Nanostructure enhanced luminescent devices

Compositions – Chemiluminescent

Reexamination Certificate

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C362S034000, C446S219000

Reexamination Certificate

active

07919019

ABSTRACT:
The present invention relates to nanostructures for use in luminescent devices.

REFERENCES:
patent: 3974368 (1976-08-01), Rauhut
patent: 4598044 (1986-07-01), Kricka et al.
patent: 4678608 (1987-07-01), Dugliss
patent: 4729950 (1988-03-01), Kricka et al.
patent: 4857652 (1989-08-01), Schaap
patent: 4931223 (1990-06-01), Bronstein et al.
patent: 4952707 (1990-08-01), Edwards et al.
patent: 4978614 (1990-12-01), Bronstein
patent: 5043266 (1991-08-01), Dewar et al.
patent: 5089630 (1992-02-01), Bronstein et al.
patent: 5112960 (1992-05-01), Bronstein et al.
patent: 5145772 (1992-09-01), Voyta et al.
patent: 5208143 (1993-05-01), Henderson et al.
patent: 5306621 (1994-04-01), Kricka
patent: 5523212 (1996-06-01), Akhavan-Tafti et al.
patent: 5538847 (1996-07-01), Bronstein et al.
patent: 5547836 (1996-08-01), Bronstein et al.
patent: 5552298 (1996-09-01), Akhavan-Tafti
patent: 5578523 (1996-11-01), Fiordalice et al.
patent: 5601977 (1997-02-01), Akhavan-Tafti et al.
patent: 5624809 (1997-04-01), Skold et al.
patent: 5629168 (1997-05-01), Kricka
patent: 5670644 (1997-09-01), Akhavan-Tafti et al.
patent: 5686258 (1997-11-01), Akhavan-Tafti et al.
patent: 5723295 (1998-03-01), Akhavan-Tafti et al.
patent: 5750698 (1998-05-01), Akhavan-Tafti et al.
patent: 5772926 (1998-06-01), Akhavan-Tafti
patent: 5827650 (1998-10-01), Bronstein et al.
patent: 5840963 (1998-11-01), Akhavan-Tafti
patent: 5849495 (1998-12-01), Bronstein et al.
patent: 5866045 (1999-02-01), Akhavan-Tafti et al.
patent: 5879894 (1999-03-01), Law et al.
patent: 5886238 (1999-03-01), Schaap et al.
patent: 5892064 (1999-04-01), Schaap et al.
patent: 5922558 (1999-07-01), Akhavan-Tafti
patent: 5938313 (1999-08-01), Fujita
patent: 5965736 (1999-10-01), Akhavan-Tafti
patent: 6045991 (2000-04-01), Akhavan-Tafti
patent: 6126870 (2000-10-01), Akhavan-Tafti
patent: 6132956 (2000-10-01), Bronstein et al.
patent: 6139782 (2000-10-01), Akhavan-Tafti et al.
patent: 6180833 (2001-01-01), Thakur
patent: 6218137 (2001-04-01), Akhavan-Tafti et al.
patent: 6245928 (2001-06-01), Arghavani et al.
patent: 6270695 (2001-08-01), Akhavan-Tafti et al.
patent: 6284899 (2001-09-01), Schaap et al.
patent: 6287767 (2001-09-01), Bronstein et al.
patent: 6296787 (2001-10-01), Akhavan-Tafti et al.
patent: 6306610 (2001-10-01), Bawendi et al.
patent: 6346615 (2002-02-01), Bronstein et al.
patent: 6353129 (2002-03-01), Akhavan-Tafti et al.
patent: 6362011 (2002-03-01), Massey et al.
patent: 6410732 (2002-06-01), Akhavan-Tafti et al.
patent: 6410751 (2002-06-01), Akhavan-Tafti et al.
patent: 6593085 (2003-07-01), Barnett et al.
patent: 6635437 (2003-10-01), Akhavan-Tafti et al.
patent: 6685331 (2004-02-01), Rockwell
patent: 6696569 (2004-02-01), Akhavan-Tafti et al.
patent: 6776495 (2004-08-01), Nomiyama
patent: 2002/0127623 (2002-09-01), Minshull et al.
patent: 2002/0132364 (2002-09-01), Olesen et al.
patent: 2003/0077599 (2003-04-01), Sogard et al.
patent: 2003/0155560 (2003-08-01), Palmer et al.
patent: 2005/0118603 (2005-06-01), Chun et al.
patent: 2007/0187239 (2007-08-01), Weiller et al.
patent: 2009/0196826 (2009-08-01), Gao et al.
patent: 2009/0263914 (2009-10-01), Pettersson et al.
patent: 2010/0285972 (2010-11-01), Dubrow et al.
patent: WO 03/080756 (2003-10-01), None
Yin et al., “4-(Dimethylamino)butyric acid labeling for electrochemiluminescence detection of biological substances by increasing sensitivity with gold nanoparticle amplification”, Anal Chem, Jun. 1, 2005, 77(11), 3525-3530.
Martin, C.R., Nanomaterials: A Mebrane-Based Synthetic Approach, Science, 1994, 266, 1961-1966.
Hulteen et al., “A general template-based method for the preparation of nanomaterials,” J. Mater. Chem., 1997, 7, 1075-1087.
Cepak, V.M. et al., “Fabrication and characterization of concentric-tubular composite micro- and nanostructures using the template-synthesis method,” J. Mater. Res.., 1998, 13, 3070-3080.
Nicewarner, S.R. et al., “Submicrometer Mettalic Barcodes,” Science, 2001, 294, 137-141.
Mitchell, D.T. et al., “Smart Nanotubes for Bioseparations and Biocatalysis,” J. Am. Chem. Soc., 2002, 124, 11864-5.
Whitesides, G.M. et al., “Molecular Self-Assembly and Nanochemistry: A Chemical Strategy for the Synthesis of Nanostructures,” Science, Nov. 29, 1991, 254(5036), 1312-1319.
Grumelard, J. et al., “Soft nanotubes from amphiphillic ABA tribloc macromonomers,” Chem. Commun., 2004, 13, 1462-3.
Ghadiri, M.R. et al., “Self-assembling organic nanotubes based on a cyclic peptide architecture,” Nature, 1993, 366, 424-7.
Colquoun, H.M. et al., “Microfabrication of High-performance aromatic polymers as nanotubes or fibrils by in situ ring-opening polymerization of macrocyclic precursors,” J. Mater. Chem., 2003, 13, 1504-1506.
Chen et al., “Noncovalent Sidcwall Functionalization of Single-Walled Carbon Nanotubes for Protein Immobilization,” J. Am. Chem. Soc., 2001, 123, 3838-9.
Baskaran, D. et al., “Polymer-Grafted Multiwalled Carbon Nanotubes through Surface-Initiated Polymerization,” Agnew Chem. Int., 2004, 43, 2138-2142.
Chen, et al., “Solution Properties of Single-Walled Carbon Nanotubes,” Science, 1998, 282(5386), 95-98.
Ya-Ping Sun et al., “Functionalized Carbon Nanotubes: Properties and Applications,” Acc. Chem. Res., 2002, 35, 1096-1104.
Azamian et al., “Bioelectrochemical Single-Walled Carbon Nanotubes,” J. Am. Chem. Soc., 2002, 124, 12664-5.
Erlanger, B.F. et al., “Binding of an Anti-Fullerene IgG Monclonal Antibody to Single Wall Carbon Nanotubes,” Nano Letts, 2001, 1, 465-7.
Shim, M. et al., “Functionalization of Carbon Nanotubes for Biocompatibility and Biomolecular Recognition,” Nano Letts, 2002, 2, 285-282.
Wang et al., “Ultrasensitive Electrical Biosensing of proteins an DNA: Carbon-nanotube derived amplification of the recognition and transduction events,” J. Am. Chem. Soc., 2004, 126, 3010-1.
Wong, S. S. et al., Covalently functionalized nanotubes as nanometer-sized probes in chemistry and biology, Nature, 1998, 394, 52-55.
Lee et al., “Antibody-Based Bio-Nanotube Membranes for Enantiomeric Drug Separations,” Science, Jun. 21, 2002, 296, 2198-2200.
Martinek, K. et al., “Micellar enzymology,” Eur. J. Biochem., 1986, 155, 453-68.
Kricka, L.J. et al., “Effect of Solvents on the Catalytic Activity of Firefly Luciferase,”, Arch. Biophys., 1982, 217, 674-80.
Ward, W.W. et al., “Extraction of Renilla-Type Luciferin from the Calcium-Activated Photoproteins Aequorin, Mnemiopsin, and Berovin,” Proc. Natl. Acad. Sci. USA, Jul. 1975, 72(7), 2530-2534.

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