Soochan Kim
성균관대학교 공과대학 나노공학과 · 공학
소찬 김 교수의 연구실은 리튬-황 및 리튬-셀레늄 이차전지와 같은 고에너지 밀도 전기화학적 에너지 저장 장치의 핵심 과제인 다이아몬드 이온의 이동 저항, 다이아몬드 황화물의 셔틀 효과, 리튬 메탈의 불균일한 도금 문제를 해결하기 위한 신소재 및 신설계 전략을 개발하고 있습니다. 특히 고분자 기반 복합 전해질, 그래핀 및 케이터리아 나노소재를 활용한 전극 및 인터레이어 설계를 통해 전지의 수명과 안정성을 극대화하는 데 초점을 맞추고 있습니다. 또한, 고도의 기능성 재료를 기반으로 한 전기화학적 시스템의 실용화를 위한 스케일업 가능한 제조 기술 개발도 함께 진행하고 있습니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
Abstract Although Li–S batteries are currently receiving great interest, due to their high energy density and the low cost of sulfur, practical applications are still inhibited by capacity fading that is caused by various undesirable processes. In this study, a new multifunctional network binder composed of chitosan and reduced graphene oxide (rGO) is introduced to enhance the capacitive performance of Li–S batteries. Chitosan is reacted with graphene oxide in aqueous solution to produce a homog
The lithium-sulfur battery is one of the most promising "beyond Li-ion" battery chemistries owing to its superior gravimetric energy density and low cost. Nonetheless, its commercialization has been hindered by its low cycle life due to the polysulfide shuttle and nonuniform Li-metal plating and stripping. Thin and dense solid electrolyte separators could address these issues without compromising on energy density. Here, we introduce a novel argyrodite (Li<sub>6</sub>PS<sub>5</sub>Cl)-carboxylat
Li-S batteries have attracted considerable interest as next-generation energy storage devices owing to high energy density and the natural abundance of sulfur. However, the practical applications of Li-S batteries are hampered by the shuttle effect of soluble lithium polysulfides (LPS), which results in low cycle stability. Herein, a functional interlayer has been developed to efficiently regulate the LPS and enhance the sulfur utilization using hierarchical nanostructure of C<sub>3</sub>N<sub>4
Abstract A high‐performance Li–Se battery is demonstrated by adopting a novel Se cathode design. The Se cathode is a one‐piece body combined with a Se deposited current collector and a solid polymer electrolyte (SPE). In the preparation of the Se cathode, Se is electrodeposited on Ni‐foam, and the pores are filled with SPE layers. Through this electrodeposition, the cathode is easily fabricated, and charge transports are facile. The use of the SPE layer offers a durable Se electrode, enhancing i
Anode-free Li-ion batteries (AFBs), where a Cu current collector is used to plate and strip Li instead of a classic anode, are promising technologies to increase the energy density of batteries. In addition, AFBs are safer and easier to manufacture than competing Li-metal anodes and solid-state batteries. However, the loss of Li inventory that occurs during the operation of AFBs limits their lifespan and practical application. In this study, we find that, in particular, the current density used
We proposed the mouse to control a computer mouse with head rotations and eye blinks so that the severe disabled person can use a computer. We compared the performance of the proposed mouse to that of a general computer mouse and to that of alternative mouses such as Quick glance using eye movements and a Camera mouse using face movements. The mouse positions were estimated using gyro sensors that can measure the angular velocity of head rotations, and mouse events such as clicks/double clicks w
Next-generation energy storage devices such as lithium-sulfur batteries (LSBs) face several challenges including fast charging and high-power delivery. Thus, it is necessary to improve the stability of the electrodes with efficient electrochemical system. In this work, a durable sulfur cathode even at high rates is enabled via lean binder content. The binder consists of a chitosan cross-linked with a carboxylated nitrile-butadiene rubber (XNBR), which exhibits high affinity toward lithium polysu
We created a cost-benefit analysis and swift point-of-care (PoC) testing for early stage Parkinson's disease (PD) that delivers the possibility of providing sensitive, rapid, and user-friendly analysis in home diagnostics applications. α-Synuclein (α-Syn) is considered a meaningful biomarker for the diagnosis of early stage PD. The PoC platform for diagnosis of PD is simply constructed with a conductive polymer and an aptamer receptor on a screen-printed electrode and exhibits a remarkable low d
The synthesis and electrocatalytic performance of iridium-oxide (IrO2) are reported. IrO2 was electrochemically deposited on the gold dendrite template prepared by the chronoamperometry. The influence of the synthetic condition on the morphology, phase composition, and accessible surface area of the IrO2 dendrites was investigated. The optimized IrO2 dendrites showed an excellent electrocatalytic activity toward oxygen evolution with a low overpotential of 240 mV at 5 mAcm−2 and to the sensing o
Abstract Separators are crucial in lithium‐sulfur batteries (LiSBs) to ensure optimal ion transport and prevent internal short circuits. High‐performance separators with excellent thermal stability, electrolyte wettability, porosity, and Li + selectivity are essential for the safety and enhancing the energy density of LiSBs. This is particularly important for mitigating polysulfide (LiPS) shuttling, which degrades both the capacity and cycling stability of LiSBs. In this work, a novel separator