Patents by Inventor Katherine T. FABER
Katherine T. FABER 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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Patent number: 12157705Abstract: Provided herein are methods for making a freeze-cast material having a internal structure, the methods comprising steps of: determining the internal structure of the material, the internal structure having a plurality of pores, wherein: each of the plurality of pores has directionality; and the step of determining comprises: selecting a temperature gradient and a freezing front velocity to obtain the determined internal structure based on the selected temperature gradient and the selected freezing front velocity; directionally freezing a liquid formulation to form a frozen solid, the step of directionally freezing comprising: controlling the temperature gradient and the freezing front velocity to match the selected temperature gradient and the selected freezing front velocity during directionally freezing; wherein the liquid formulation comprises at least one solvent and at least one dispersed species; and subliming the at least one solvent out of the frozen solid to form the material.Type: GrantFiled: July 31, 2023Date of Patent: December 3, 2024Assignee: California Institute of TechnologyInventors: Katherine T. Faber, Julia A. Kornfield, Noriaki Arai, Orland Bateman, Rustem F. Ismagilov
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Publication number: 20240186653Abstract: Separator membranes for ion batteries and methods of producing such separator membranes are disclosed herein. The separator membranes have vertically-aligned pores that have as small as submicron diameters at one or both membrane surfaces. The separator membranes may be fabricated via a novel and innovative bidirectional freeze-casting process that produces a temperature gradient in two directions. The separator membranes disclosed herein and fabricated by this method can be used in ion batteries, such as sodium ion batteries.Type: ApplicationFiled: September 18, 2023Publication date: June 6, 2024Applicants: TalosTech LLC, California Institute of TechnologyInventors: Hansan Liu, Chun-Wei Wu, Xiaoping Lin, Katherine T. Faber
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Publication number: 20240068453Abstract: Aspects disclosed herein include graphite and hexagonal boron nitride bimaterials, methods of making these bimaterials, and electric propulsion devices or thrusters with these bimaterials. Aspects disclosed herein include electric propulsion devices comprising: at least one portion comprising or formed of a monolithic bimaterial; wherein the monolithic bimaterial comprises a graphite material and a hexagonal boron nitride material; and wherein the graphite material and hexagonal boron nitride material are monolithically integrated in the bimaterial.Type: ApplicationFiled: August 25, 2023Publication date: February 29, 2024Inventors: Celia S. CHARI, Katherine T. FABER, Bryan W. McENERNEY, Richard R. HOFER, James A. WOLLMERSHAUSER, Edward P. GORZKOWSKI, III
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Publication number: 20240034688Abstract: Provided herein are methods for making a freeze-cast material having a internal structure, the methods comprising steps of: determining the internal structure of the material, the internal structure having a plurality of pores, wherein: each of the plurality of pores has directionality; and the step of determining comprises: selecting a temperature gradient and a freezing front velocity to obtain the determined internal structure based on the selected temperature gradient and the selected freezing front velocity; directionally freezing a liquid formulation to form a frozen solid, the step of directionally freezing comprising: controlling the temperature gradient and the freezing front velocity to match the selected temperature gradient and the selected freezing front velocity during directionally freezing; wherein the liquid formulation comprises at least one solvent and at least one dispersed species; and subliming the at least one solvent out of the frozen solid to form the material.Type: ApplicationFiled: July 31, 2023Publication date: February 1, 2024Applicant: California Institute of TechnologyInventors: Katherine T. FABER, Julia A. KORNFIELD, Noriaki ARAI, Orland BATEMAN, Rustem F. ISMAGILOV
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Patent number: 11760698Abstract: Provided herein are methods for making a freeze-cast material having a internal structure, the methods comprising steps of: determining the internal structure of the material, the internal structure having a plurality of pores, wherein: each of the plurality of pores has directionality; and the step of determining comprises: selecting a temperature gradient and a freezing front velocity to obtain the determined internal structure based on the selected temperature gradient and the selected freezing front velocity; directionally freezing a liquid formulation to form a frozen solid, the step of directionally freezing comprising: controlling the temperature gradient and the freezing front velocity to match the selected temperature gradient and the selected freezing front velocity during directionally freezing; wherein the liquid formulation comprises at least one solvent and at least one dispersed species; and subliming the at least one solvent out of the frozen solid to form the material.Type: GrantFiled: December 23, 2021Date of Patent: September 19, 2023Assignee: California Institute of TechnologyInventors: Katherine T. Faber, Julia A. Kornfield, Noriaki Arai, Orland Bateman, Rustem F. Ismagilov
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Publication number: 20220234007Abstract: A composite, method of making the composite, and method of using the composite are disclosed. The composite comprises a macroporous scaffold comprising pores; and a polymer matrix positioned within the pores; wherein the polymer matrix comprises: a functional polymer particle; and a structural polymer. The method of using can comprise applications such as chromatography, catalysis, and sensing, among others.Type: ApplicationFiled: December 21, 2021Publication date: July 28, 2022Inventors: Julia A. KORNFIELD, Katherine T. FABER, Mamadou DIALLO, Orland BATEMAN, Noriaki ARAI
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Publication number: 20220234962Abstract: Provided herein are methods for making a freeze-cast material having a internal structure, the methods comprising steps of: determining the internal structure of the material, the internal structure having a plurality of pores, wherein: each of the plurality of pores has directionality; and the step of determining comprises: selecting a temperature gradient and a freezing front velocity to obtain the determined internal structure based on the selected temperature gradient and the selected freezing front velocity; directionally freezing a liquid formulation to form a frozen solid, the step of directionally freezing comprising: controlling the temperature gradient and the freezing front velocity to match the selected temperature gradient and the selected freezing front velocity during directionally freezing; wherein the liquid formulation comprises at least one solvent and at least one dispersed species; and subliming the at least one solvent out of the frozen solid to form the material.Type: ApplicationFiled: December 23, 2021Publication date: July 28, 2022Applicant: Califomia Institute of TechnologyInventors: Katherine T. Faber, Julia A. Kornfield, Noriaki Arai, Orland Bateman, Rustem F. Ismagilov
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Patent number: 11242290Abstract: Provided herein are methods for making a freeze-cast material having a internal structure, the methods comprising steps of: determining the internal structure of the material, the internal structure having a plurality of pores, wherein: each of the plurality of pores has directionality; and the step of determining comprises: selecting a temperature gradient and a freezing front velocity to obtain the determined internal structure based on the selected temperature gradient and the selected freezing front velocity; directionally freezing a liquid formulation to form a frozen solid, the step of directionally freezing comprising: controlling the temperature gradient and the freezing front velocity to match the selected temperature gradient and the selected freezing front velocity during directionally freezing; wherein the liquid formulation comprises at least one solvent and at least one dispersed species; and subliming the at least one solvent out of the frozen solid to form the material.Type: GrantFiled: August 23, 2019Date of Patent: February 8, 2022Assignee: California Institute of TechnologyInventors: Katherine T. Faber, Julia A. Kornfield, Noriaki Arai, Orland Bateman, Rustem F. Ismagilov
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Publication number: 20200115291Abstract: Provided herein are methods for making a freeze-cast material having a internal structure, the methods comprising steps of: determining the internal structure of the material, the internal structure having a plurality of pores, wherein: each of the plurality of pores has directionality; and the step of determining comprises: selecting a temperature gradient and a freezing front velocity to obtain the determined internal structure based on the selected temperature gradient and the selected freezing front velocity; directionally freezing a liquid formulation to form a frozen solid, the step of directionally freezing comprising: controlling the temperature gradient and the freezing front velocity to match the selected temperature gradient and the selected freezing front velocity during directionally freezing; wherein the liquid formulation comprises at least one solvent and at least one dispersed species; and subliming the at least one solvent out of the frozen solid to form the material.Type: ApplicationFiled: August 23, 2019Publication date: April 16, 2020Inventors: Katherine T. FABER, Julia A. KORNFIELD, Noriaki ARAI, Orland BATEMAN, Rustem F. ISMAGILOV