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Su-Hyeong Chae

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Articles 11
Citations 31
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Recent Articles
1.
Chae S, Lee C, Lee J, Lee J, Kim H, Muthurasu A, et al.
J Colloid Interface Sci . 2024 Nov; 680(Pt A):42-53. PMID: 39488898
Developing cost-effective and highly efficient electrodes for the oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) is crucial, particularly for alkaline OER and HER. Herein, electroless plating of iron-nickel-cobalt...
2.
Lee J, Chae S, Lee J, Lee M, Yoon W, Kwac L, et al.
Molecules . 2023 Dec; 28(23). PMID: 38067551
Waste wood, which has a large amount of cellulose fibers, should be transformed into useful materials for addressing environmental and resource problems. Thus, this study analyzed the application of waste...
3.
Kim T, Tiwari A, Chhetri K, Ojha G, Kim H, Chae S, et al.
Nanoscale Adv . 2022 Sep; 2(10):4918-4929. PMID: 36132926
Transition metal phosphate (TMPi)-based composites as anode electrode materials in supercapacitor applications are less reported. Herein, we report a phytic acid (PA)-assisted in situ-formed amorphous cobalt phosphate/carbon (CoPi/C) composite grown...
4.
Han W, Chae S, Kim T, Lee D, Kim H
Nanoscale Adv . 2022 Sep; 2(11):5403-5411. PMID: 36132022
White-light-emitting materials have received significant attention because of their potential application in lighting, displays, and sensors. However, it is a challenge to obtain white light from one phosphor, because the...
5.
Kim T, Subedi S, Dahal B, Chhetri K, Mukhiya T, Muthurasu A, et al.
Adv Sci (Weinh) . 2022 May; 9(20):e2200650. PMID: 35567356
The hurdle of fabricating asymmetric supercapacitor (ASC) devices using a faradic cathode and a double layer anode is challenging due to the required large amount of active mass of anodic...
6.
Lohani P, Tiwari A, Chhetri K, Muthurasu A, Dahal B, Chae S, et al.
ACS Appl Mater Interfaces . 2022 May; PMID: 35548975
The structural design of transition metal-based electrode materials with gigantic energy storage capabilities is a crucial task. In this work, we report an assembly of thin layered double hydroxide (LDH)...
7.
Muthurasu A, Chae S, Ko T, Lohani P, Kim H
J Colloid Interface Sci . 2022 Mar; 616:679-690. PMID: 35245794
The development of multicomponent materials is the most efficient and successful way for creating advanced multifunctional catalysts. Herein, the bimetal FeCo nanoarrays enclosed N-CNTs have a high surface on carbon...
8.
Mukhiya T, Muthurasu A, Tiwari A, Chhetri K, Chae S, Kim H, et al.
ACS Appl Mater Interfaces . 2021 May; 13(20):23732-23742. PMID: 33977710
The fabrication of an economic and efficient multifunctional advanced nanomaterial with a rational composition and configuration by a facile methodology is a crucial challenge. Herein, we are the first to...
9.
Tiwari A, Chae S, Ojha G, Dahal B, Mukhiya T, Lee M, et al.
J Colloid Interface Sci . 2019 Jun; 553:622-630. PMID: 31247501
Herein, we outline the fabrication of highly porous three-dimensional carbon-fiber network anchored with uniform metallic cobalt (Co) via electrospinning and subsequent post-modification approaches. First, cobalt acetate solution saturated electrospun polyacrylonitrile...
10.
Kim H, Kim Y, Kwac L, Chae S, Kyoung Shin H
Materials (Basel) . 2018 Mar; 11(4). PMID: 29565300
Carbon foams were prepared by carbonization of carboxymethyl cellulose (CMC)/waste artificial marble powder (WAMP) composites obtained via electron beam irradiation (EBI); these composites were prepared by mixing eco-friendly CMC with...