Abstract:
Disclosed is an optical disk for manufacturing graphene using an optical recording device and a manufacturing method thereof. The optical disk for manufacturing graphene according to an embodiment of the present invention comprises a thermoplastic plastic polymer substrate having a reflective layer which reflects incident light inside; and a thin graphite oxide layer spread on the thermoplastic plastic polymer substrate. Therefore, high quality graphene can be economically mass produced with low costs.
Abstract:
An electrowetting display device according to the present invention comprises a lower substrate, an upper substrate, and a fluid disposed between the lower substrate and the upper substrate. The lower substrate includes a base part, a lower electrode formed on the base part, an insulating layer covering the base part and the lower electrode, and a partition part defining a plurality of pixels by being disposed on the insulating layer. The upper substrate includes a panel part and an upper electrode formed on the lower part of the panel part. The partition part includes a plurality of partitions with a predetermined length, width, and height. An opening part in which the fluid can move is formed between the partitions.
Abstract:
The present invention relates to a manufacturing method of a composite material having excellent combustion properties, and specifically, to a manufacturing method of a composite material by dispersing nanoclay and an agent for applying expansion properties to a matrix material of ethylene vinyl acetate; and to the composite material thereof. The polymer composite material produced by the present invention has properties of producing an air insulation layer when the material is exposed to a high temperature according to expansion properties of the agent for applying expansion properties.
Abstract:
The present invention relates to a nanoparticle in a shape of nanosnowman with a head unit and a body unit, a preparation method of the same, and a detection method using the same, more specifically the nanoparticle in the shape of nanosnowman which is capable of providing a platform for a DNA-basic assembly of a nanostructure in various alignment or irregular alignment, and applying to the detection of analyte related to the occurrence of DNA specific diseases.
Abstract:
PURPOSE: An algae controlling method using a light emitting diode is provided to control algae by activating the photosynthesis of the algae forming a red tide, or enabling the algae to exceed the malfunction of a photosynthesis system. CONSTITUTION: Algae is irradiated with light for 24 hours. The algae are dark-treated for 24 hours. The previous two steps are repeated for at least two times. Blue light in 12,000-64,000 lx is used. The blue light have a single wavelength of 400-500 nm.
Abstract:
PURPOSE: A membrane containing a metal nano rod for a thin film transducer, a manufacturing method thereof, a thin film transducer using the same are provided to easily fix a large amount of probes to a thin film because the thin film has a high surface area. CONSTITUTION: A membrane containing a metal nano rod for a thin film transducer comprises a substrate(110) and a membrane(120). The membrane is separated from the substrate and comprises an insulation layer(122), a metal layer(121), and metal nano rods. The metal layer is loaded on the insulation layer. The metal nano rods are vertically arranged on the metal layer. Probes for detecting biologically active materials are fixed to the metal layer and the metal nano rods.
Abstract:
PURPOSE: A capacitive element sensor and a manufacturing method thereof are provided to reduce the manufacturing process and improve reliability compared to an FET method. CONSTITUTION: A method for manufacturing a capacitive element is as follows. First and second electrodes(10,11) are formed separate from each other on a substrate. A dielectric layer(20) is formed on the top of the first electrode and the second electrode. A third electrode(30) is formed on the top of the dielectric layer. Specific bio molecules are attached to the upper side of the third electrode through surface treatment.