Patents Assigned to NEXDOT
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Patent number: 10822510Abstract: Disclosed is an ink including at least one particle including a first material; and at least one liquid vehicle; wherein the particle includes at least one particle including a second material and at least one nanoparticle dispersed in the second material; wherein the first material and the second material have an extinction coefficient less or equal to 15×10?5 at 460 nm. The invention also relates to inks, light emitting materials including at least one ink, patterns including at least one ink, particles deposited on a support, optoelectronic devices including at least one ink and method for depositing an ink on a support.Type: GrantFiled: June 1, 2018Date of Patent: November 3, 2020Assignee: NEXDOTInventors: Marc Pousthomis, Michele D'Amico, Alexis Kuntzmann, Yu-Pu Lin, Edgar Cao, Robin Faideau
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Publication number: 20200318255Abstract: A plurality of metal chalcogenide nanocrystals AnXm having an optical absorption feature above 12 ?m and having a size superior to 20 nm. The metal A is selected from Hg, Pb, Ag, Bi, Cd, Sn, Sb or a mixture thereof. The chalcogen X is selected from S, Se, Te or a mixture thereof. The subscripts n and m are independently a decimal number from 0 to 5 and are not simultaneously equal to 0. Also, a method for manufacturing the plurality of metal chalcogenide nanocrystals AnXm, a material, a photoabsorptive film, a photoconductor, photodetector, photodiode or phototransistor, a device, the use of the plurality of metal chalcogenide nanocrystals, and a reflective or transmission filter.Type: ApplicationFiled: October 4, 2018Publication date: October 8, 2020Applicant: NEXDOTInventors: Emmanuel LHUILLIER, Nicolas GOUBET, Amardeep JAGTAP, Clément LIVACHE, Yu-Pu LIN
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Patent number: 10642139Abstract: Disclosed is a color conversion layer including at least one light emitting material including at least one composite particle surrounded partially or totally by at least one surrounding medium; wherein the light emitting material is configured to emit light in response to an excitation and the at least one composite particle includes a plurality of nanoparticles encapsulated in an inorganic material; and wherein the inorganic material has a difference of refractive index compared to the at least one surrounding medium superior or equal to 0.02 at 450 nm. Also disclosed is an illumination source and a display apparatus.Type: GrantFiled: June 1, 2018Date of Patent: May 5, 2020Assignee: NEXDOTInventors: Marc Pousthomis, Michele D'Amico, Yu-Pu Lin
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Patent number: 10644175Abstract: A process of growth in the thickness of at least one facet of a colloidal inorganic sheet. By sheet is meant a structure having at least one dimension, the thickness, of nanometric size and lateral dimensions great compared to the thickness, typically more than 5 times the thickness. By homostructured is meant a material of homogeneous composition in the thickness and by heterostructured is meant a material of heterogeneous composition in the thickness. The process allows the deposition of at least one monolayer of atoms on at least one inorganic colloidal sheet, this monolayer being constituted of atoms of the type of those contained or not in the sheet. Homostructured and heterostructured materials resulting from such process as well as the applications of the materials are also described.Type: GrantFiled: May 1, 2017Date of Patent: May 5, 2020Assignee: NEXDOTInventor: Benoit Mahler
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Publication number: 20200131435Abstract: A method for obtaining at least one particle, including: (a) preparing solution A including at least one precursor of at least one of Si, B, P, Ge, As, Al, Fe, Ti, Zr, Ni, Zn, Ca, Na, Ba, K, Mg, Pb, Ag, V, Te, Mn, Ir, Sc, Nb, Sn, Ce, Be, Ta, S, Se, N, F, and Cl; (b) preparing aqueous solution B; (c) forming droplets of solution A; (d) forming droplets of solution B; (e) mixing droplets; (f) dispersing mixed droplets in a gas flow; (g) heating dispersed droplets to obtain the at least one particle; (h) cooling the at least one particle; and (i) separating and collecting the at least one particle. The aqueous solution is acidic, neutral, or basic. In step (a) and/or step (b) at least one colloidal suspension of a plurality of nanoparticles is mixed with the solution. Also, a device for implementing the method.Type: ApplicationFiled: June 1, 2018Publication date: April 30, 2020Applicant: NEXDOTInventors: Marc POUSTHOMIS, Michele D'AMICO, Alexis KUNTZMANN, Yu-Pu LIN
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Patent number: 10490624Abstract: A process for manufacturing colloidal nanosheet, by lateral growth, on an initial colloidal nanocrystal, of a crystalline semiconductor material represented by the formula MnXy, where M is a transition metal and X a chalcogen. The process includes the following steps: The preparation of a first organic solution, non or barely coordinating used as a synthesis solvent and including at least one initial colloidal nanocrystal; The preparation of a second organic solution including precursors of M and X, and including an acetate salt. And the slow introduction over a predetermined time scale of a predetermined amount of the second solution in a predetermined amount of the first solution, at a predetermined temperature for the growth of nanosheets. The use of the obtained material is also presented.Type: GrantFiled: October 24, 2011Date of Patent: November 26, 2019Assignee: NEXDOTInventors: Benoit Mahler, Sandrine Ithurria
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Patent number: 10475594Abstract: An electronic device includes a substrate and at least two electrodes spaced by a nanogap, wherein the at least two electrodes are bridged by at least one nanoparticle and wherein the at least one nanoparticle has an overlap area with the at least two electrodes higher than 2% of the area of the at least one nanoparticle. A method of manufacturing of the electronic device and the use of the electronic device in photodetector, transistor, phototransistor, optical modulator, electrical diode, photovoltaic cell or electroluminescent component are also described.Type: GrantFiled: April 22, 2014Date of Patent: November 12, 2019Assignees: NEXDOT, FONDS DE L'ESPCI—GEORGES CHARPAKInventors: Emmanuel Lhullier, Benoit Dubertret
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Patent number: 10465030Abstract: Disclosed are functionalizable ligands, nanoparticles, preferably nanocrystals, complexed with ligands and their use for bio-imaging. A nano material includes a nanoparticle and at least one copolymer ligand. A ligand which is a copolymer of general formula (I): H—P[(A)x-co-(B)y]n-L-R.Type: GrantFiled: December 4, 2014Date of Patent: November 5, 2019Assignee: NEXDOTInventors: Brice Nadal, Chloe Grazon, Stephanie Deville
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Publication number: 20190264101Abstract: A composite particle including a core and a shell, wherein the core has at least one inorganic nanoparticle and the shell is made of vitrified glass, methods for obtaining thereof and uses thereof. The uses include a film having a host material and at least one composite particle and an optoelectronic devise including at least one composite particle or the film.Type: ApplicationFiled: October 27, 2017Publication date: August 29, 2019Applicant: NEXDOTInventors: Marc POUSTHOMIS, Michele D'AMICO
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Patent number: 10253415Abstract: A process of growth in the thickness of at least one facet of a colloidal inorganic sheet, by sheet is meant a structure having at least one dimension, the thickness, of nanometric size and lateral dimensions great compared to the thickness, typically more than 5 times the thickness. The process allows the deposition of at least one monolayer of atoms on at least one inorganic colloidal sheet, this monolayer being constituted of atoms of the type of those contained or not in the sheet. Homostructured and heterostructured materials resulting from such process as well as the applications of the materials are also described. By homostructured is meant a material of homogeneous composition in the thickness and by heterostructured is meant a material of heterogeneous composition in the thickness.Type: GrantFiled: October 19, 2012Date of Patent: April 9, 2019Assignee: NEXDOTInventor: Benoit Mahler
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Patent number: 10233291Abstract: The present invention relates to ligands, nanocrystal complexed with the ligands and their use for bio-imaging.Type: GrantFiled: June 7, 2013Date of Patent: March 19, 2019Assignees: NEXDOT, FONDS DE L'ESPCI-GEORGES CHARPAKInventors: Nicolas Lequeux, Thomas Pons, Emerson Giovanelli
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Patent number: 9963633Abstract: A colloidal material including semiconductor nanocrystals of formula AnXm, wherein A is selected from group Ib, IIa, IIb, IIIa, IIIb, IVa, IVb, Va, Vb, VIb, VIIb, VIII, IIb, III, IV or mixtures thereof, X is selected from group Va, VIa, VIIa or mixtures thereof, and n and m are independently a decimal number from 0 to 5. The semiconductor nanocrystals have a quasi 2D structure, wherein the smallest dimension is smaller than the other two dimensions by a factor of at least 1.5 and the faces substantially normal to the smallest dimension consist either of A or X. Also, a semiconducting thin film, an optoelectronic device, a laser, a photovoltaic cell, a diode, a light emitting diode or a display including the colloidal material.Type: GrantFiled: December 19, 2014Date of Patent: May 8, 2018Assignee: NEXDOTInventors: Benoit Dubertret, Sandrine Ithurria
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Patent number: 9958137Abstract: A device that emits light in response to an electrical or optical excitation, such as LEDs, displays, e-readers, device includes at least one anisotropic flat colloidal semiconductor nanocrystal whose smallest dimension, namely the thickness, is smaller than the other two by a factor of at least 1.5, the emitted light having an intensity and a polarization that vary according to the angle formed by the light emitting direction and the normal to the largest surface of the flat nanocrystal. The device allows to realize a light-emitting device exhibiting simultaneously a high emission spectral finesse and allows proper control of the wavelength, the directivity and/or polarization of the emitted light, and thus increases the brightness and color gamut of displays composed of such a device. Such devices are found for example in displays, televisions, mobile phones, tablets, or computers. The various embodiments of these devices are also presented.Type: GrantFiled: August 5, 2016Date of Patent: May 1, 2018Assignee: NEXDOTInventors: Benoit Mahler, Thomas Pons, Elsa Cassette
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Patent number: 9670062Abstract: A process of growth in the thickness of at least one facet of a colloidal inorganic sheet. By sheet is meant a structure having at least one dimension, the thickness, of nanometric size and lateral dimensions great compared to the thickness, typically more than 5 times the thickness. By homostructured is meant a material of homogeneous composition in the thickness and by heterostructured is meant a material of heterogeneous composition in the thickness. The process allows the deposition of at least one monolayer of atoms on at least one inorganic colloidal sheet, this monolayer being constituted of atoms of the type of those contained or not in the sheet. Homostructured and heterostructured materials resulting from such process as well as the applications of the materials are also described.Type: GrantFiled: October 19, 2012Date of Patent: June 6, 2017Assignee: NEXDOTInventor: Benoit Mahler
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Patent number: 9447927Abstract: A device that emits light in response to an electrical or optical excitation, such as LEDs, displays, e-readers, device includes at least one anisotropic flat colloidal semiconductor nanocrystal whose smallest dimension, namely the thickness, is smaller than the other two by a factor of at least 1.5, the emitted light having an intensity and a polarization that vary according to the angle formed by the light emitting direction and the normal to the largest surface of the flat nanocrystal. The device allows to realize a light-emitting device exhibiting simultaneously a high emission spectral finesse and allows proper control of the wavelength, the directivity and/or polarization of the emitted light, and thus increases the brightness and color gamut of displays composed of such a device. Such devices are found for example in displays, televisions, mobile phones, tablets, or computers. The various embodiments of these devices are also presented.Type: GrantFiled: July 11, 2014Date of Patent: September 20, 2016Assignee: NEXDOTInventors: Benoit Mahler, Thomas Pons, Elsa Cassette
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Publication number: 20150303256Abstract: An electronic device includes a substrate and at least two electrodes spaced by a nanogap, wherein the at least two electrodes are bridged by at least one nanoparticle and wherein the at least one nanoparticle has an overlap area with the at least two electrodes higher than 2% of the area of the at least one nanoparticle. A method of manufacturing of the electronic device and the use of the electronic device in photodetector, transistor, phototransistor, optical modulator, electrical diode, photovoltaic cell or electroluminescent component are also described.Type: ApplicationFiled: April 22, 2014Publication date: October 22, 2015Applicants: NEXDOT, FONDS DE L'ESPCI - GEORGES CHARPAKInventors: Benoit DUBERTRET, Emmanuel LHUILLIER
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Publication number: 20150183939Abstract: The present invention relates to ligands, nanocrystal complexed with the ligands and their use for bio-imaging.Type: ApplicationFiled: June 7, 2013Publication date: July 2, 2015Applicants: FONDS DE L'ESPCI - GEORGES CHARPAK, NEXDOTInventors: Nicolas Lequeux, Thomas Pons, Emerson Giovanelli
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Patent number: 9011715Abstract: A colloidal material and a process for manufacturing it and uses of the colloidal material for manufacturing optic devices. The colloidal material is of formula AnXm, wherein A is an element selected from groups II, III or IV of the periodic table; X is a metal selected from groups V or VI; and in the selection of the pair (A, X), the groups of the periodic table of A and X, respectively, are selected from the following combinations: (group II, group VI), (group III, group V) or (group IV, group VI); and n and m are such that AnXm is a neutral compound. The colloidal compound may be CdS, InP, or PbS. The process includes a step of solution phase decomposition of a mixture of X and a carboxylate of formula A(R—COO)p in the presence of a non- or weakly-coordinating solvent, and injecting an acetate salt or acetic acid in the mixture; wherein p is an integer between 1 and 2; R is a linear or branched C1-30alkyl group.Type: GrantFiled: September 10, 2009Date of Patent: April 21, 2015Assignee: NexdotInventors: Benoit Dubertret, Sandrine Ithurria
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Publication number: 20140367721Abstract: A device that emits light in response to an electrical or optical excitation, such as LEDs, displays, e-readers, device includes at least one anisotropic flat colloidal semiconductor nanocrystal whose smallest dimension, namely the thickness, is smaller than the other two by a factor of at least 1.5, the emitted light having an intensity and a polarization that vary according to the angle formed by the light emitting direction and the normal to the largest surface of the flat nanocrystal. The device allows to realize a light-emitting device exhibiting simultaneously a high emission spectral finesse and allows proper control of the wavelength, the directivity and/or polarization of the emitted light, and thus increases the brightness and color gamut of displays composed of such a device. Such devices are found for example in displays, televisions, mobile phones, tablets, or computers. The various embodiments of these devices are also presented.Type: ApplicationFiled: July 11, 2014Publication date: December 18, 2014Applicant: NEXDOTInventors: Benoit MAHLER, Thomas PONS, Elsa CASSETTE
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Publication number: 20140287237Abstract: A process of growth in the thickness of at least one facet of a colloidal inorganic sheet. By sheet is meant a structure having at least one dimension, the thickness, of nanometric size and lateral dimensions great compared to the thickness, typically more than 5 times the thickness. By homostructured is meant a material of homogeneous composition in the thickness and by heterostructured is meant a material of heterogeneous composition in the thickness. The process allows the deposition of at least one monolayer of atoms on at least one inorganic colloidal sheet, this monolayer being constituted of atoms of the type of those contained or not in the sheet. Homostructured and heterostructured materials resulting from such process as well as the applications of the materials are also described.Type: ApplicationFiled: October 19, 2012Publication date: September 25, 2014Applicant: NEXDOTInventor: Benoit Mahler