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| United States Patent | 6,033,546 |
| Ramsey | March 7, 2000 |
| **Please see images for: ( Certificate of Correction ) ** |
A microchip laboratory system and method provide fluid manipulations for a variety of applications, including sample injection for microchip chemical separations. The microchip is fabricated using standard photolithographic procedures and chemical wet etching, with the substrate and cover plate joined using direct bonding. Capillary electrophoresis and electrochromatography are performed in channels formed in the substrate. Analytes are loaded into a four-way intersection of channels by electrokinetically pumping the analyte through the intersection, followed by switching of the potentials to force an analyte plug into the separation channel.
| Inventors: | Ramsey; J. Michael (Knoxville, TN) |
|---|---|
| Assignee: |
Lockheed Martin Energy Research Corporation
(Oak Ridge,
TN)
|
| Family ID: | 23087469 |
| Appl. No.: | 09/153,470 |
| Filed: | September 15, 1998 |
| Application Number | Filing Date | Patent Number | Issue Date | ||
|---|---|---|---|---|---|
| 776645 | Feb 3, 1997 | 5858195 | |||
| 283769 | Aug 1, 1994 | ||||
| Current U.S. Class: | 204/603; 204/450; 435/288.5; 204/453; 435/287.2; 204/601; 204/600; 204/451; 435/288.6; 366/DIG.1 |
| Current CPC Class: | B01J 19/0093 (20130101); B01L 3/502753 (20130101); B01F 13/0062 (20130101); G01N 27/44791 (20130101); B01L 3/502784 (20130101); B01F 13/0076 (20130101); G01N 30/16 (20130101); B01L 3/5027 (20130101); G01N 27/44743 (20130101); B01L 3/50273 (20130101); G01N 30/6095 (20130101); B29C 66/026 (20130101); B01J 2219/00912 (20130101); B01J 2219/00826 (20130101); B01L 2300/0883 (20130101); B29C 66/034 (20130101); B01J 2219/0097 (20130101); B01J 2219/00889 (20130101); G01N 2030/162 (20130101); Y10S 366/01 (20130101); B01J 2219/00828 (20130101); B01L 2300/0816 (20130101); B01F 13/0059 (20130101); G01N 2030/8435 (20130101); G01N 2030/383 (20130101); G01N 30/02 (20130101); B01L 3/502738 (20130101); B01L 2400/0415 (20130101); B29C 65/4895 (20130101); G01N 2030/027 (20130101); B01J 2219/00995 (20130101); B29C 66/54 (20130101); B01J 2219/00952 (20130101); B01L 2400/0421 (20130101); B01J 2219/00853 (20130101); G01N 2030/285 (20130101); B01J 2219/00783 (20130101); B01L 3/502776 (20130101); B01L 2200/0605 (20130101); B01L 2300/0867 (20130101); B01J 2219/00891 (20130101); B01J 2219/00831 (20130101); B01L 2400/0418 (20130101); B01J 2219/00916 (20130101); B01L 3/502715 (20130101); G01N 30/02 (20130101); B01D 15/3842 (20130101) |
| Current International Class: | B01J 19/00 (20060101); B01L 3/00 (20060101); G01N 27/447 (20060101); B01F 13/00 (20060101); B29C 65/00 (20060101); G01N 30/02 (20060101); G01N 30/00 (20060101); G01N 027/26 (); G01N 027/447 () |
| Field of Search: | ;204/600,601,602,603,604,605,450,451,452,453,454,455 ;435/287.1,287.2,287.3,288.3,288.4,288.5,288.6,288.7 |
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Stephen C. Jacobson et al, "Effects of Injection Schemes and Column Geometry on the Performance of Microchip Electrophoresis Devices" Analytical Chemistry, vol. 66, No. 7, (Apr. 1, 1994) 1107-1113. . Stephen C. Jacobson et al, "High-Speed Separations on a Microchip", Analytical Chemistry, vol. 66, No. 7 (Apr. 1, 1994) 1114-1118. . Stephen C. Jacobson et al., "Effects of Injection Schemes and Column Geometry on the Performance of Microchip Electrophoresis Devices", Anal. Chem. 66: 1107-1113 Apr. (1994). . D. Jed Harrison et al., "Capillary Electrophoresis and Sample Injection Systems Integrated on a Planar Glass Chip", Anal. Chem., 64: 1926-1932 Sep. (1992). . M. Deml et al., "Electric Sample Splitter for Capillary Zone Electrophoresis", Journal of Chromatography, 320: 159-165 (1985). . D. Jed Harrison et al., "Micromachining a Miniaturized Capillary Electrophoresis-Based Chemical Analysis System on a Chip", Science, 261: 895-897 Aug. (1993). . Carlo S. Effenhauser et al., "Glass Chips for High-Speed Capillary Electrophoresis Separation with Submicrometer Plate Heights", Anal. Chem. 65: 2637-2642, Oct. (1993). . A. Manz et al., "Micromachining of monocrystalline silicon and glass for chemical analysis systems", Trends in Analytical Chemistry, 10(5): 144-149 (1991). . Pernendu K. Dasgupta et al., "Electroosmosis: A Reliable Fluid Propulsion System for Flow Injection Analysis", Anal. Chem., 66: 1792-1798 (1994) No month available. . Kurt Seiler et al., "Planar Glass Chips for Capillary Electrophoresis: Repetitive Sample Injection, Quantitation, and Separation Efficiency", Anal. Chem. 65: 1481-1488 May (1993). . Zhonghui H. Fan et al., "Micromachining of Capillary Electrophoresis Injectors and Separators on Glass Chips and Evaluation of Flow at Capillary Intersections", Anal. Chem., 66: 177-184 Jan. (1994).. |
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