Ulsan National Institute of Science and Technology · 生化学・遺伝学・分子生物学
Hemin Zhang 교수의 연구실은 태양광을 이용한 수소 연료 생산과 녹색 암모니아 합성에 초점을 맞춘 첨단 광전기화학 연구를 수행하고 있습니다. 특히 헤마티트, 트이티오2, 실리콘 나노와이어 등 다양한 반도체 나노소재를 활용해 전하 수송 효율을 극대화하고, 핵심 반응 메커니즘을 이해하는 데 중점을 두고 있습니다. 고온 열처리 대신 하이브리드 마이크로파 소결 기반의 혁신적 합성 전략을 개발하여 나노조직의 정밀 제어와 기계적 안정성을 확보하고 있습니다. 이는 실용적 에너지 변환 장치 개발에 기여할 잠재력을 지닌 연구입니다.
Figures are computed from collected data and may differ slightly.
Hematite has a great potential as a photoanode for photoelectrochemical (PEC) water splitting by converting solar energy into hydrogen fuels, but the solar-to-hydrogen conversion efficiency of state-of-the-art hematite photoelectrodes are still far below the values required for practical hydrogen production. Here, we report a core-shell formation of gradient tantalum-doped hematite homojunction nanorods by combination of hydrothermal regrowth strategy and hybrid microwave annealing, which enhanc
A novel strategy was designed to prepare Ag cluster-doped TiO(2) nanoparticles (Ag/TiO(2) NPs) without addition of any chemical reducing agent and/or organic additive. A defect-rich TiO(x) species was generated by laser ablation in liquid (LAL) of a Ti target. The silver ions could be reduced and deposited on the surface of TiO(2) NPs through the removal of oxygen vacancies and defects; the TiO(x) species evolved into anatase NPs in a hydrothermal treatment process. The derived Ag/TiO(2) NPs are
Abstract A “three birds, one stone” strategy is proposed to enhance the performance of hematite photoanode for photoelectrochemical water splitting. One‐pot hybrid microwave synthesis of Ta and Sn codoped Fe 2 O 3 @FeTaO 4 core–shell nanorods on F:SnO 2 substrate achieves three synergetic effects simultaneously: i) core–shell heterojunction formation to alleviate the significant electron–hole recombination; ii) preserved morphology of small‐diameter nanorods to provide a short hole diffusion dis
Successful conservation of an endangered species relies on a good understanding of its reproductive biology, but there are large knowledge gaps. For example, many questions remain unanswered with regard to gestation and fetal development in the giant panda. We take advantage of a sample size that is unprecedented for this species (n=13) to explore patterns in reproductive development across individuals at the China Conservation and Research Center for the Giant Panda. We use ultrasound technique
As a new path to "green" ammonia production, photoelectrochemical nitrate reduction reaction (PEC NO<sub>3</sub> RR) is investigated for the first time. An Au-decorated ordered silicon nanowire (O_SiNW) array photocathode demonstrates 95.6 % of Faradaic efficiency (FE) to ammonia at 0.2 V<sub>RHE</sub> , which represents a more positive potential than the thermodynamic reduction potential of nitrate by utilizing photovoltage. The high FE is possible because both Si and Au surfaces are inactive f
Orthorhombic iron niobate (FeNbO4) has a band structure to form an effective heterojunction with hematite to make an efficient photoanode for photoelectrochemical water splitting. However, this high temperature phase is difficult to synthesize by conventional thermal annealing (CTA) without damaging F:SnO2 (FTO) substrate. In contrast, hybrid microwave annealing (HMA) selectively forms a few atomic overlayers of highly crystalline orthorhombic FeNbO4 phase covering hematite nanorods in an extrem
To obtain full details of gut microbiota, including bacteria, fungi, bacteriophages, and helminths, in giant pandas (GPs), we created a comprehensive microbial genome database and used metagenomic sequences to align against the database. We delineated a detailed and different gut microbiota structures of GPs. A total of 680 species of bacteria, 198 fungi, 185 bacteriophages, and 45 helminths were found. Compared with 16S rRNA sequencing, the dominant bacterium phyla not only included Proteobacte
A simple electrochemical activation treatment is proposed to improve effectively the photoelectrochemical performance of Nb,Sn co-doped hematite nanorods. The activation process involves an initial thrice cathodic scanning (reduction) and a subsequent thrice anodic scanning (oxidation), which modifies both the surface and bulk properties of the Nb,Sn:Fe<sub>2</sub>O<sub>3</sub> photoanode. First, it selectively removes the surface components to different extents endowing the hematite surface wit
We present a clean synthesis of well-crystallized pure Mn3O4 nanoparticles by pulsed laser ablation of an Mn metal plate immersed in deionized water at room temperature. The particle size, phase structure, and magnetic properties are characterized by X-ray diffraction, transmission electron microscopy, Fourier transform infrared spectra, and superconducting quantum interference device. The colloids solution of Mn3O4 nanocrystals with narrow particles size distribution could be facile obtained in
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