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US20060175192A1 - Optoelectronic probe - Google Patents

Optoelectronic probe
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Publication number
US20060175192A1
US20060175192A1US11/054,564US5456405AUS2006175192A1US 20060175192 A1US20060175192 A1US 20060175192A1US 5456405 AUS5456405 AUS 5456405AUS 2006175192 A1US2006175192 A1US 2006175192A1
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United States
Prior art keywords
particles
semiconductor material
electrode
electric input
light beam
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US11/054,564
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US7088116B1 (en
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Haian Lin
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Publication of US20060175192A1publicationCriticalpatent/US20060175192A1/en
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Abstract

The present invention, referred to as optoelectronic probe, concerns a novel apparatus and method for characterization and micromanipulation of particles or biomolecules in an electrolyte solution. Electric fields, which include both time constant and time-varying components, are applied to a thin insulating layer covered, lightly doped semiconductor material. Illumination injects carriers into the insulator/semiconductor interface to compensate the leaking minority carrier current and maintain an inversion layer, which works as an electrode to control the particle movements. A particle array, or even a single cell, can be assembled in, or moved along with the inversion layer electrode, which is induced by illumination. Furthermore, an impedance analyzer is utilized to characterize the trapped particles, or single cell. The present invention has numerous uses, such as bio-chemical analysis systems, and nanosize structures assembly for electronic or optical devices.

Description

Claims (17)

1. A method for controlling the movement of particles in an electrolyte, comprising the following steps:
providing a semiconductor material;
forming an insulating layer over said semiconductor material;
attaching an electrolyte solution to said insulating layer;
applying an electric input to said semiconductor material, said electric input having a predetermined polarity;
illuminating the surface of said semiconductor material with a predetermined light beam;
maintaining an inversion region at the interface between said semiconductor material and said insulating layer, said inversion region being defined by said predetermined light beam, said inversion region working as an electrode; and
providing a plurality of particles suspended in said electrolyte solution, said particles being manipulated by said electrode, in accordance with said electric input and said predetermined light beam.
17. An apparatus for probing particles in an electrolyte, comprising:
a semiconductor material;
an insulating layer formed over said semiconductor material;
an electrolyte solution attached to said insulating layer;
an electric source which applies an electric input to said semiconductor material, said electric input having a predetermined polarity;
a predetermined light beam which illuminates the surface of said semiconductor material to maintain an inversion region at the interface between said insulating layer and said semiconductor, said inversion region working as an electrode;
a plurality of particles suspended in said electrolyte solution, said particles being manipulated by said electrode in accordance with said electric input; and
an instrument for measuring the electric response of said particles on said electric input.
US11/054,5642005-02-092005-02-09Optoelectronic probeExpired - Fee RelatedUS7088116B1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US11/054,564US7088116B1 (en)2005-02-092005-02-09Optoelectronic probe

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US11/054,564US7088116B1 (en)2005-02-092005-02-09Optoelectronic probe

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US7088116B1 US7088116B1 (en)2006-08-08
US20060175192A1true US20060175192A1 (en)2006-08-10

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Cited By (11)

* Cited by examiner, † Cited by third party
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WO2008130655A1 (en)*2007-04-202008-10-30The General Hospital CorporationMethods for counting cells
US20100242631A1 (en)*2009-03-312010-09-30Petra HetzerMethod and system for particles analysis in microstructure devices by isolating particles
US20100283032A1 (en)*2007-04-302010-11-11Nokia CorporationMethod for forming a semidconductor structure
US20120182025A1 (en)*2008-12-022012-07-19Ut-Battelle, LlcOptically Stimulated Differential Impedance Spectroscopy
WO2014074367A1 (en)*2012-11-082014-05-15Berkeley Lights, Inc.Circuit based optoelectronic tweezers
WO2017212475A1 (en)*2016-06-052017-12-14Technion Research & Development Foundation LimitedDevice and method for controlling electrical field
US10799865B2 (en)2015-10-272020-10-13Berkeley Lights, Inc.Microfluidic apparatus having an optimized electrowetting surface and related systems and methods
US11007520B2 (en)2016-05-262021-05-18Berkeley Lights, Inc.Covalently modified surfaces, kits, and methods of preparation and use
US11365381B2 (en)2015-04-222022-06-21Berkeley Lights, Inc.Microfluidic cell culture
JP2023044211A (en)*2021-09-172023-03-30富士フイルム株式会社Master disk for electroforming, production method of master disk for electroforming, and production method of electroformed object
US12220697B2 (en)2018-11-192025-02-11Bruker Cellular AnalysisMicrofluidic device with programmable switching elements

Families Citing this family (6)

* Cited by examiner, † Cited by third party
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WO2008119066A1 (en)*2007-03-282008-10-02The Regents Of The University Of CaliforniaSingle-sided lateral-field and phototransistor-based optoelectronic tweezers
US20090137925A1 (en)*2007-11-232009-05-28Divya CantorImpedance Spectroscopy Cervix Scanning Apparatus and Method
KR100928561B1 (en)2007-12-222009-11-25서강대학교산학협력단 Biomaterial-Based Electronic Devices
US20140152801A1 (en)2009-10-282014-06-05Alentic Microscience Inc.Detecting and Using Light Representative of a Sample
US10502666B2 (en)*2013-02-062019-12-10Alentic Microscience Inc.Sample processing improvements for quantitative microscopy
CA2953620C (en)2013-06-262020-08-25Alentic Microscience Inc.Sample processing improvements for microscopy

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US5855753A (en)*1996-11-261999-01-05The Trustees Of Princeton UniversityMethod for electrohydrodynamically assembling patterned colloidal structures
US6169394B1 (en)*1998-09-182001-01-02University Of The Utah Research FoundationElectrical detector for micro-analysis systems
US6251691B1 (en)*1996-04-252001-06-26Bioarray Solutions, LlcLight-controlled electrokinetic assembly of particles near surfaces
US6387707B1 (en)*1996-04-252002-05-14Bioarray SolutionsArray Cytometry
US20030142409A1 (en)*2002-01-282003-07-31Fuji Xerox Co., Ltd.Method of manufacturing micro-lens array, electrolyte and manufacturing apparatus used therefor
US6605453B2 (en)*1999-12-012003-08-12The Regents Of The University Of CaliforniaElectric-field-assisted fluidic assembly of inorganic and organic materials, molecules and like small things including living cells
US6706163B2 (en)*2001-03-212004-03-16Michael SeulOn-chip analysis of particles and fractionation of particle mixtures using light-controlled electrokinetic assembly of particles near surfaces
US20040136875A1 (en)*1996-04-252004-07-15Michael SeulChips in fluid confinement regions
US20040152067A1 (en)*2002-07-202004-08-05Xiaobo WangImpedance based apparatuses and methods for analyzing cells and particles

Patent Citations (13)

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US6514771B1 (en)*1996-04-252003-02-04Bioarray SolutionsLight-controlled electrokinetic assembly of particles near surfaces
US6251691B1 (en)*1996-04-252001-06-26Bioarray Solutions, LlcLight-controlled electrokinetic assembly of particles near surfaces
US6387707B1 (en)*1996-04-252002-05-14Bioarray SolutionsArray Cytometry
US6468811B1 (en)*1996-04-252002-10-22Bioarray SolutionsLight-controlled electrokinetic assembly of particles near surfaces
US20040136875A1 (en)*1996-04-252004-07-15Michael SeulChips in fluid confinement regions
US6797524B1 (en)*1996-04-252004-09-28Bioarray Solutions Ltd.Light-controlled electrokinetic assembly of particles near surfaces
US6033547A (en)*1996-11-262000-03-07The Trustees Of Princeton UniversityApparatus for electrohydrodynamically assembling patterned colloidal structures
US5855753A (en)*1996-11-261999-01-05The Trustees Of Princeton UniversityMethod for electrohydrodynamically assembling patterned colloidal structures
US6169394B1 (en)*1998-09-182001-01-02University Of The Utah Research FoundationElectrical detector for micro-analysis systems
US6605453B2 (en)*1999-12-012003-08-12The Regents Of The University Of CaliforniaElectric-field-assisted fluidic assembly of inorganic and organic materials, molecules and like small things including living cells
US6706163B2 (en)*2001-03-212004-03-16Michael SeulOn-chip analysis of particles and fractionation of particle mixtures using light-controlled electrokinetic assembly of particles near surfaces
US20030142409A1 (en)*2002-01-282003-07-31Fuji Xerox Co., Ltd.Method of manufacturing micro-lens array, electrolyte and manufacturing apparatus used therefor
US20040152067A1 (en)*2002-07-202004-08-05Xiaobo WangImpedance based apparatuses and methods for analyzing cells and particles

Cited By (25)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
WO2008130655A1 (en)*2007-04-202008-10-30The General Hospital CorporationMethods for counting cells
AP2937A (en)*2007-04-202014-07-31Gen Hospital CorpMethod for counting cells
US8852875B2 (en)2007-04-202014-10-07The General Hospital CorporationMethods for counting cells
US20100283032A1 (en)*2007-04-302010-11-11Nokia CorporationMethod for forming a semidconductor structure
US8575591B2 (en)*2007-04-302013-11-05Nokia CorporationApparatus for forming a nanoscale semiconductor structure on a substrate by applying a carrier fluid
US20120182025A1 (en)*2008-12-022012-07-19Ut-Battelle, LlcOptically Stimulated Differential Impedance Spectroscopy
US8653830B2 (en)*2008-12-022014-02-18Ut-Battelle, LlcOptically stimulated differential impedance spectroscopy
US8925396B2 (en)2009-03-312015-01-06Globalfoundries Inc.Method and system for particles analysis in microstructure devices by isolating particles
US20100242631A1 (en)*2009-03-312010-09-30Petra HetzerMethod and system for particles analysis in microstructure devices by isolating particles
DE102009015713A1 (en)*2009-03-312010-10-14Globalfoundries Dresden Module One Llc & Co. Kg Method and system for particle analysis in microstructure devices by isolation of particles
US9403172B2 (en)2012-11-082016-08-02Berkeley Lights, Inc.Circuit based optoelectronic tweezers
WO2014074367A1 (en)*2012-11-082014-05-15Berkeley Lights, Inc.Circuit based optoelectronic tweezers
US9895699B2 (en)2012-11-082018-02-20Berkeley Lights, Inc.Circuit-based optoelectronic tweezers
JP2016505349A (en)*2012-11-082016-02-25バークレー ライツ,インコーポレイテッド Circuit-based optoelectronic tweezers
US11365381B2 (en)2015-04-222022-06-21Berkeley Lights, Inc.Microfluidic cell culture
US12134758B2 (en)2015-04-222024-11-05Bruker Cellular Analysis, Inc.Microfluidic cell culture
US10799865B2 (en)2015-10-272020-10-13Berkeley Lights, Inc.Microfluidic apparatus having an optimized electrowetting surface and related systems and methods
US11964275B2 (en)2015-10-272024-04-23Berkeley Lights, Inc.Microfluidic apparatus having an optimized electrowetting surface and related systems and methods
US11801508B2 (en)2016-05-262023-10-31Berkeley Lights, Inc.Covalently modified surfaces, kits, and methods of preparation and use
US11007520B2 (en)2016-05-262021-05-18Berkeley Lights, Inc.Covalently modified surfaces, kits, and methods of preparation and use
US12280370B2 (en)2016-05-262025-04-22Bruker Cellular Analysis, Inc.Covalently modified surfaces, kits, and methods of preparation and use
US11059052B2 (en)2016-06-052021-07-13Technion Research & Development Foundation LimitedDevice and method for controlling electrical field
WO2017212475A1 (en)*2016-06-052017-12-14Technion Research & Development Foundation LimitedDevice and method for controlling electrical field
US12220697B2 (en)2018-11-192025-02-11Bruker Cellular AnalysisMicrofluidic device with programmable switching elements
JP2023044211A (en)*2021-09-172023-03-30富士フイルム株式会社Master disk for electroforming, production method of master disk for electroforming, and production method of electroformed object

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Legal Events

DateCodeTitleDescription
REMIMaintenance fee reminder mailed
LAPSLapse for failure to pay maintenance fees
STCHInformation on status: patent discontinuation

Free format text:PATENT EXPIRED DUE TO NONPAYMENT OF MAINTENANCE FEES UNDER 37 CFR 1.362

FPExpired due to failure to pay maintenance fee

Effective date:20100808


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