Bin Lee
KAIST
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Publication
Featured researches published by Bin Lee.
Nano Letters | 2015
Dongju Lee; Bin Lee; Kwang Hyun Park; Ho Jin Ryu; Seokwoo Jeon; Soon Hyung Hong
The scalable preparation of two-dimensional hexagonal boron nitride (h-BN) is essential for practical applications. Despite intense research in this area, high-yield production of two-dimensional h-BN with large-size and high solubility remains a key challenge. In the present work, we propose a scalable exfoliation process for hydroxyl-functionalized BN nanoplatelets (OH-BNNPs) by a simple ball milling of BN powders in the presence of sodium hydroxide via the synergetic effect of chemical peeling and mechanical shear forces. The hydroxide-assisted ball milling process results in relatively large flakes with an average size of 1.5 μm with little damage to the in-plane structure of the OH-BNNP and high yields of 18%. The resultant OH-BNNP samples can be redispersed in various solvents and form stable dispersions that can be used for multiple purposes. The incorporation of the BNNPs into the polyethylene matrix effectively enhanced the barrier properties of the polyethylene due to increased tortuosity of the diffusion path of the gas molecules. Hydroxide-assisted ball milling process can thus provide simple and efficient approaches to scalable preparation of large-size and highly soluble BNNPs. Moreover, this exfoliation process is not only easily scalable but also applicable to other layered materials.
Scientific Reports | 2016
Bin Lee; Dongju Lee; Junho Lee; Ho Jin Ryu; Soon Hyung Hong
Ceramics have superior hardness, strength and corrosion resistance, but are also associated with poor toughness. Here, we propose the boron nitride nanoplatelet (BNNP) as a novel toughening reinforcement component to ceramics with outstanding mechanical properties and high-temperature stability. We used a planetary ball-milling process to exfoliate BNNPs in a scalable manner and functionalizes them with polystyrene sulfonate. Non-covalently functionalized BNNPs were homogeneously dispersed with Si3N4 powders using a surfactant and then consolidated by hot pressing. The fracture toughness of the BNNP/Si3N4 nanocomposite increased by as much as 24.7% with 2 vol.% of BNNPs. Furthermore, BNNPs enhanced strength (9.4%) and the tribological properties (26.7%) of the ceramic matrix. Microstructural analyzes have shown that the toughening mechanisms are combinations of the pull-out, crack bridging, branching and blunting mechanisms.
Scientific Reports | 2018
Bharat Gwalani; Rizaldy M. Pohan; Junho Lee; Bin Lee; Rajarshi Banerjee; Ho Jin Ryu; Soon Hyung Hong
A significant increase in compressive yield strength of the Al0.3CoCrFeMnNi high-entropy alloy (HEA) from 979 MPa to 1759 MPa was observed upon the introduction of 3 vol.% Y2O3. The HEAs were processed using spark plasma sintering of mechanically alloyed powders. Transmission electron microscopy and atom probe tomography confirmed the presence of compositionally complex nano-dispersoids in the Y2O3-added HEA. The significant increase in strength can be attributed to the nano-dispersoid strengthening coupled with grain refinement. Therefore, the in-situ formation of the compositionally complex nanoscale dispersoids during the alloy processing could be a novel approach to create entropy-stabilized oxide particles in strengthening of HEAs.
Energy and Environmental Science | 2013
Gwang Hoon Jun; Sung Hwan Jin; Bin Lee; Bo Hyun Kim; Weon-Sik Chae; Soon Hyung Hong; Seokwoo Jeon
Carbon | 2014
Bin Lee; Min Young Koo; Sung Hwan Jin; Kyung Tae Kim; Soon Hyung Hong
Carbon | 2013
Seongwoo Ryu; Bin Lee; Seonki Hong; Sunghwan Jin; Sungjin Park; Soon Hyung Hong; Haeshin Lee
Archive | 2014
Soon Hyung Hong; Bin Lee; Dongju Lee
Materials & Design | 2015
Moonsuk Kim; Bin Lee; Min Young Koo; Ho Jin Ryu; Soon Hyung Hong
Archive | 2014
Soon Hyung Hong; Min Young Koo; Jaewon Hwang; Bin Lee
ACS Sustainable Chemistry & Engineering | 2017
Bin Lee; Namsoo Park; Kyung Suk Kang; Ho Jin Ryu; Soon Hyung Hong