명재민 교수
Jaemyung Myoung
연세대학교 디스플레이융합공학과 · 공학
연구실 소개
명재민 교수의 연구실은 2차원 물질인 MXene를 활용한 고감도 센서 기술과 유연성·투명성을 갖춘 전기색소재, 나노소재 기반의 고성능 전자소자 개발에 주력하고 있습니다. 특히, 전도성·표면적을 극대화한 MXene 기반 센서, 마이크로패터닝된 ZnO 나노플라워를 활용한 유연한 가스 센서, 그리고 전기색소재로 응용 가능한 고분자 기반 전기색 케이지 등 다재다능한 나노소재 응용 기술을 연구하고 있습니다. 이는 헬스케어, 스마트 디스플레이, 환경 모니터링 등 실생활 응용 분야로의 이식 가능성을 높이고 있습니다.
연구 현황
연구 성과 추이
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주요 논문
15Various fields of study consider MXene a revolutionary 2D material. Particularly in the field of sensors, the metal-like high electrical conductivity and large surface area of MXenes are desirable characteristics as an alternative sensor material that can transcend the boundaries of existing sensor technology. This critical review provides a comprehensive overview of recent advances in MXene-based sensor technology and a roadmap for commercializing MXene-based sensors. The existing sensors are s
Abstract Electrochromic materials reversibly change colors by redox reactions depending on the oxidation states. To utilize electrochromic materials for active‐matrix display applications, an electrochromic display (ECD) requires simultaneous implementation of various colors and a fine‐pixelation process. Herein, flexible and transparent ECDs with simultaneously implementable subpixelated EC gels by sequential multiple patterning are successfully demonstrated. Ionic liquid‐based EC gels of monoh
Micropatternable double-faced (DF) zinc oxide (ZnO) nanoflowers (NFs) for flexible gas sensors have been successfully fabricated on a polyimide (PI) substrate with single-walled carbon nanotubes (SWCNTs) as electrode. The fabricated sensor comprises ZnO nanoshells laid out on a PI substrate at regular intervals, on which ZnO nanorods (NRs) were grown in- and outside the shells to maximize the surface area and form a connected network. This three-dimensional network structure possesses multiple g
A facile and quick approach to prepare self-assembled monolayers of water-dispersible particles on the water surface is presented. Particle suspensions in alcohols were dropped on a water reservoir to form long-range ordered monolayers of various particles, including spherical solid particles, soft hydrogel particles, metal nanoparticles, quantum dots, nanowires, single-wall carbon nanotubes (SWCNTs), nanoplates, and nanosheets. A systematic study was conducted on the variables affecting the mon
Vertically aligned ZnO nanowires were grown on c -plane sapphire substrate by metal organic chemical vapor deposition technique. The nanowires were single crystalline and structurally uniform and did not exhibit any noticeable defects. Pt/ZnO single nanowire Schottky diodes were fabricated by using e-beam lithography and then characterized by measuring temperature-dependent I−V characteristics. The diode exhibited a low Schottky barrier height of 0.42 V and ideality factor of 1.6 at room tempera
Out of the blue: Light-emitting diodes were obtained by fabricating p+-GaN film/n-ZnO nanowire array/n+-ZnO film structures (see figure). Blue electroluminescence (EL) emission was observed from the nanowire-inserted heterojunction diodes under forward bias. These diodes exhibited improved EL emission and injection current compared to those of film-based heterojunction diodes.
A series of ZnO films with various thicknesses were prepared on (0001) sapphire substrate by pulsed laser deposition (PLD). Scanning electron microscopy (SEM) and x-ray diffraction (XRD) analysis were utilized to investigate the effects of thickness variation on the surface morphology and the crystallinity. The electrical and optical properties of the films were also investigated as a function of the film thickness. It was found that the crystalline quality, electrical and optical properties of
ADVERTISEMENT RETURN TO ISSUEPREVCommunicationNEXTHighly Scalable Synthesis of MoS2 Thin Films with Precise Thickness Control via Polymer-Assisted DepositionHeeseung Yang†#, Anupam Giri‡#, Sungmin Moon‡, Sangbae Shin‡, Jae-Min Myoung*†, and Unyong Jeong*‡View Author Information† Department of Materials Science Engineering, Yonsei University, 134 Shinchon-dong, Seoul, Korea‡ Department of Materials Science and Engineering, Pohang University of Science and Technology, 77 Cheongam-Ro, Nam-Gu, Pohan
Rubbing a dry powder of particles in one direction between two rubbery substrates is found to be a quick and highly reproducible, yet inexpensive fabrication technique for assembling particle monolayers with perfect spatial registry on flat or curved surfaces. The optimum rubbing conditions - pressure and speed - for a single-crystal monolayer are shown to depend on particle size. Potential applications are in biosensors, photovoltaics, and light manipulators.
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