Abstract:
A film for wrapping including a heat shrinkable film shrinkable when the heat shrinkable film reaches a predetermined temperature, and a capsule layer formed at one surface of the heat shrinkable film while including a plurality of microcapsules is disclosed. Electrophoretic particles are included in the microcapsules. Accordingly, a color or text represented at the film for wrapping is variable.
Abstract:
A quantum dot microcapsule according to an embodiment of the present invention includes one or more quantum dots each including a ligand coupled to an outer circumferential surface thereof, the ligand being made of an organic material, and a microcapsule accommodating the one or more quantum dots. The microcapsule includes an oil or a solvent with the quantum dots dispersed therein. There are effects capable of not only effectively adjusting a density of quantum dots through formation of a microcapsule formed to include one or more quantum dots and filled with an oil, but also effectively protecting ligands of the quantum dots from an environment such as oxygen, moisture or the like, against which the ligands are weak.
Abstract:
The present invention relates to an energy conversion device using a liquid and, more specifically, to a method and a device for converting mechanical energy into electrical energy by applying an opposite phenomenon to an electrowetting phenomenon. The contact surface with liquid is being changed within a pair of electrodes, and the resulting change in the contact surface with liquid is being utilized for generating electrical energy. The device can be simplified and the manufacturing cost thereof is being reduced, furthermore it is effective in implementing an energy conversion device that is less faulty, by preventing channel blocking phenomenon and not requiring a lubricating layer or an electrode complicatedly patterned on a channel. Besides, it is advantageous in that a flexible device can be realized and a large area application is facilitated by simplifying the device structure.
Abstract:
A camouflage apparatus using a reflective display is disclosed. The camouflage apparatus includes a camouflage sheet configured to cover an object, thereby hiding the object, and to avoid detection of electromagnetic waves, a plurality of reflective display type panels coupled to one surface of the camouflage sheet and configured to outwardly display a visible-light and infrared camouflage pattern, and a control module configured to control the panels.
Abstract:
Disclosed is a reflective display device for visible light and infrared camouflage and an active camouflage device using the same, the reflective display device including: an upper substrate formed of a transparent material; an upper electrode layer formed of a transparent material provided under the upper substrate; at least one unit cell provided under the upper electrode layer, the unit cell containing a fluid and multiple particles being charged with opposite polarities and having different quantities of electric charge or different sizes; a lower electrode layer provided under the unit cell, the lower electrode layer for generating an electric field in conjunction with the upper electrode layer and defining a pixel area; a metal layer provided under the lower electrode layer, the metal layer blocking thermal-infrared rays; and a lower substrate provided under the metal layer.
Abstract:
A device for measuring a penetration rate of outdoor air including humidity or oxygen of a material, and a reaction material cartridge for measuring an outdoor air penetration rate. The device includes a reacting part including a reaction material which reacts upon contact with outdoor air passing through a substrate; a cartridge body which accommodates the reaction part, and which is detachable from a measuring unit for measuring a change corresponding to the contact of the reaction material with the outdoor air; and a shielding means which shields the cartridge body, and which is separated from the cartridge body for contact between the reaction material and the outdoor air.
Abstract:
A hybrid display is disclosed. The hybrid display includes an electrophoretic module configured to display information through reflection of light incident from an exterior thereof, and a light emitting module formed at a lower surface of the electrophoretic module, to output color light to the electrophoretic module. The electrophoretic module includes a first substrate, a second substrate spaced apart from the first substrate, a plurality of capsules disposed between the first substrate and the second substrate, each of the capsules containing particles having a color and a fluid having a color therein, and an electrode configured to apply an electric filed to the capsule, thereby moving the particles. The color light output from the light emitting module is mixed with the color of the fluid, and is then outwardly output. The hybrid display exhibits excellent visibility even in a dark environment, and the background color thereof is variously changeable.
Abstract:
A reflective color conversion film is disclosed The reflective color conversion film includes a base layer formed of a flexible material, a plurality of unit panels formed on the base layer and configured to reflect light incident from an outside, thereby displaying a color, a plurality of signal lines formed on the base layer and connected to the plurality of unit panels, to transmit a control signal for control of color change of the unit panels, and a plurality of cutting lines configured to indicate a line capable of cutting the base layer without cutting the signal lines. The reflective color conversion film camouflages an object to be camouflaged by covering the object in accordance with a shape of the object while closely contacting the object.
Abstract:
This application relates to a method for manufacturing a hybrid moisture barrier layer. In one aspect, the method includes preparing a base film and applying a photo-curable or heat-curable solution material to the base film, followed by photocuring or thermal curing to deposit at least one first moisture barrier layer. The method also includes depositing at least one second moisture barrier layer on the base film through atomic layer deposition (ALD), the second moisture layer being ⅓ to ½ the total thickness of the first moisture barrier. According to various embodiments, a combination of a moisture barrier layer formed by applying the photo-curable or heat-curable solution and a moisture barrier layer formed by atomic layer deposition at an effective thickness ratio brings about an effective reduction in production lead time as well as an improvement in the reliability of moisture barrier effect.
Abstract:
The present invention relates to a flexible energy conversion device using a liquid, and more specifically, to a method and a device for converting mechanical energy into electric energy by applying an opposite phenomenon of electrowetting, which can change a surface contacting the liquid between one pair of electrodes, and use the change of the surface contacting the liquid to generate electric energy, so as to prevent channel blocking or so that a lubricating layer or electrodes patterned onto a channel in a complicated manner are not required, thereby enabling simplification of the device, reduction of manufacturing cost, and the energy conversion device that is less faulty.