Patents by Inventor Patrizio Candeloro
Patrizio Candeloro 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).
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Publication number: 20230235260Abstract: A microfluidic device for cell culture and screening, including a covering element with a plurality of openings configured for introducing and collecting fluids, and a central through hole; an intermediate element with a plurality of microchannels, a plurality of supply tanks and at least one waste tank, and a blind bottom cavity; a lower element, with a collecting tank and a recessed central portion; and a slide housed in a housing pocket. The intermediate element is interposed between the covering element and the lower element to form an upper optical window and at least one culture chamber. The plurality of microchannels puts in fluid communication the plurality of supply tanks, the at least one culture chamber and the waste tank.Type: ApplicationFiled: June 17, 2021Publication date: July 27, 2023Applicants: UNIVERSITA' DEGLI STUDI MAGNA GRAECIA DI CATANZARO, UNIVERSITY OF BERNInventors: Gerardo PEROZZIELLO, Francesco GUZZI, Elvira PARROTTA, Giovanni CUDA, Maria Laura COLUCCIO, Patrizio CANDELORO, Gina VALENTINO, Paola LUCIANI
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Patent number: 10048211Abstract: A device for detecting an analyte in a sample comprising: an array including a plurality of pixels, each pixel including a nanochain comprising: a first nanostructure, a second nanostructure, and a third nanostructure, wherein size of the first nanostructure is larger than that of the second nanostructure, and size of the second nanostructure is larger than that of the third nanostructure, and wherein the first nanostructure, the second nanostructure, and the third nanostructure are positioned on a substrate such that when the nanochain is excited by an energy, an optical field between the second nanostructure and the third nanostructure is stronger than an optical field between the first nanostructure and the second nanostructure, wherein the array is configured to receive a sample; and a detector arranged to collect spectral data from a plurality of pixels of the array.Type: GrantFiled: November 20, 2017Date of Patent: August 14, 2018Assignee: King Abdullah University of Science and TechnologyInventors: Enzo Di Fabrizio, Andrea Fratalocchi, Juan Sebastian Totero Gongora, Maria Laura Coluccio, Patrizio Candeloro, Gianni Cuda
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Publication number: 20180120233Abstract: A device for detecting an analyte in a sample comprising: an array including a plurality of pixels, each pixel including a nanochain comprising: a first nanostructure, a second nanostructure, and a third nanostructure, wherein size of the first nanostructure is larger than that of the second nanostructure, and size of the second nanostructure is larger than that of the third nanostructure, and wherein the first nanostructure, the second nanostructure, and the third nanostructure are positioned on a substrate such that when the nanochain is excited by an energy, an optical field between the second nanostructure and the third nanostructure is stronger than an optical field between the first nanostructure and the second nanostructure, wherein the array is configured to receive a sample; and a detector arranged to collect spectral data from a plurality of pixels of the array.Type: ApplicationFiled: November 20, 2017Publication date: May 3, 2018Applicant: King Abdullah University of Science and TechnologyInventors: Enzo Di Fabrizio, Andrea Fratalocchi, Juan Sebastian Totero Gongora, Maria Laura Coluccio, Patrizio Candeloro, Gianni Cuda
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Patent number: 9835561Abstract: A device for detecting an analyte in a sample comprising: an array including a plurality of pixels, each pixel including a nanochain comprising: a first nanostructure, a second nanostructure, and a third nanostructure, wherein size of the first nanostructure is larger than that of the second nanostructure, and size of the second nanostructure is larger than that of the third nanostructure, and wherein the first nanostructure, the second nanostructure, and the third nanostructure are positioned on a substrate such that when the nanochain is excited by an energy, an optical field between the second nanostructure and the third nanostructure is stronger than an optical field between the first nanostructure and the second nanostructure, wherein the array is configured to receive a sample; and a detector arranged to collect spectral data from a plurality of pixels of the array.Type: GrantFiled: December 23, 2014Date of Patent: December 5, 2017Assignee: KING ABDULLAH UNIVERSITY OF SCIENCE AND TECHNOLOGYInventors: Enzo Di Fabrizio, Andrea Fratalocchi, Juan Sebastian Totero Gongora, Maria Laura Coluccio, Patrizio Candeloro, Gianni Cuda
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Publication number: 20160327486Abstract: A device for detecting an analyte in a sample comprising: an array including a plurality of pixels, each pixel including a nanochain comprising: a first nanostructure, a second nanostructure, and a third nanostructure, wherein size of the first nanostructure is larger than that of the second nanostructure, and size of the second nanostructure is larger than that of the third nanostructure, and wherein the first nanostructure, the second nanostructure, and the third nanostructure are positioned on a substrate such that when the nanochain is excited by an energy, an optical field between the second nanostructure and the third nanostructure is stronger than an optical field between the first nanostructure and the second nanostructure, wherein the array is configured to receive a sample; and a detector arranged to collect spectral data from a plurality of pixels of the array.Type: ApplicationFiled: December 23, 2014Publication date: November 10, 2016Applicant: KING ABDULLAH UNIVERSITY OF SCIENCE AND TECHNOLOGYInventors: Enzo Di Fabrizio, Andrea Fratalocchi, Juan Sebastian Totero Gongora, Maria Laura Coluccio, Patrizio Candeloro, Gianni Cuda
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Publication number: 20120045578Abstract: A method for manufacturing a photonic crystal device provided with a plasmonic waveguide includes: preparing a membrane; applying, in a programmed manner, a focused ion beam on the membrane, in a manner such as to obtain a photonic crystal made up by a regular planar arrangement of through holes positioned according to a preset lattice and also comprising a resonant cavity. The method also provides a conic plasmonic waveguide at the resonant cavity, through chemical vapour deposition induced by a focused electron beam. The focused electron beam that induces la deposition is controlled in such a manner to gradually reduce the transverse section of the electron beam starting from the base up to the tip of the projecting structure, maintaining the position of the electron beam constant.Type: ApplicationFiled: September 22, 2009Publication date: February 23, 2012Applicant: CALMED S.r.l.Inventors: Enzo Mario Di Fabrizio, Francesco De Angelis, Gobind Das, Federico Mecarini, Patrizio Candeloro, Carlo Liberale
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Publication number: 20110265305Abstract: Method for manufacturing an optical detection device includes producing metal nanospheres on a substrate (2). The process also includes the following operations: producing (100) on the substrate (2) lithographic nanostructures (4a, 4b, 4c) capable of receiving the metal nanospheres,—performing (102) a self-aggregative deposition of at least one metal in such a way as to create a respective metal nanosphere in each lithographic nanostructure (4a, 4b, 4c).Type: ApplicationFiled: December 31, 2009Publication date: November 3, 2011Applicant: CALMED S.r.l.Inventors: Enzo Mario Di Fabrizio, Maria Laura Coluccio, Federico Mecarini, Francesco De Angelis, Gobind Das, Patrizio Candeloro, Giovanni Cuda