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Dive into the research topics where David Inhyuk Kim is active.

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Featured researches published by David Inhyuk Kim.


Journal of Materials Chemistry | 2016

Hierarchical multi-component nanofiber separators for lithium polysulfide capture in lithium–sulfur batteries: an experimental and molecular modeling study

Jiadeng Zhu; Erol Yildirim; Karim Aly; Jialong Shen; Chen Chen; Yao Lu; Mengjin Jiang; David Inhyuk Kim; Alan E. Tonelli; Melissa A. Pasquinelli; Philip D. Bradford; Xiangwu Zhang

Sulfur (S) has been considered as a promising cathode candidate for lithium batteries due to its high theoretical specific capacity and energy density. However, the low active material utilization, severe capacity fading, and short lifespan of the resultant lithium–sulfur (Li–S) batteries have greatly hindered their practicality. In this work, a multi-functional polyacrylonitrile/silica nanofiber membrane with an integral ultralight and thin multi-walled carbon nanotube sheet is presented and it provides a new approach to significantly improve the overall electrochemical performance of Li–S batteries. The experimental results are in agreement with molecular modeling studies based on density functional theory and Monte Carlo simulations. Remarkably, this design is favorable for the fast diffusion of both lithium ions and electrons and the mitigation of the diffusion of polysulfides. As a consequence, a high reversible capacity of 741 mA h g−1 at 0.2C after 100 cycles with excellent cyclability and high-rate performance (627 mA h g−1 at 1C) are achieved even with a high sulfur loading of 70 wt% in the cathode, revealing its great potential for energy storage applications. Moreover, a capacity of 426 mA h g−1 is retained after 300 cycles at a high current density of 2C. These results represent a major step forward in the progress of Li–S battery technologies.


Journal of Membrane Science | 2015

Pressure retarded osmosis (PRO) for integrating seawater desalination and wastewater reclamation: Energy consumption and fouling

David Inhyuk Kim; Jungwon Kim; Ho Kyong Shon; Seungkwan Hong


Nano Energy | 2016

A novel separator coated by carbon for achieving exceptional high performance lithium-sulfur batteries

Jiadeng Zhu; Yeqian Ge; David Inhyuk Kim; Yao Lu; Chen Chen; Mengjin Jiang; Xiangwu Zhang


Carbon | 2016

Highly porous polyacrylonitrile/graphene oxide membrane separator exhibiting excellent anti-self-discharge feature for high-performance lithium–sulfur batteries

Jiadeng Zhu; Chen Chen; Yao Lu; Jun Zang; Mengjin Jiang; David Inhyuk Kim; Xiangwu Zhang


Journal of Membrane Science | 2016

Understanding glass fiber membrane used as a novel separator for lithium–sulfur batteries

Jiadeng Zhu; Meltem Yanilmaz; Kun Fu; Chen Chen; Yao Lu; Yeqian Ge; David Inhyuk Kim; Xiangwu Zhang


Journal of Membrane Science | 2015

Evaluation of apparent membrane performance parameters in pressure retarded osmosis processes under varying draw pressures and with draw solutions containing organics

Jungwon Kim; Bongchul Kim; David Inhyuk Kim; Seungkwan Hong


Desalination | 2016

Changing membrane orientation in pressure retarded osmosis for sustainable power generation with low fouling

David Inhyuk Kim; Jungwon Kim; Seungkwan Hong


Journal of Membrane Science | 2016

Fouling evaluation and mechanisms in a FO-RO hybrid process for direct potable reuse

Byeong Gyu Choi; David Inhyuk Kim; Seungkwan Hong


Journal of Membrane Science | 2018

New industrial application of forward osmosis (FO): Precious metal recovery from printed circuit board (PCB) plant wastewater

Gimun Gwak; David Inhyuk Kim; Seungkwan Hong


Desalination | 2018

Membrane capacitive deionisation as an alternative to the 2nd pass for seawater reverse osmosis desalination plant for bromide removal

Pema Dorji; Jong-Moon Choi; David Inhyuk Kim; Sherub Phuntsho; Seungkwan Hong; Ho Kyong Shon

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Jiadeng Zhu

North Carolina State University

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Xiangwu Zhang

North Carolina State University

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Chen Chen

North Carolina State University

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Yao Lu

North Carolina State University

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Mengjin Jiang

North Carolina State University

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Jun Zang

North Carolina State University

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