Patents by Inventor Robert S. Dubrow

Robert S. Dubrow has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20080023693
    Abstract: Methods and systems for depositing nanomaterials onto a receiving substrate and optionally for depositing those materials in a desired orientation, that comprise providing nanomaterials on a transfer substrate and contacting the nanomaterials with an adherent material disposed upon a surface or portions of a surface of a receiving substrate. Orientation is optionally provided by moving the transfer and receiving substrates relative to each other during the transfer process.
    Type: Application
    Filed: September 14, 2005
    Publication date: January 31, 2008
    Applicant: Nanosys, Inc.
    Inventors: Robert S. Dubrow, Linda T. Romano, David P. Stumbo
  • Patent number: 7303727
    Abstract: Methods and apparatus for delivering fluidic materials to sample destinations, including mass spectrometers for analysis are provided. In preferred embodiments, sample aliquots are electrosprayed from tapered spray tips of capillary elements into the orifices of mass spectrometric inlet systems. In certain embodiments, fluidic samples are orthogonally sprayed from capillary elements or other fluid conduits, whereas in other embodiments samples are sprayed after devices are rotated or otherwise translocated from sample sources to sample destinations. In still other embodiments, samples are sprayed from flexed or deflected capillary elements at selected sample destinations.
    Type: Grant
    Filed: February 19, 2003
    Date of Patent: December 4, 2007
    Assignee: Caliper Life Sciences, Inc
    Inventors: Robert S. Dubrow, Michael Greenstein, Luc J. Bousse, Khushroo Gandhi
  • Patent number: 7295419
    Abstract: This invention provides novel capacitors comprising nanofiber enhanced surface area substrates and structures comprising such capacitors, as well as methods and uses for such capacitors.
    Type: Grant
    Filed: August 21, 2006
    Date of Patent: November 13, 2007
    Assignee: Nanosys, Inc.
    Inventors: Calvin Y. H. Chow, Robert S. Dubrow
  • Patent number: 7273732
    Abstract: The present invention is directed to systems and methods for nanowire growth and harvesting. In an embodiment, methods for nanowire growth and doping are provided, including methods for epitaxial oriented nanowire growth using a combination of silicon precursors. In a further aspect of the invention, methods to improve nanowire quality through the use of sacrifical growth layers are provided. In another aspect of the invention, methods for transferring nanowires from one substrate to another substrate are provided.
    Type: Grant
    Filed: July 21, 2006
    Date of Patent: September 25, 2007
    Assignee: Nanosys, Inc.
    Inventors: Yaoling Pan, Xiangfeng Duan, Robert S. Dubrow, Jay L. Goldman, Shahriar Mostarshed, Chunming Niu, Linda T. Romano, Dave Stumbo
  • Patent number: 7192559
    Abstract: Methods and devices for delivering fluids into microfluidic device body structures are described. The methods and devices include the use of fluid manifolds which are integrated or interchangeable with device body structures. Methods of fabricating manifolds are also provided.
    Type: Grant
    Filed: August 2, 2001
    Date of Patent: March 20, 2007
    Assignee: Caliper Life Sciences, Inc.
    Inventors: Andrea W. Chow, Anne R. Kopf-Sill, J. Wallace Parce, Robert S. Dubrow
  • Patent number: 7169277
    Abstract: Devices, systems and methods for use in separating sample materials into different fractions that employ bulk fluid flow for loading of samples followed by electrophoretic separation of the sample material. Devices employ configurations that optionally allow bulk sample loading with some or no displacement of a separation matrix within a separation conduit. Methods of using these devices, and systems that incorporate these devices are also envisioned.
    Type: Grant
    Filed: July 31, 2001
    Date of Patent: January 30, 2007
    Assignee: Caliper Life Sciences, Inc.
    Inventors: Walter Ausserer, Luc J. Bousse, Robert S. Dubrow, Steven A. Sundberg, Andrea W. Chow, Benjamin N. Wang
  • Patent number: 7138032
    Abstract: The present invention generally provides improved methods of fabricating polymeric microfluidic devices that incorporate microscale fluidic structures, whereby the fabrication process does not substantially distort or deform such structures. The methods of the invention generally provide enhanced bonding processes for mating and bonding substrate layers to define the microscale channel networks therebetween.
    Type: Grant
    Filed: February 6, 2003
    Date of Patent: November 21, 2006
    Assignee: Caliper Life Sciences, Inc.
    Inventors: Khushroo Gandhi, Robert S. Dubrow, Luc J. Bousse
  • Patent number: 7116546
    Abstract: This invention provides novel capacitors comprising nanofiber enhanced surface area substrates and structures comprising such capacitors, as well as methods and uses for such capacitors.
    Type: Grant
    Filed: January 12, 2006
    Date of Patent: October 3, 2006
    Assignee: Nanosys, Inc.
    Inventors: Calvin Y. H. Chow, Robert S. Dubrow
  • Patent number: 7105428
    Abstract: The present invention is directed to systems and methods for nanowire growth and harvesting. In an embodiment, methods for nanowire growth and doping are provided, including methods for epitaxial oriented nanowire growth using a combination of silicon precursors. In a further aspect of the invention, methods to improve nanowire quality through the use of sacrifical growth layers are provided. In another aspect of the invention, methods for transferring nanowires from one substrate to another substrate are provided.
    Type: Grant
    Filed: April 29, 2005
    Date of Patent: September 12, 2006
    Assignee: Nanosys, Inc.
    Inventors: Yaoling Pan, Xiangfeng Duan, Robert S. Dubrow, Jay L. Goldman, Shahriar Mostarshed, Chunming Niu, Linda T. Romano, Dave Stumbo
  • Patent number: 7081190
    Abstract: The present invention provides methods of electrophoretically separating macromolecular species, as well as compositions and systems useful in carrying out such methods. Specifically, the methods of the present invention comprise providing a substrate that has at least a first capillary channel disposed therein. The surface of the channel has a first surface charge associated therewith, and is filled with a water soluble surface adsorbing polymer solution that bears a net charge that is the same as the charge on the capillary surface.
    Type: Grant
    Filed: May 24, 2002
    Date of Patent: July 25, 2006
    Assignee: Caliper Life Sciences, Inc.
    Inventor: Robert S. Dubrow
  • Patent number: 7057881
    Abstract: This invention provides novel capacitors comprising nanofiber enhanced surface area substrates and structures comprising such capacitors, as well as methods and uses for such capacitors.
    Type: Grant
    Filed: March 8, 2005
    Date of Patent: June 6, 2006
    Assignee: Nanosys, Inc
    Inventors: Calvin Y. H. Chow, Robert S. Dubrow
  • Patent number: 7033474
    Abstract: The present invention generally provides microfluidic devices which incorporate improved channel and reservoir geometries, as well as methods of using these devices in the analysis, preparation, or other manipulation of fluid borne materials, to achieve higher throughputs of such materials through these devices, with lower cost, material and/or space requirements.
    Type: Grant
    Filed: June 6, 2000
    Date of Patent: April 25, 2006
    Assignee: Caliper Life Sciences, Inc.
    Inventors: Robert S. Dubrow, Colin B. Kennedy, Luc J. Bousse
  • Patent number: 6989128
    Abstract: Apparatus and methods for modulating flow rates in microfluidic devices are provided. The methods involve modulating downstream pressure in the device to change the flow rate of materials in an upstream region of the device. Such methods include electrokinetic injection or withdrawal of materials through a side channel and the use of an absorbent material to induce wicking in the channel system. The apparatus provided includes a prefabricated wick in the device to provide for flow rate control. Additional methods for determining velocity of a particle and cell incubation time are also provided.
    Type: Grant
    Filed: May 8, 2002
    Date of Patent: January 24, 2006
    Assignee: Caliper Life Sciences, Inc.
    Inventors: Marja Liisa Alajoki, H. Garrett Wada, Robert S. Dubrow
  • Patent number: 6756019
    Abstract: The present invention provides microfluidic devices that comprise a body structure comprising at least a first microscale channel network disposed therein. The body structure has a plurality of ports disposed in the body structure, where each port is in fluid communication with one or more channels in the first channel network. The devices also include a cover layer comprising a plurality of apertures disposed through the cover layer. The cover layer is mated with the body structure whereby each of the apertures is aligned with a separate one of the plurality of ports. Rings are optionally disposed between the cover layer and the body structure and circumferentially around pairs of aligned apertures and ports. The devices also optionally include conductive coatings and membranes. The invention additionally provides methods of controlling the delivery of a composition of material into a microfluidic device.
    Type: Grant
    Filed: April 6, 2000
    Date of Patent: June 29, 2004
    Assignee: Caliper Technologies Corp.
    Inventors: Robert S. Dubrow, Colin B. Kennedy, Robert Nagle, David Chazan, Ernest C. W. Lee, Khushroo Gandhi, Calvin Y. H. Chow
  • Publication number: 20030215855
    Abstract: Devices, systems and methods for use in separating sample materials into different sample components and then isolating one or more of the sample components for further processing or analysis are disclosed. Devices employ configurations that optionally allow a sample material to be electrophoretically separated into sample components in a separation matrix within a separation conduit. The sample components may then be detected in a detection zone in the separation conduit, and then selected components shunted to a component collection conduit within the device downstream of the detection zone for further processing or analysis based on information received at the detection zone. Methods of using these devices, and systems that incorporate these devices are also envisioned.
    Type: Application
    Filed: March 27, 2003
    Publication date: November 20, 2003
    Applicant: Caliper Technologies Corp.
    Inventors: Robert S. Dubrow, Luc J. Bousse, Huan L. Phan
  • Patent number: 6635487
    Abstract: A test device for use as a fluorescent standard in microfluidic analytical detection systems includes one or more slits that correspond to, and are of similar dimension to, one or more microchannels in a detection region on a corresponding analysis chip. A fluorescent material is attached to the test device on the side opposite the illumination source such that excitation radiation passes through the slit(s), which defines the focal plane of the illumination optics, and impinges on the fluorescent material thereby causing the fluorescent material to fluoresce. By displacing the fluorescent material relative to the focal plane, the intensity of the radiation exciting the fluorescent material is dispersed relative to the intensity of the radiation at the focal plane, and concomitantly the strength of the resulting fluorescent signal is reduced.
    Type: Grant
    Filed: May 7, 2001
    Date of Patent: October 21, 2003
    Assignee: Caliper Technologies Corp.
    Inventors: Ernest C. W. Lee, Robert Nagle, Richard J. McReynolds, David Chazan, Robert S. Dubrow
  • Publication number: 20030150555
    Abstract: The present invention generally provides improved methods of fabricating polymeric microfluidic devices that incorporate microscale fluidic structures, whereby the fabrication process does not substantially distort or deform such structures. The methods of the invention generally provide enhanced bonding processes for mating and bonding substrate layers to define the microscale channel networks therebetween.
    Type: Application
    Filed: February 6, 2003
    Publication date: August 14, 2003
    Applicant: Caliper Technologies Corp.
    Inventors: Khushroo Gandhi, Robert S. Dubrow, Luc J. Bousse
  • Patent number: 6592821
    Abstract: Methods and systems for particle focusing to increase assay throughput and sensitivity in microscale systems are provided. The invention includes methods for providing substantially uniform flow velocity to flowing particles in microfluidic devices. Methods of sorting members of particle populations, such as cells and various subcellular components are also provided. Integrated systems in which particles are focused and/or sorted are additionally included.
    Type: Grant
    Filed: May 10, 2001
    Date of Patent: July 15, 2003
    Assignee: Caliper Technologies Corp.
    Inventors: H. Garrett Wada, Anne R. Kopf-Sill, Marja Liisa Alajoki, J. Wallace Parce, Benjamin N. Wang, Andrea W. Chow, Robert S. Dubrow, Yevgeny Yurkovetsky, Javier Anibal Farinas
  • Patent number: 6555067
    Abstract: The present invention generally provides improved methods of fabricating polymeric microfluidic devices that incorporate microscale fluidic structures, whereby the fabrication process does not substantially distort or deform such structures. The methods of the invention generally provide enhanced bonding processes for mating and bonding substrate layers to define the microscale channel networks therebetween.
    Type: Grant
    Filed: June 7, 2000
    Date of Patent: April 29, 2003
    Assignee: Caliper Technologies Corp.
    Inventors: Khushroo Gandhi, Robert S. Dubrow, Luc J. Bousse
  • Patent number: 6541274
    Abstract: Reactor systems that include a reaction receptacle that includes a plurality of reservoirs disposed in the surface of a substrate. The reactor system also typically includes a temperature control element having at least a first heat exchanger thermally coupled to it. The heat exchanger is, in turn, disposed within the at least one of the reservoirs whereby the heat exchanger transfers heat to or from a fluid disposed within the reservoir, which heat is conducted to or from the temperature control element.
    Type: Grant
    Filed: October 17, 2001
    Date of Patent: April 1, 2003
    Assignee: Caliper Technologies Corp.
    Inventors: Robert Nagle, Robert S. Dubrow