the probe relative to one another.

16. The system of claim 1 , further comprising:

an optical waveguide positioned such that light exiting from the waveguide travels to the drop through the drop conduits.

17. The system of claim 1 , further comprising:

a waveguide positioned in the drop conduits such that light that exits from the waveguide travels through the drop to the test sample.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 7, 2021
From: JIN, JIAN
To: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
Reel/Frame 056781/0377 →
CONFIRMATORY LICENSE Recorded Jun 6, 2014
From: CALIFORNIA INSTITUTE OF TECHNOLOGY
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 033153/0302 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 24, 2013
From: JIN, JIAN
To: LAWRENCE BERKELEY NATIONAL LABORATORY
Reel/Frame 031470/0585 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2013
From: XIANG, CHENGXIANG; GREGOIRE, JOHN
To: CALIFORNIA INSTITUTE OF TECHNOLOGY
Reel/Frame 030679/0415 →
Continuity (2)
Provisional Application 61654198 · Jun 1, 2012
Related Publication 20130324424A1 · Dec 5, 2013