Patents by Inventor Dimos Poulikakos
Dimos Poulikakos 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: 20230286016Abstract: A method for applying a composite coating on a substrate, the method including a step of applying a suspension onto the substrate, wherein said suspension comprises a solvent, polytetrafluorethylene micro particles and carbon nanofibers; and a step of thermal annealing of the substrate.Type: ApplicationFiled: July 26, 2021Publication date: September 14, 2023Inventors: Dimos POULIKAKOS, Chander SHARMA, Athanasios MILIONIS, Matteo DONATI, Cheuk Wing Edmond LAM, Abinash TRIPATHY
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Patent number: 11648103Abstract: The invention relates to an artificial vascular graft comprising a primary scaffold structure encompassing an inner space of the artificial vascular graft, said primary scaffold structure having an inner surface facing towards said inner space and an outer surface facing away from said inner space, a coating on said inner surface, wherein a plurality of grooves is comprised in said coating of said inner surface. The primary scaffold structure comprises further a coating on said outer surface. The primary scaffold structure and the coating on said inner surface and on said outer surface are d designed in such a way that cells, in particular progenitor cells, can migrate from the periphery of said artificial vascular graft through said outer surface of said coating, said primary scaffold structure and said inner surface to said inner space, if the artificial vascular graft is used as intended. The invention relates further to a method for providing said graft.Type: GrantFiled: December 11, 2018Date of Patent: May 16, 2023Assignee: UNIVERSITÄTSSPITAL BASELInventors: Bernhard Winkler, Martin Grapow, Friedrich Eckstein, Aldo Ferrari, Dimos Poulikakos, Simone Bottan, Maximilian Fischer, Tobias Lendenmann
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Patent number: 11060781Abstract: A method for solidifying a polar substance, in particular water, is presented which comprises the steps of: providing a coolable, hydrophobic, preferably super-hydrophobic, condensation surface within an interior of a container; partially filling the container with a polar substance, preferably in liquid form, and an immiscible additive, preferably in liquid form, so that the condensation surface remains at least partially unsubmerged; cooling the hydrophobic condensation surface to a temperature Tcond below a solidification temperature Tsolid of the polar substance; and removing solidified polar substance from the container.Type: GrantFiled: February 28, 2017Date of Patent: July 13, 2021Assignee: ABB Schweiz AGInventors: Jaroslav Hemrle, Christos Stamatopoulos, Dimos Poulikakos, Tanmoy Maitra
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Patent number: 10933629Abstract: A method of printing a print pattern onto a substrate with a print head comprises a plurality of nozzles, where the print head has a rectangular active print head area which includes all of the nozzles. The active print head area is delimited by four sides defining a primary and a secondary direction. The method comprises i) decomposing the print pattern into a plurality of print pattern segments that have dimensions along the primary and secondary direction which are smaller than the dimensions of the active print head area along the primary and secondary direction; ii) assigning each print pattern segment to exactly one nozzle; iii) causing each nozzle to print the print pattern segment assigned to said nozzle. The print head is moved during printing of each print pattern segment within an area that is smaller than said active print head area.Type: GrantFiled: July 23, 2019Date of Patent: March 2, 2021Assignee: ETH ZURICHInventors: Dimos Poulikakos, Julian Schneider, Patrick Galliker
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Patent number: 10556428Abstract: The present invention contains a printing apparatus and a method, e.g., for ejecting inks (i.e., pure liquids, mixtures, colloids, etc.) for a very broad range of physical properties (such as viscosity). Acoustic forces 3a may be generated by an emitter 1 and a reflector 2 to detach droplets 10 from a nozzle 6. The ink may be advanced through the nozzle 6 by a standard back pressure system 5. A reflectorless chamber 7 may enhance acoustic forces 8a and the droplets 10 may be ejected at a bottom 9 of said chamber 7, so that droplets 10 may be deposited on any substrate 11.Type: GrantFiled: February 5, 2019Date of Patent: February 11, 2020Assignee: President and Fellows of Harvard CollegeInventors: Daniele Foresti, Dimos Poulikakos, Manish Kumar Tiwari
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Patent number: 10518527Abstract: A method of printing a print pattern onto a substrate with a print head comprises a plurality of nozzles, where the print head has a rectangular active print head area which includes all of the nozzles. The active print head area is delimited by four sides defining a primary and a secondary direction. The method comprises i) decomposing the print pattern into a plurality of print pattern segments that have dimensions along the primary and secondary direction which are smaller than the dimensions of the active print head area along the primary and secondary direction; ii) assigning each print pattern segment to exactly one nozzle; iii) causing each nozzle to print the print pattern segment assigned to said nozzle. The print head is moved during printing of each print pattern segment within an area that is smaller than said active print head area.Type: GrantFiled: April 20, 2016Date of Patent: December 31, 2019Assignee: ETH ZURICHInventors: Dimos Poulikakos, Julian Schneider, Patrick Galliker
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Publication number: 20190344561Abstract: A method of printing a print pattern onto a substrate with a print head comprises a plurality of nozzles, where the print head has a rectangular active print head area which includes all of the nozzles. The active print head area is delimited by four sides defining a primary and a secondary direction. The method comprises i) decomposing the print pattern into a plurality of print pattern segments that have dimensions along the primary and secondary direction which are smaller than the dimensions of the active print head area along the primary and secondary direction; ii) assigning each print pattern segment to exactly one nozzle; iii) causing each nozzle to print the print pattern segment assigned to said nozzle. The print head is moved during printing of each print pattern segment within an area that is smaller than said active print head area.Type: ApplicationFiled: July 23, 2019Publication date: November 14, 2019Applicant: ETH ZURICHInventors: Dimos POULIKAKOS, Julian SCHNEIDER, Patrick GALLINKER
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Publication number: 20190240976Abstract: The present invention contains a printing apparatus and a method, e.g., for ejecting inks (i.e., pure liquids, mixtures, colloids, etc.) for a very broad range of physical properties (such as viscosity). Acoustic forces 3a may be generated by an emitter 1 and a reflector 2 to detach droplets 10 from a nozzle 6. The ink may be advanced through the nozzle 6 by a standard back pressure system 5. A reflectorless chamber 7 may enhance acoustic forces 8a and the droplets 10 may be ejected at a bottom 9 of said chamber 7, so that droplets 10 may be deposited on any substrate 11.Type: ApplicationFiled: February 5, 2019Publication date: August 8, 2019Applicant: President and Fellows of Harvard CollegeInventors: Daniele Foresti, Dimos Poulikakos, Manish Kumar Tiwari
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Patent number: 10336071Abstract: A print head (1) for depositing a liquid on a substrate comprises a layer structure including a stop layer (5) made of a dielectric material, an electrically conducting device layer (6), and an insulator layer (7) made of a dielectric material. A nozzle (3) is formed in the layer structure. The nozzle has a nozzle opening (34) for ejecting the liquid. A ring trench (31) is formed around the nozzle. The nozzle opening and the ring trench are radially separated by an annular nozzle wall (32). An ejection channel (37) is formed adjacent to the ring trench along the direction of ejection. An extraction electrode (8) is arranged on the insulator layer (7) and surrounds the nozzle.Type: GrantFiled: January 28, 2016Date of Patent: July 2, 2019Assignee: ETH ZURICHInventors: Dimos Poulikakos, Julian Schneider, Patrick Galliker
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Publication number: 20190159880Abstract: The invention relates to an artificial vascular graft comprising a primary scaffold structure encompassing an inner space of the artificial vascular graft, said primary scaffold structure having an inner surface facing towards said inner space and an outer surface facing away from said inner space, a coating on said inner surface, wherein a plurality of grooves is comprised in said coating of said inner surface. The primary scaffold structure comprises further a coating on said outer surface. The primary scaffold structure and the coating on said inner surface and on said outer surface are d designed in such a way that cells, in particular progenitor cells, can migrate from the periphery of said artificial vascular graft through said outer surface of said coating, said primary scaffold structure and said inner surface to said inner space, if the artificial vascular graft is used as intended. The invention relates further to a method for providing said graft.Type: ApplicationFiled: December 11, 2018Publication date: May 30, 2019Inventors: Bernhard WINKLER, Martin GRAPOW, Friedrich ECKSTEIN, Aldo FERRARI, Dimos POULIKAKOS, Simone BOTTAN, Maximilian FISCHER, Tobias LENDENMANN
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Patent number: 10214013Abstract: The present invention contains a printing apparatus and a method, e.g., for ejecting inks (i.e., pure liquids, mixtures, colloids, etc.) for a very broad range of physical properties (such as viscosity). Acoustic forces 3a may be generated by an emitter 1 and a reflector 2 to detach droplets 10 from a nozzle 6. The ink may be advanced through the nozzle 6 by a standard back pressure system 5. A reflectorless chamber 7 may enhance acoustic forces 8a and the droplets 10 may be ejected at a bottom 9 of said chamber 7, so that droplets 10 may be deposited on any substrate 11.Type: GrantFiled: December 14, 2017Date of Patent: February 26, 2019Assignee: PRESIDENT AND FELLOWS OF HARVARD COLLEGEInventors: Daniele Foresti, Dimos Poulikakos, Manish Kumar Tiwari
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Patent number: 10188499Abstract: The invention relates to an artificial vascular graft comprising a primary scaffold structure encompassing an inner space of the artificial vascular graft, said primary scaffold structure having an inner surface facing towards said inner space and an outer surface facing away from said inner space, a coating on said inner surface, wherein a plurality of grooves is comprised in said coating of said inner surface. The primary scaffold structure comprises further a coating on said outer surface. The primary scaffold structure and the coating on said inner surface and on said outer surface are d designed in such a way that cells, in particular progenitor cells, can migrate from the periphery of said artificial vascular graft through said outer surface of said coating, said primary scaffold structure and said inner surface to said inner space, if the artificial vascular graft is used as intended. The invention relates further to a method for providing said graft.Type: GrantFiled: September 18, 2014Date of Patent: January 29, 2019Assignee: UNIVERSITÄTSSPITAL BASELInventors: Bernhard Winkler, Martin Grapow, Friedrich Eckstein, Aldo Ferrari, Dimos Poulikakos, Simone Bottan, Maximilian Fischer, Tobias Lendenmann
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Patent number: 10173352Abstract: A method for the self-assembled production of a topographically surface structured cellulose element. First, a mold is provided having on one side a first surface which is in a complementary manner topographically structured and which is permeable to oxygen. Next, a liquid growth medium containing cellulose producing bacteria is provided. Then, the mold is placed to form a interface such that the side of the mold with the first surface is in direct contact with the liquid growth medium, and an opposite side is facing air or a specifically provided oxygen containing gas surrounding. This allows bacteria to be produced and deposit cellulose on the first surface and developing on the interface a surface structured surface complementary thereto, until a cellulose layer with a thickness of the element of at least 0.3 mm is formed. Finally; the element is removed from the mold.Type: GrantFiled: September 18, 2014Date of Patent: January 8, 2019Assignee: ETH ZURICHInventors: Tobias Lendenmann, Maximilian Fischer, Simone Bottan, Aldo Ferrari, Dimos Poulikakos, Bernhard Winkler, Martin Grapow
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Publication number: 20180117909Abstract: The present invention contains a printing apparatus and a method, e.g., for ejecting inks (i.e., pure liquids, mixtures, colloids, etc.) for a very broad range of physical properties (such as viscosity). Acoustic forces 3a may be generated by an emitter 1 and a reflector 2 to detach droplets 10 from a nozzle 6. The ink may be advanced through the nozzle 6 by a standard back pressure system 5. A reflectorless chamber 7 may enhance acoustic forces 8a and the droplets 10 may be ejected at a bottom 9 of said chamber 7, so that droplets 10 may be deposited on any substrate 11.Type: ApplicationFiled: December 14, 2017Publication date: May 3, 2018Applicant: President and Fellows of Harvard CollegeInventors: Daniele Foresti, Dimos Poulikakos, Manish Kumar Tiwari
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Publication number: 20180104947Abstract: A method of printing a print pattern onto a substrate with a print head comprises a plurality of nozzles, where the print head has a rectangular active print head area which includes all of the nozzles. The active print head area is delimited by four sides defining a primary and a secondary direction. The method comprises i) decomposing the print pattern into a plurality of print pattern segments that have dimensions along the primary and secondary direction which are smaller than the dimensions of the active print head area along the primary and secondary direction; ii) assigning each print pattern segment to exactly one nozzle; iii) causing each nozzle to print the print pattern segment assigned to said nozzle. The print head is moved during printing of each print pattern segment within an area that is smaller than said active print head area.Type: ApplicationFiled: April 20, 2016Publication date: April 19, 2018Applicant: ETH ZURICHInventors: Dimos POULIKAKOS, Julian SCHNEIDER, PATRICK GALLIKER
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Patent number: 9878536Abstract: The present invention contains a printing apparatus and a method, e.g., for ejecting inks (i.e. pure liquids, mixtures, colloids, etc.) for a very broad range of physical properties (such as viscosity). Acoustic forces 3a may be generated by an emitter 1 and a reflector 2 to detach droplets 10 from a nozzle 6. The ink may be advanced through the nozzle 6 by a standard back pressure system 5. A reflectorless chamber 7 may enhance acoustic forces 8a and the droplets 10 may be ejected at a bottom 9 of said chamber 7, so that droplets 10 may be deposited on any substrate 11.Type: GrantFiled: January 23, 2015Date of Patent: January 30, 2018Assignee: President and Fellows of Harvard CollegeInventors: Daniele Foresti, Dimos Poulikakos, Manish Kumar Tiwari
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Publication number: 20180009223Abstract: A print head (1) for depositing a liquid on a substrate comprises a layer structure including a stop layer (5) made of a dielectric material, an electrically conducting device layer (6), and an insulator layer (7) made of a dielectric material. A nozzle (3) is formed in the layer structure. The nozzle has a nozzle opening (34) for ejecting the liquid. A ring trench (31) is formed around the nozzle. The nozzle opening and the ring trench are radially separated by an annular nozzle wall (32). An ejection channel (37) is formed adjacent to the ring trench along the direction of ejection. An extraction electrode (8) is arranged on the insulator layer (7) and surrounds the nozzle.Type: ApplicationFiled: January 28, 2016Publication date: January 11, 2018Inventors: Dimos Poulikakos, Julian Schneider, Patrick Galliker
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Publication number: 20170167770Abstract: A method for solidifying a polar substance, in particular water, is presented which comprises the steps of: providing a coolable, hydrophobic, preferably super-hydrophobic, condensation surface within an interior of a container; partially filling the container with a polar substance, preferably in liquid form, and an immiscible additive, preferably in liquid form, so that the condensation surface remains at least partially unsubmerged; cooling the hydrophobic condensation surface to a temperature Tcond below a solidification temperature Tsolid of the polar substance; and removing solidified polar substance from the container.Type: ApplicationFiled: February 28, 2017Publication date: June 15, 2017Inventors: Jaroslav Hemrle, Christos Stamatopoulos, Dimos Poulikakos, Tanmoy Maitra
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Publication number: 20170001439Abstract: The present invention contains a printing apparatus and a method, e.g., for ejecting inks (i.e. pure liquids, mixtures, colloids, etc.) for a very broad range of physical properties (such as viscosity). Acoustic forces 3a may be generated by an emitter 1 and a reflector 2 to detach droplets 10 from a nozzle 6. The ink may be advanced through the nozzle 6 by a standard back pressure system 5. A reflectorless chamber 7 may enhance acoustic forces 8a and the droplets 10 may be ejected at a bottom 9 of said chamber 7, so that droplets 10 may be deposited on any substrate 11.Type: ApplicationFiled: January 23, 2015Publication date: January 5, 2017Inventors: Daniele Foresti, Dimos Poulikakos, Manish Kumar Tiwari
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Publication number: 20160228233Abstract: The invention relates to an artificial vascular graft comprising a primary scaffold structure encompassing an inner space of the artificial vascular graft, said primary scaffold structure having an inner surface facing towards said inner space and an outer surface facing away from said inner space, a coating on said inner surface, wherein a plurality of grooves is comprised in said coating of said inner surface. The primary scaffold structure comprises further a coating on said outer surface. The primary scaffold structure and the coating on said inner surface and on said outer surface are d designed in such a way that cells, in particular progenitor cells, can migrate from the periphery of said artificial vascular graft through said outer surface of said coating, said primary scaffold structure and said inner surface to said inner space, if the artificial vascular graft is used as intended. The invention relates further to a method for providing said graft.Type: ApplicationFiled: September 18, 2014Publication date: August 11, 2016Inventors: Bernhard WINKLER, Martin GRAPOW, Friedrich ECKSTEIN, Aldo FERRARI, Dimos POULIKAKOS, Maximilian FISCHER, Tobias LENDENMANN