강진수 교수
JinSoo Kang
서울대학교 첨단융합학부 · 에너지
연구실 소개
강진수 교수의 연구실은 에너지 전환과 지속 가능한 기술 개발을 핵심 목표로 하며, 주로 태양광 변환, 수소 생산, 전기화학적 탈염 등 친환경 에너지 기술 분야에서 활동하고 있습니다. 나노소재를 활용한 고성능 전기화학적 전극 개발을 중심으로, 니켈 질화물, 몰리브덴 카바이드, 희토류 산화물 등 다양한 복합 산화물 및 탄소 기반 전극 재료의 합성과 응용을 연구하고 있습니다. 특히, 태양광 수소 생산, 고효율 탈염, 전기화학적 에너지 변환 등 실용화 가능성이 높은 기술적 도전 과제를 해결하기 위한 나노구조 설계와 표면 전기화학적 거동 분석에 중점을 두고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15Nickel nitride electrodes were prepared by reactive sputtering of nickel under a N2 atmosphere at room temperature for application in mesoscopic dye- or quantum dot- sensitized solar cells. This facile and reliable method led to the formation of a Ni2N film with a cauliflower-like nanostructure and tetrahedral crystal lattice. The prepared nickel nitride electrodes exhibited an excellent chemical stability toward both iodide and polysulfide redox electrolytes. Compared to conventional Pt electro
A necklacelike SnO 2 /α-Fe 2 O 3 hierarchical heterostructure was successfully fabricated by chemical vapor deposition method, using SnO 2 nanowires with the preferential growth direction of [001] direction as template. Element mapping and transmission electron microscopy analysis proved that the hierarchical heterostructure was factually an assembly constructed with a SnO 2 /α-Fe 2 O 3 nanocable and a series of pure α-Fe 2 O 3 disks, and the interfacial orientation relationship was (100) SnO 2
Demands for sustainable production of hydrogen are rapidly increasing because of environmental considerations for fossil fuel consumption and development of fuel cell technologies. Thus, the development of high-performance and economical catalysts has been extensively investigated. In this study, a nanoporous Mo carbide electrode is prepared using a top-down electrochemical process and it is applied as an electrocatalyst for the hydrogen evolution reaction (HER). Anodic oxidation of Mo foil foll
Recent advances in electrochemical desalination techniques have paved way for utilization of saline water. In particular, capacitive deionization (CDI) enables removal of salts with high energy efficiency and economic feasibility, while its applicability has been challenged by degradation of carbon electrodes in long-term operations. Herein, we report a thorough investigation on the surface electrochemistry of carbon electrodes and Faradaic reactions that are responsible for stability issues of
Abstract Nanostructured metal oxide semiconductors have shown outstanding performances in photoelectrochemical (PEC) water splitting, but limitations in light harvesting and charge collection have necessitated further advances in photoelectrode design. Herein, we propose anodized Fe foams (AFFs) with multidimensional nano/micro‐architectures as a highly efficient photoelectrode for PEC water splitting. Fe foams fabricated by freeze‐casting and sintering were electrochemically anodized and direct
Abstract Given that a considerably large population suffers from shortage of water, there are numerous on‐going efforts to turn seawater into freshwater, and electrochemical desalination processes—particularly capacitive deionization (CDI)—have gained significant attention due to their high energy efficiency and reliable performance. Meanwhile, carbonaceous electrode materials, which are most commonly used in CDI systems, have poor long‐term stability due to unfavorable interactions with oxygen
Abstract Nanostructured metal oxide semiconductors have shown outstanding performances in photoelectrochemical (PEC) water splitting, but limitations in light harvesting and charge collection have necessitated further advances in photoelectrode design. Herein, we propose anodized Fe foams (AFFs) with multidimensional nano/micro‐architectures as a highly efficient photoelectrode for PEC water splitting. Fe foams fabricated by freeze‐casting and sintering were electrochemically anodized and direct
Efficient light harvesting is essential for the realization of high energy conversion efficiency in dye-sensitized solar cells (DSCs). State-of-the-art mesoporous TiO2 photoanodes fall short for collection of long-wavelength visible light photons, and thus there have been efforts on introduction of scattering nanoparticles. Herein, we report the synthesis of wrinkled silica/titania nanoparticles with tunable interwrinkle distances as scattering materials for enhanced light harvesting in DSCs. Th
Abstract Organic/inorganic hybrid solar cells, typically mesoscopic and perovskite solar cells, are regarded as promising candidates to replace conventional silicon or thin film photovoltaics. There have been intensive investigations on the development of advanced materials for improved power conversion efficiencies, however, economical feasibilities and reliabilities of the organic/inorganic photovoltaics are yet to reach at a sufficient level for practical utilizations. In this study, cobalt n
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