Abstract:
PURPOSE: A method for fabricating molecular imprinted polymer nanotube is provided to obtain a membrane for enabling chemical separation using a composite which is composed of a hard template and the molecular imprinted polymer nanotube using a separation membrane. CONSTITUTION: A method for manufacturing molecular imprinted polymer nanotube comprises the following steps: manufacturing a solution by mixing a template molecule and a monomer which is capable of chemically combining with the template molecule; manufacturing the molecular imprinted polymer nanotube by introducing the solution to a hard template and introducing a crosslinking agent using a vapor deposition method; eliminating the template molecule from the molecular imprinted polymer nanotube; and applying the composite comprising the template molecule and the molecular imprinted polymer nanotube to a separation membrane which is capable of selectively separating the template molecule.
Abstract:
PURPOSE: A method for fabricating and measuring nano-electrorheological fluids are provided to easily introduce conductive polypyrrole nanotube into the nano-electrorheological fluid by simply controlling conductivity and to confirm the content of nanoparticles and electrorheological properties according to the intensity of electric field. CONSTITUTION: A method for fabricating and measuring nano-electrorheological fluids comprises the following steps: controlling electrical properties through a dedoping process of polypyrrole nanotube; fabricating the nano-electrorheological fluids by dispersing the polypyrrole nanotube into a silicone fluid; and observing electrorheological properties in external magnetic field and the content of various nanoparticles using a rheometer which is connected to a DC power supply.
Abstract:
PURPOSE: A method for fabricating polyvinyl alcohol/conductive polymer coaxial nanofibers is provided to easily fabricate the nanofibers which are composed of the conductive polymer using a simple vapor deposition polymerization mediated electrospinning process. CONSTITUTION: A method for fabricating polyvinyl alcohol/conductive polymer coaxial nanofibers comprises the following steps: forming polyvinyl alcohol nanofibers on a sensor substrate by electrospinning a polyvinyl alcohol(PVA) solution; introducing a metallic ion on the polyvinyl alcohol nanofibers through a soaking process; manufacturing the polyvinyl alcohol/conductive polymer coaxial nanofibers on the polyvinyl alcohol nanofibers having the metallic ion through a vapor deposition polymerization mediated electrospinning process; and producing a sensor for detecting electrical properties changes of the nanofibers using the polyvinyl alcohol/conductive polymer coaxial nanofibers.
Abstract:
PURPOSE: A new manufacturing method of a magnetic carbon nano particle label is provided to insert the nano particle label into an organism with an optimized uptake property, and to enable the nano particle label inside the organism without a flocculation. CONSTITUTION: A new manufacturing method of a magnetic carbon nano particle label comprises the following: surface processing a magnetic carbon nano particle through a plasma processing; dispersing the plasma processes magnetic carbon nano particle to an aqueous solution through sonication; inserting a target material melted in an organic material to apply into the magnetic carbon nano particle; and returning the magnetic carbon nano particle using the magnetism. A carrier gas is selected from the group consisting of oxygen gas, nitrogen gas, ammonia gas or methane gas.