Hyunjung Kim
Hanyang University 건설환경공학부 · Environmental Science
김현정 교수의 연구실은 나노소재 기반의 에너지 저장 소재와 미생물의 표면 및 상호작용 메커니즘을 동시에 탐구하는 독특한 연구 분야를 중심으로 운영됩니다. 전이금속 산화물 나노구조를 활용한 고성능 이온 저장 소재 개발과 동시에, 병원성 대장균과 같은 미생물의 표면 특성과 기질에 대한 부착 거동을 미세구조 및 전기적 성질 분석을 통해 규명하고 있습니다. 특히, 나노소재의 전기화학적 거동과 미생물의 표면 상호작용을 동시에 고려한 다학제적 접근이 특징입니다.
Figures are computed from collected data and may differ slightly.
Pseudocapacitive charge storage materials offer the opportunity to bridge the gap between high energy density battery materials and high power density electrical double layer capacitor materials through the rational design of transition metal oxide nanoscale architectures. The research reported in this paper describes the origins and development of pseudocapacitance in MoO 2 . Micron-size particles of MoO 2 exhibit a reversible monoclinic to orthorhombic phase transition upon lithium insertion/d
The transport and deposition behavior of Escherichia coli O157: H7 was investigated in saturated packed-bed columns and micromodel systems over a range of ionic strength (IS) (1, 10, and 100 mM) and pH (5.8, 8.4, and 9.2) conditions. At a given IS, elevated solution pH resulted in decreased deposition as a result of the increase in the measured zeta potential of the quartz sand. This deposition trend was consistent with predictions from classic Derjaguin-Landau-Verwey-Overbeek (DLVO) theory. Con
Three series of polymers were carefully formulated with increasing amounts of template while keeping the polymer components constant. The number of binding sites (N) and the number average association constant (K(n)()) were calculated for each polymer in a series, using equations adapted from the literature describing molecularly imprinted polymers (MIPs). The trends of N and K(n)() for each series of polymers, which were graphed versus percent template, suggest multiple functional monomers in t
Experiments were conducted using enterohemorrhagic Escherichia coli O157:H7 cells to investigate the influence of extracellular macromolecules on cell surface properties and adhesion behavior to quartz sand. Partial removal of the extracellular macromolecules on cells by a proteolytic enzyme (proteinase K) was confirmed using Fourier transform infrared spectroscopy analyses. The proteinase K treated cells exhibited more negative electrophoretic mobility (EPM) at an ionic strength (IS) < or = 1 m
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