이원종 교수
Won-Jong Lee
서울대학교 · 공학
연구실 소개
이원종 교수의 연구실은 주로 유기 태양전지와 산화아연 기반의 고성능 전자소자에 초점을 맞추고 있으며, 특히 광흡수 특성과 나노구조 제어를 통해 태양전지의 전환 효율을 극대화하는 데 기여하고 있습니다. 또한 알루미나나이트라이드(AlGaN) 기반의 극자외선 발광다이오드(LED)에서 빛 추출 효율을 높이기 위한 신소재 및 나노복합 기반의 혁신적 설계 전략을 개발하고 있습니다. 연구는 나노구조 제어, 광학적 상호작용, 전자적 성능 향상의 통합적 접근을 통해 에너지 변환 소자의 핵심 기술을 선도하고 있습니다.
연구 현황
연구 성과 추이
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주요 논문
15One of the effective strategies to enhance the photovoltaic performance of polymer solar cells (PSCs) is to synthesize random copolymers composed of one electron donating unit and two different electron accepting units, if the absorptions of two electron accepting units are complementary to each other. To this end, we synthesized a new series of conjugated random copolymer composed of bithiophene (electron donating unit) with thiophene-capped diketopyrrolopyrrole (TDPP) and pyridine-capped diket
While there is an urgent need for semiconductor-based efficient deep ultraviolet (DUV) sources, the efficiency of AlGaN DUV light-emitting diodes (LEDs) remains very low because the extraction of DUV photons is significantly limited by intrinsic material properties of AlGaN. Here, we present an elegant approach based on a DUV LED having multiple mesa stripes whose inclined sidewalls are covered by a MgF2/Al omni-directional mirror to take advantage of the strongly anisotropic transverse-magnetic
Despite a rapidly growing demand for efficient man-made deep-ultraviolet (DUV) light sources, widespread adoption of AIGaN-based DUV light-emitting diodes (LEDs) is currently obstructed by extremely poor extraction of DUV photons due to the intrinsic material properties of the AIGaN active region. Here, we present 280 nm AlGaN DUV LEDs having arrays of truncated cone (TC)-shaped active mesas coated with MgF2/Al reflectors on the inclined sidewalls of the cone to effectively extract the intrinsic
We present a remarkable improvement in the efficiency of AlGaN deep-ultraviolet light-emitting diodes (LEDs) enabled by the coupling of localized surface plasmon resonance (LSPR) mediated by a high-density array of Al nanoparticles (NPs). The Al NPs with an average diameter of ∼40 nm were uniformly distributed near the Al<sub>0.43</sub>Ga<sub>0.57</sub>N/Al<sub>0.50</sub>Ga<sub>0.50</sub>N multiple quantum well active region for coupling 285 nm emission by block copolymer lithography. The intern
Ternary blends composed of two donor absorbers with complementary absorptions provide an opportunity to enhance the short-circuit current and thus the power conversion efficiency (PCE) of organic solar cells. In addition to complementary absorption of two donors, ternary blends may exhibit favorable morphology for high-performance solar cells when one chooses properly the donor pair. For this purpose, we develop a ternary blend with two donors (diketopyrrolopyrrole-based polymer (PTDPP2T) and sm
<bold>PBCDTBT</bold>and<bold>PBCDPP2T</bold>are synthesized by introducing an oxygen atom in the fluorene unit in<bold>PFDTBT</bold>and<bold>PFDPP2T</bold>, respectively.<bold>PBCDTBT</bold>- and<bold>PBCDPP2T</bold>-based devices exhibit higher<italic>J</italic><sub>SC</sub>s than<bold>PFDTBT</bold>and<bold>PFDPP2T</bold>-based devices, respectively.
Abstract The silkworm hemolymph has an anti-apoptotic activity in insect, mammalian, and human cell systems. The protein from silkworm hemolymph with the highest apoptosis inhibiting activity was found to be 30Kc19 protein, which was one of the ‘30K proteins’. In this study, 30Kc19 protein encoded by the PMhÅNV gene of the silkworm was expressed Escherichia coli with (pET-22b(+)) and without (pET-3a) pelB leader sequence. 30Kc19 protein was over-expressed largely as a soluble form by pET-3a and
By analyzing the causes of precipitation and clogging in continuous flow dichlorocyclopropanation, we established that the flow reaction can be performed only with T‐junctions and microtubes. Unlike tertiary amines, when quaternary ammonium salts were used as PTCs, precipitation and clogging in microchannels did not occur, and an excellent yield of up to 99% was obtained after optimizing the reaction temperature, reactant concentration, and retention time. In the scale‐up experiment, the reactio
The characteristics of organic thin-films transistors (OTFTs) with the anodized aluminum oxide insulator have been investigated. The OTFT with the barrier-type aluminum oxide insulator exhibited the mobility of 0.09 cm2/Vs, the subthreshold slope of 1.3 V/decade, the threshold voltage of −2.2 V, and the on/off ratio of 7.7 × 104, which are superior to those for the device with the porous-type insulator. The smooth surface of the barrier-type film is found to contribute to a long range hopping of
The catalytic partial oxidation of methane has received a great deal of attention for the utilization of natural gas during the last 20 years. The degree of CH4 oxidation required depends on the process.1,2 In the catalytic combustion of CH4 the objective is full oxidation to CO2. For chemicals produc tions the end products are CH3OH, HCHO, and HCOOH, in the formation of syngas the target is CO, while in the oxidative coupling the desired products are C2H4 and C2H6. Oxidative coupling of methane
Not available.
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