Patents by Inventor Shimon Weiss

Shimon Weiss 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: 20110299011
    Abstract: A multicolor electronic display is based on an array of luminescent semiconductor nanocrystals. Nanocrystals which emit light of different colors are grouped into pixels. The nanocrystals are optically pumped to produce a multicolor display. Different sized nanocrystals are used to produce the different colors. A variety of pixel addressing systems can be used.
    Type: Application
    Filed: August 17, 2011
    Publication date: December 8, 2011
    Inventors: Shimon Weiss, Michael C. Schlamp, A. Paul Alivisatos
  • Patent number: 8071360
    Abstract: A semiconductor nanocrystal compound and probe are described. The compound is capable of linking to one or more affinity molecules. The compound comprises (1) one or more semiconductor nanocrystals capable of, in response to exposure to a first energy, providing a second energy, and (2) one or more linking agents, having a first portion linked to the one or more semiconductor nanocrystals and a second portion capable of linking to one or more affinity molecules. One or more semiconductor nanocrystal compounds are linked to one or more affinity molecules to form a semiconductor nanocrystal probe capable of bonding with one or more detectable substances in a material being analyzed, and capable of, in response to exposure to a first energy, providing a second energy. Also described are processes for respectively: making the semiconductor nanocrystal compound; making the semiconductor nanocrystal probe; and treating materials with the probe.
    Type: Grant
    Filed: March 20, 2009
    Date of Patent: December 6, 2011
    Assignee: The Regents of the University of California
    Inventors: Shimon Weiss, Marcel Bruchez, Paul Alivisatos
  • Patent number: 8071361
    Abstract: A semiconductor nanocrystal compound and probe are described. The compound is capable of linking to one or more affinity molecules. The compound comprises (1) one or more semiconductor nanocrystals capable of, in response to exposure to a first energy, providing a second energy, and (2) one or more linking agents, having a first portion linked to the one or more semiconductor nanocrystals and a second portion capable of linking to one or more affinity molecules. One or more semiconductor nanocrystal compounds are linked to one or more affinity molecules to form a semiconductor nanocrystal probe capable of bonding with one or more detectable substances in a material being analyzed, and capable of, in response to exposure to a first energy, providing a second energy. Also described are processes for respectively: making the semiconductor nanocrystal compound; making the semiconductor nanocrystal probe; and treating materials with the probe.
    Type: Grant
    Filed: February 26, 2010
    Date of Patent: December 6, 2011
    Assignee: The Regents of the University of California
    Inventors: Shimon Weiss, Marcel Bruchez, Paul Alivisatos
  • Patent number: 8071359
    Abstract: A semiconductor nanocrystal compound and probe are described. The compound is capable of linking to one or more affinity molecules. The compound comprises (1) one or more semiconductor nanocrystals capable of, in response to exposure to a first energy, providing a second energy, and (2) one or more linking agents, having a first portion linked to the one or more semiconductor nanocrystals and a second portion capable of linking to one or more affinity molecules. One or more semiconductor nanocrystal compounds are linked to one or more affinity molecules to form a semiconductor nanocrystal probe capable of bonding with one or more detectable substances in a material being analyzed, and capable of, in response to exposure to a first energy, providing a second energy. Also described are processes for respectively: making the semiconductor nanocrystal compound; making the semiconductor nanocrystal probe; and treating materials with the probe.
    Type: Grant
    Filed: December 5, 2006
    Date of Patent: December 6, 2011
    Assignee: The Regents of the University of California
    Inventors: Shimon Weiss, Marcel Bruchez, Paul Alivisatos
  • Publication number: 20110275169
    Abstract: A semiconductor nanocrystal compound and probe are described. The compound is capable of linking to one or more affinity molecules. The compound comprises (1) one or more semiconductor nanocrystals capable of, in response to exposure to a first energy, providing a second energy, and (2) one or more linking agents, having a first portion linked to the one or more semiconductor nanocrystals and a second portion capable of linking to one or more affinity molecules. One or more semiconductor nanocrystal compounds are linked to one or more affinity molecules to form a semiconductor nanocrystal probe capable of bonding with one or more detectable substances in a material being analyzed, and capable of, in response to exposure to a first energy, providing a second energy. Also described are processes for respectively: making the semiconductor nanocrystal compound; making the semiconductor nanocrystal probe; and treating materials with the probe.
    Type: Application
    Filed: April 29, 2011
    Publication date: November 10, 2011
    Inventors: Shimon Weiss, Marcel Bruchez, Paul Alivisatos
  • Patent number: 8026661
    Abstract: A multicolor electronic display is based on an array of luminescent semiconductor nanocrystals. Nanocrystals which emit light of different colors are grouped into pixels. The nanocrystals are optically pumped to produce a multicolor display. Different sized nanocrystals are used to produce the different colors. A variety of pixel addressing systems can be used.
    Type: Grant
    Filed: May 26, 2009
    Date of Patent: September 27, 2011
    Assignee: The Regents of The University of California
    Inventors: Shimon Weiss, Michael C. Schlamp, A. Paul Alivisatos
  • Patent number: 7998923
    Abstract: Particles are bioactivated by attaching bioactivation peptides to the particle surface. The bioactivation peptides are peptide-based compounds that impart one or more biologically important functions to the particles. Each bioactivation peptide includes a molecular or surface recognition part that binds with the surface of the particle and one or more functional parts. The surface recognition part includes an amino-end and a carboxy-end and is composed of one or more hydrophobic spacers and one or more binding clusters. The functional part(s) is attached to the surface recognition part at the amino-end and/or said carboxy-end.
    Type: Grant
    Filed: May 7, 2003
    Date of Patent: August 16, 2011
    Assignee: The Regents of the University of California
    Inventors: Fabien Pinaud, David King, Shimon Weiss
  • Publication number: 20110195126
    Abstract: A peptide-coated nanoparticle that includes a nanocrystal surrounded by a graded shell that is composed of at least two different semiconductor molecules. At least one peptide is attached to the surface of the graded shell to render the nanoparticle biocompatible. The nanocrystal core and graded shell are optionally annealed with ultra violet radiation prior to and/or after attachment of the peptide(s).
    Type: Application
    Filed: March 29, 2011
    Publication date: August 11, 2011
    Applicant: The Regents of the University of California
    Inventors: Shimon Weiss, James M. Tsay, Fabien Pinaud, Soren Doose
  • Patent number: 7943396
    Abstract: A peptide-coated nanoparticle that includes a nanocrystal core surrounded by a graded shell that is composed of at least two different semiconductor molecules. At least one peptide is attached to the surface of the graded shell to render the nanoparticle biocompatible. The nanocrystal core and graded shell are optionally annealed with ultra violet radiation prior to and/or after attachment of the peptide(s).
    Type: Grant
    Filed: June 20, 2005
    Date of Patent: May 17, 2011
    Assignee: The Regents of the University of California
    Inventors: Shimon Weiss, James M. Tsay, Fabien Pinaud, Soren Doose
  • Publication number: 20100267196
    Abstract: Nanocrystals that include a core/shell structure in which the a core of semiconductor material is coated with an inorganic capping agent. The nanocrystals are made by initially providing nanocrystal precursors that include a solubility agent which renders the precursors soluble in an organic solvent. The nanocrystal precursors are then coated with the inorganic capping agent in the presence of an organic solvent.
    Type: Application
    Filed: March 16, 2010
    Publication date: October 21, 2010
    Applicant: The Regents of the University of California
    Inventors: Shimon Weiss, James M. Tsay, Malte Pflughoefft
  • Publication number: 20100224853
    Abstract: A semiconductor nanocrystal compound and probe are described. The compound is capable of linking to one or more affinity molecules. The compound comprises (1) one or more semiconductor nanocrystals capable of, in response to exposure to a first energy, providing a second energy, and (2) one or more linking agents, having a first portion linked to the one or more semiconductor nanocrystals and a second portion capable of linking to one or more affinity molecules. One or more semiconductor nanocrystal compounds are linked to one or more affinity molecules to form a semiconductor nanocrystal probe capable of bonding with one or more detectable substances in a material being analyzed, and capable of, in response to exposure to a first energy, providing a second energy. Also described are processes for respectively: making the semiconductor nanocrystal compound; making the semiconductor nanocrystal probe; and treating materials with the probe.
    Type: Application
    Filed: March 20, 2009
    Publication date: September 9, 2010
    Inventors: Shimon Weiss, Marcel Bruchez, Paul Alivisatos
  • Publication number: 20100155668
    Abstract: A semiconductor nanocrystal compound and probe are described. The compound is capable of linking to one or more affinity molecules. The compound comprises (1) one or more semiconductor nanocrystals capable of, in response to exposure to a first energy, providing a second energy, and (2) one or more linking agents, having a first portion linked to the one or more semiconductor nanocrystals and a second portion capable of linking to one or more affinity molecules. One or more semiconductor nanocrystal compounds are linked to one or more affinity molecules to form a semiconductor nanocrystal probe capable of bonding with one or more detectable substances in a material being analyzed, and capable of, in response to exposure to a first energy, providing a second energy. Also described are processes for respectively: making the semiconductor nanocrystal compound; making the semiconductor nanocrystal probe; and treating materials with the probe.
    Type: Application
    Filed: February 26, 2010
    Publication date: June 24, 2010
    Inventors: Shimon Weiss, Marcel Bruchez, Paul Alivisatos
  • Patent number: 7696684
    Abstract: A multicolor electronic display is based on an array of luminescent semiconductor nanocrystals. Nanocrystals which emit light of different colors are grouped into pixels. The nanocrystals are optically pumped to produce a multicolor display. Different sized nanocrystals are used to produce the different colors. A variety of pixel addressing systems can be used.
    Type: Grant
    Filed: February 2, 2007
    Date of Patent: April 13, 2010
    Assignee: The Regents of the University of California
    Inventors: Shimon Weiss, Michael C. Schlamp, A. Paul Alivisatos
  • Publication number: 20100069616
    Abstract: Conjugates of a C-terminal modified diabody and a nanoparticle are provided in which the C-terminal modification introduces a cysteine residue at a C-terminus of the diabody and the diabody is covalently linked to the nanoparticle via a heterobiofunctional linker attached to the introduced cysteine residue.
    Type: Application
    Filed: August 6, 2009
    Publication date: March 18, 2010
    Applicant: The Regents of the University of California
    Inventors: Anna M. Wu, Shimon Weiss, Tove Olafsen, Fabien Florent Pinaud, Bhaswati Barat
  • Publication number: 20090253211
    Abstract: A semiconductor nanocrystal compound and probe are described. The compound is capable of linking to one or more affinity molecules. The compound comprises (1) one or more semiconductor nanocrystals capable of, in response to exposure to a first energy, providing a second energy, and (2) one or more linking agents, having a first portion linked to the one or more semiconductor nanocrystals and a second portion capable of linking to one or more affinity molecules. One or more semiconductor nanocrystal compounds are linked to one or more affinity molecules to form a semiconductor nanocrystal probe capable of bonding with one or more detectable substances in a material being analyzed, and capable of, in response to exposure to a first energy, providing a second energy. Also described are processes for respectively: making the semiconductor nanocrystal compound; making the semiconductor nanocrystal probe; and treating materials with the probe.
    Type: Application
    Filed: March 20, 2009
    Publication date: October 8, 2009
    Inventors: Shimon Weiss, Marcel Bruchez, Paul Alivisatos
  • Patent number: 7599059
    Abstract: A method for analyzing/monitoring the properties of species that are labeled with fluorophores. A detector is used to detect photons emitted from species that are labeled with one or more fluorophores and located in a confocal detection volume. The arrival time of each of the photons is determined. The interval of time between various photon pairs is then determined to provide photon pair intervals. The number of photons that have arrival times within the photon pair intervals is also determined. The photon pair intervals are then used in combination with the corresponding counts of intervening photons to analyze properties and interactions of the molecules including brightness, concentration, coincidence and transit time. The method can be used for analyzing single photon streams and multiple photon streams.
    Type: Grant
    Filed: July 25, 2003
    Date of Patent: October 6, 2009
    Assignee: The Regents of the University of California
    Inventors: Ted A. Laurence, Shimon Weiss
  • Publication number: 20090230412
    Abstract: A multicolor electronic display is based on an array of luminescent semiconductor nanocrystals. Nanocrystals which emit light of different colors are grouped into pixels. The nanocrystals are optically pumped to produce a multicolor display. Different sized nanocrystals are used to produce the different colors. A variety of pixel addressing systems can be used.
    Type: Application
    Filed: May 26, 2009
    Publication date: September 17, 2009
    Inventors: Shimon Weiss, Michael C. Schlamp, A. Paul Alivisatos
  • Publication number: 20090191567
    Abstract: A semiconductor nanocrystal compound and probe are described. The compound is capable of linking to one or more affinity molecules. The compound comprises (1) one or more semiconductor nanocrystals capable of, in response to exposure to a first energy, providing a second energy, and (2) one or more linking agents, having a first portion linked to the one or more semiconductor nanocrystals and a second portion capable of linking to one or more affinity molecules. One or more semiconductor nanocrystal compounds are linked to one or more affinity molecules to form a semiconductor nanocrystal probe capable of bonding with one or more detectable substances in a material being analyzed, and capable of, in response to exposure to a first energy, providing a second energy. Also described are processes for respectively: making the semiconductor nanocrystal compound; making the semiconductor nanocrystal probe; and treating materials with the probe.
    Type: Application
    Filed: March 18, 2009
    Publication date: July 30, 2009
    Inventors: SHIMON WEISS, Marcel Bruchez, Paul Alivisatos
  • Patent number: 7456954
    Abstract: Fluorescence, spectroscopy is used to analyze small numbers of molecules that are present in a relatively small detection volume or zone. Information regarding physical and chemical properties of these molecules is determined by rapidly modulating the wavelength, intensity and/or polarization of laser energy to excite fluorophores that are attached either to the molecule of interest or a molecule that interacts with the molecule of interest. The emission profile of the fluorophores is used to determine useful information about the labeled and/or non-labeled molecules including molecular interactions between the molecules.
    Type: Grant
    Filed: June 17, 2004
    Date of Patent: November 25, 2008
    Assignee: The Regents of the University of California
    Inventors: Shimon Weiss, Achillefs Kapanidis, Ted A. Laurence, Nam K. Lee
  • Publication number: 20080281079
    Abstract: Particles are bioactivated by attaching bioactivation peptides to the particle surface. The bioactivation peptides are peptide-based compounds that impart one or more biologically important functions to the particles. Each bioactivation peptide includes a molecular or surface recognition part that binds with the surface of the particle and one or more functional parts. The surface recognition part includes an amino-end and a carboxy-end and is composed of one or more hydrophobic spacers and one or more binding clusters. The functional part(s) is attached to the surface recognition part at the amino-end and/or said carboxy-end.
    Type: Application
    Filed: May 7, 2003
    Publication date: November 13, 2008
    Inventors: Fabien Pinaud, David King, Shimon Weiss