C01B32/166

PROCESS AND APPARATUS FOR CARBON NANOTUBE FORMATION
20210107790 · 2021-04-15 ·

Embodiments of the present disclosure generally relate to processes and apparatus for carbon nanotube formation, and more specifically, to processes and apparatus for carbon nanotube alignment. In an embodiment, a process for aligning carbon nanotubes is provided. The process includes introducing an aqueous solution to a pressure-controlled system that includes a silanated glass element, a porous membrane, and a container. The process further includes applying a pressure differential across the porous membrane to draw the aqueous solution from the silanated glass element, through the porous membrane, and to the container at a flow rate to form a filtrate disposed within the container and a retentate disposed above the porous membrane, the retentate comprising carbon nanotubes. The process further includes optically detecting a position of a meniscus of the aqueous solution in the silanated glass element. Apparatus for forming and aligning carbon nanotubes are also disclosed.

PROCESS AND APPARATUS FOR CARBON NANOTUBE FORMATION
20210107790 · 2021-04-15 ·

Embodiments of the present disclosure generally relate to processes and apparatus for carbon nanotube formation, and more specifically, to processes and apparatus for carbon nanotube alignment. In an embodiment, a process for aligning carbon nanotubes is provided. The process includes introducing an aqueous solution to a pressure-controlled system that includes a silanated glass element, a porous membrane, and a container. The process further includes applying a pressure differential across the porous membrane to draw the aqueous solution from the silanated glass element, through the porous membrane, and to the container at a flow rate to form a filtrate disposed within the container and a retentate disposed above the porous membrane, the retentate comprising carbon nanotubes. The process further includes optically detecting a position of a meniscus of the aqueous solution in the silanated glass element. Apparatus for forming and aligning carbon nanotubes are also disclosed.

CARBON NANOTUBE MANUFACTURING METHOD AND CARBON NANOTUBE MANUFACTURED USING CARBON DIOXIDE
20230406708 · 2023-12-21 ·

An embodiment of the disclosure provides a method for manufacturing a carbon nanotube using carbon dioxide and a carbon nanotube manufactured using carbon dioxide. Particularly, an embodiment of the disclosure provides a method for manufacturing a carbon nanotube using carbon dioxide to manufacture a uniform carbon nanotube with a small diameter by using a catalyst, a carbon raw material, and carbon dioxide, with a carbon nanotube manufactured using carbon dioxide.

CARBON NANOTUBE MANUFACTURING METHOD AND CARBON NANOTUBE MANUFACTURED USING CARBON DIOXIDE
20230406708 · 2023-12-21 ·

An embodiment of the disclosure provides a method for manufacturing a carbon nanotube using carbon dioxide and a carbon nanotube manufactured using carbon dioxide. Particularly, an embodiment of the disclosure provides a method for manufacturing a carbon nanotube using carbon dioxide to manufacture a uniform carbon nanotube with a small diameter by using a catalyst, a carbon raw material, and carbon dioxide, with a carbon nanotube manufactured using carbon dioxide.

METHOD OF PREPARATION OF CONDUCTIVE POLYMER/CARBON NANOTUBE COMPOSITE NANOFILTRATION MEMBRANE AND THE USE THEREOF
20210008503 · 2021-01-14 ·

A method for preparation of conductive polymer/carbon nanotube (CNT) composite nanofiltration (NF) membrane and the use thereof. This conductive polymer/CNT composite NF membrane is obtained by polymerizing conductive polymer into a CNT membrane and then in-situ cross-linking with glutaraldehyde under acidic condition. The synthetic method for the conductive polymer/CNT composite NF membrane is simple and has no need of expensive equipment. The prepared membrane has controllable membrane structure and possesses superior electrical conductivity and electrochemical stability. The membrane can couple with electrochemistry for electrically assisted filtration. With the electrical assistance, the membrane can achieve improved ion rejection performance while retaining high permeability by enhancement of membrane surface charge density, which alleviates the permeability-selectivity trade-off. Furthermore, the electrically assisted NF membrane filtration can also enhance the removal for small molecular organic pollutants.

METHOD OF PREPARATION OF CONDUCTIVE POLYMER/CARBON NANOTUBE COMPOSITE NANOFILTRATION MEMBRANE AND THE USE THEREOF
20210008503 · 2021-01-14 ·

A method for preparation of conductive polymer/carbon nanotube (CNT) composite nanofiltration (NF) membrane and the use thereof. This conductive polymer/CNT composite NF membrane is obtained by polymerizing conductive polymer into a CNT membrane and then in-situ cross-linking with glutaraldehyde under acidic condition. The synthetic method for the conductive polymer/CNT composite NF membrane is simple and has no need of expensive equipment. The prepared membrane has controllable membrane structure and possesses superior electrical conductivity and electrochemical stability. The membrane can couple with electrochemistry for electrically assisted filtration. With the electrical assistance, the membrane can achieve improved ion rejection performance while retaining high permeability by enhancement of membrane surface charge density, which alleviates the permeability-selectivity trade-off. Furthermore, the electrically assisted NF membrane filtration can also enhance the removal for small molecular organic pollutants.

METHOD OF PRODUCING CARBON NANOTUBE COMPLEX AND METHOD OF PRODUCING POROUS METAL MATERIAL
20200399130 · 2020-12-24 ·

A method of producing a carbon nanotube complex includes preparing a mixed solution in which metal is mixed with a solution of a water-soluble polymer, a step of preparing a carbon nanotube assembly that is an assembly of carbon nanotubes extending in a predetermined direction, a step of obtaining an intermediate by impregnating the carbon nanotube assembly with the mixed solution, and a step of causing the carbon nanotube assembly to support the metal and removing the water-soluble polymer by heating the intermediate in an inert atmosphere or a reducing atmosphere. This facilitates the production of a carbon nanotube complex having an orientation.

METHOD OF PRODUCING CARBON NANOTUBE COMPLEX AND METHOD OF PRODUCING POROUS METAL MATERIAL
20200399130 · 2020-12-24 ·

A method of producing a carbon nanotube complex includes preparing a mixed solution in which metal is mixed with a solution of a water-soluble polymer, a step of preparing a carbon nanotube assembly that is an assembly of carbon nanotubes extending in a predetermined direction, a step of obtaining an intermediate by impregnating the carbon nanotube assembly with the mixed solution, and a step of causing the carbon nanotube assembly to support the metal and removing the water-soluble polymer by heating the intermediate in an inert atmosphere or a reducing atmosphere. This facilitates the production of a carbon nanotube complex having an orientation.

Nanometer Niobium Carbide/Carbon Nanotube Reinforced Diamond Composite And A Preparation Method Thereof
20200361777 · 2020-11-19 ·

A nanometer niobium carbide/carbon nanotube reinforced diamond composite and a preparation method thereof, belonging to the field of materials science. The nanometer niobium carbide/carbon nanotube reinforced diamond composite is composed of nanometer niobium carbide/carbon nanotube composite powders, matrix powders and diamond grains, wherein the nanometer niobium carbide/carbon nanotube composite powders are the composites of nanometer niobium carbide which are evenly distributed in the surface defects and interior of the carbon nanotube, the nanometer niobium carbide/carbon nanotube reinforced diamond composite is prepared by mixing the nanometer niobium carbide/carbon nanotube composite powders, matrix powders and diamond grains uniformly and sintering with a hot pressing technique.

Nanometer Niobium Carbide/Carbon Nanotube Reinforced Diamond Composite And A Preparation Method Thereof
20200361777 · 2020-11-19 ·

A nanometer niobium carbide/carbon nanotube reinforced diamond composite and a preparation method thereof, belonging to the field of materials science. The nanometer niobium carbide/carbon nanotube reinforced diamond composite is composed of nanometer niobium carbide/carbon nanotube composite powders, matrix powders and diamond grains, wherein the nanometer niobium carbide/carbon nanotube composite powders are the composites of nanometer niobium carbide which are evenly distributed in the surface defects and interior of the carbon nanotube, the nanometer niobium carbide/carbon nanotube reinforced diamond composite is prepared by mixing the nanometer niobium carbide/carbon nanotube composite powders, matrix powders and diamond grains uniformly and sintering with a hot pressing technique.