Abstract:
PURPOSE: An electric field nanoimprinting method is provided to improve copy ciency by adding electric filed. CONSTITUTION: An electric filed nanoimprinting comprises: a step of placing an original copy in an electrode side; a step of placing a liquid polymer or polymer of low viscosity in a facing electrode side; a step of forming AC electric field between the electrodes; and a step of solidifying or curing the liquid polymer or polymer of low viscosity.
Abstract:
PURPOSE: A field-aided microstructure, a nano structure imprinting casting method and 3D scaffold with a microstructure and a nanostructure are provided to enhance the stickiness and the growth rate of a cell by controlling the structure by an electric field and make scaffold which is suitable for the body by using biocompatibility materials for heating. CONSTITUTION: A field-aided microstructure, a nano structure imprinting casting method comprises the following steps. An electric field is formed around a mold thermosetting materials are imprinted in the mold and heated to make a mold. Biocompatibility materials are put into the manufactured mold and in the electric field a film is formed by imprinting. The film is cooled.
Abstract:
본 발명은 마이크로/나노임프린팅 방법을 개선하여 전기장을 가함으로써 복제 효율을 향상시킨 방법에 관한 것이다. 이러한 전기장 나노임프린팅 방법은 두 단계로 이루어져 있다: 먼저 복제 대상 아래 액상 폴리머에 전기장을 가하는 단계, 그리고 전기장을 적용한 폴리머를 경화시키는 단계이다. 전기장을 부가한 나노임프린팅 방법에 의하면 종래 나노임프린팅에 의하여 제조된 것보다 45%나 향상된 임프린팅 효율을 얻을 수 있었다. 전기장을 부가한 나노임프린팅 방법은 종래 나노임프린팅의 질을 현저히 향상시켰다. 전기장, 나노임프린팅, 폴리머, 복제