정재원 교수
Jaewon Jeong
고려대학교 기계공학과 · 공학
연구실 소개
정재원 교수의 연구실은 나노입자 인쇄 및 레이저 공정을 기반으로 한 마이크로전기소자 및 유기 기반 전자소자의 제작 기술을 핵심으로 연구하고 있습니다. 특히 나노입자 잉크의 레이저 소결을 통해 고순도 금 백금선과 같은 저저항 전도성 마이크로라인을 실현하며, 고온에 약한 폴리머 기판에서도 안정적인 전기적 성능을 확보하는 데 초점을 맞추고 있습니다. 또한 MEMS 기반 유체 디바이스의 유속 측정을 위한 적외선 열속도측정 기술 개발을 통해 마이크로유체 시스템의 성능 평가 기반을 마련하고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15The laser-based curing of printed nanoparticle ink to create microlines (resistors) of electrical resistivity approaching that of bulk gold was investigated. The present work relies on laser absorption in both the nanoparticle ink and the sintered gold layer, as well as the transport of thermal energy in the substrate and the resulting solvent vaporization and nanoparticle deposition and sintering. The morphology and electrical properties of the gold line can be controlled by modulating the spat
In this study, pulsed laser based curing of a printed nanoink (nanoparticle ink) combined with moderate and controlled substrate heating was investigated to create microconductors at low enough temperatures appropriate for polymeric substrates. The present work relies on (1) the melting temperature depression of nanoparticles smaller than a critical size, (2) DOD (drop on demand) jettability of nanoparticle ink, and (3) control of the heat affected zone induced by pulsed laser heating. In the ex
Herein, we report the effect of sonoluminescence and an initial dye concentration on the sonophotocatalysis of TiO2 for the degradation of eosin B, a textile dye. We first investigated the light illuminated during ultrasound irradiation (sonoluminescence) by photographic images, a radical indicator (luminol), and photoluminescence spectra of the detection range of 300–1050 nm. Next, we examined the synergistic effect of sonolysis on photocatalysis by comparing the dye degradation of sonophotocat
Nanosecond laser ablation of polyvinylpyrrolidone (PVP) protected silver nanoparticle (20 nm diameter) film is studied using a frequency doubled Nd:YAG nanosecond laser (532 nm wavelength, 6 ns full width half maximum pulse width). In the sintered silver nanoparticle film, absorbed light energy conducts well through the sintered porous structure, resulting in ablation craters of a porous dome shape or crown shape depending on the irradiation fluence due to the sudden vaporization of the PVP. In
Most MEMS (microelectromechanical system) devices are made of silicon which is transparent at infrared wavelengths. Utilizing this infrared transparency of silicon, infrared thermal velocimetry was developed to measure the velocity in MEMS based fluidic devices. The method uses an infrared laser to generate a short heating pulse in a flowing liquid. An infrared camera records the radiative images from the heated flowing liquid and the steady flow velocity is obtained from consecutive radiative i
Measurement of velocity is essential for verification of the performance of many microelectromechanical system (MEMS) based fluidic devices. MEMS devices are usually made of silicon which is transparent at infrared wavelengths. Infrared thermal velocimetry has been developed to measure the velocity in silicon microchannels utilizing the infrared transparency of silicon. Applications are broad and include MEMS fluidic devices and bio-fluidic elements. Briefly, an infrared laser heats the flowing
Abstract Objective Idelalisib is a first-in-class oral PI3Kd inhibitor approved for use in combination with rituximab in patients with relapsed or refractory (R/R) chronic lymphocytic leukemia (CLL). We describe the characteristics, causes of discontinuation, and outcomes in patients who discontinued treatment after idelalisib therapy. Methods 38 R/R CLL patients participated in 5 idelalisib combination trials at the North Shore-LIJ Cancer Institute and were included in this analysis. The patien
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