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Nam Hoon Kim

Researcher at Chonbuk National University

Publications -  375
Citations -  28031

Nam Hoon Kim is an academic researcher from Chonbuk National University. The author has contributed to research in topics: Graphene & Supercapacitor. The author has an hindex of 69, co-authored 321 publications receiving 20753 citations. Previous affiliations of Nam Hoon Kim include Kansas State University & Center for Advanced Materials.

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Highly efficient adsorbent based on novel cotton flower-like porous boron nitride for organic pollutant removal

TL;DR: In this article, a novel cotton flower-like hierarchically porous boron nitride (BN) structure was successfully synthesized by pyrolizing a boric acid/melamine mixture at 1100°C in a controlled flow rate ratio of N 2 /H 2.
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Effects of hybrid carbon fillers of polymer composite bipolar plates on the performance of direct methanol fuel cells

TL;DR: In this article, the effects of carbon filler type on the properties and performance of composite bipolar plates fabricated by compression molding of carbon fillers such as graphite, carbon black (CB), multi-walled carbon nanotube (MWNT), carbon fiber (CF) and powder type epoxy have been investigated.
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FeMoO4 based, enzyme-free electrochemical biosensor for ultrasensitive detection of norepinephrine.

TL;DR: FeMoO4 possesses polycrystallanity and bimetallic character, which helps to enhance the performance of the FM/GCE as compared to the GCE, which was also due to the formation of Fe (II)-dioxygen complexes, which catalyze the oxidation of NE.
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Synthesis of water soluble sulfonated polyaniline and determination of crystal structure

TL;DR: A polyaniline (PANI) was synthesized by the oxidative polymerization using ammonium persulfate as an oxidizing agent and the PANI was then stirred with excess fuming sulfuric acid at room temperature for 6 h to obtain water soluble sulfonated polyanile (SPANI) as mentioned in this paper.
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Freestanding 1T‐Mn x Mo 1– x S 2– y Se y and MoFe 2 S 4– z Se z Ultrathin Nanosheet‐Structured Electrodes for Highly Efficient Flexible Solid‐State Asymmetric Supercapacitors

TL;DR: This study explicitly demonstrates the exponential enhancement of specific capacity of MoS2 following intercalation and doping of Mn and Se, and Fe2 S3 following doping of Mo and Se could be an ideal direction for the fabrication of novel energy-storage materials with high-energy storage ability.