Heejoon Ahn
Hanyang University 신소재공학부 · Engineering
Heejoon Ahn 교수의 연구실은 전자재료 및 나노소재를 기반으로 한 에너지 저장 장치의 개발에 초점을 맞추고 있습니다. 주로 수화합성 및 초음파화학적 방법을 활용한 3차원 구조의 나노복합재료를 설계하여, 고성능 슈퍼커패시터와 아연 이온 이차전지의 효율성과 내구성을 향상시키는 데 기여하고 있습니다. 특히, 금속 산화물/수화물과 탄소 나노튜브, 고효율 전도성 고분자 등 다양한 나노구조의 하이브리드 전극 재료를 개발하며 실용화 가능한 에너지 기술을 모색하고 있습니다.
Figures are computed from collected data and may differ slightly.
Nanorod arrays were grown directly on a stainless steel substrate by the chemical bath deposition method. Parallel arrays of nanorods show a specific capacitance of 456 F g−1 with an energy density of 12.8 W h kg−1. This approach provides a one-step, seedless and cost-effective route for fabricating pseudocapacitive materials in 3-D form.
Abstract Aqueous zinc ion batteries (ZIBs) are promising energy storage devices due to the high ionic conductivity of the aqueous electrolyte as well as the safety, eco‐friendliness, and low cost. Vanadium oxide‐based materials are attractive cathode materials for aqueous ZIBs because of their high capacity from their layered structure and multiple valences. However, it is difficult to achieve high cycle stability and rate capability due to the low electrical conductivity and trapping of diffuse
Gold nanoparticles protected with thiophene-terminated alkanethiols having different alkane chain lengths have been synthesized, and vapor-sensing properties of their spin-coated films have been investigated. Transmission electron microscopy and measurement of the sulfur and gold peak areas of the films by X-ray photoelectron spectroscopy indicate gold core diameters in the 3−5-nm range. Exposure of the films to chloroform, toluene, hexane, and ethanol vapors results in significant and selective
Carbon nanotube and metal oxide/hydroxide hybrids have attracted much interest as electrode materials for electrochemical supercapacitors because of their dual storage mechanism. They can complement or replace batteries in electrical energy storage and harvesting applications, where high power delivery or uptake is needed. Multi-walled carbon nanotube (MWCNT) and nickel–cobalt binary metal hydroxide nanorod hybrids have been developed through the chemical synthesis of binary metal hydroxide on a
A two dimensional CNLDH 0.1 nanohybrid supercapacitor electrode prepared by simple hydrothermal hybridization of g-C<sub>3</sub>N<sub>4</sub> and NiCO LDH shows the maximum specific capacity of 183.43 mA h g<sup>−1</sup> with remarkable electrochemical performance.
The effects of low-energy electron irradiation on spin-coated films of regioregular poly(3-hexylthiophene) have been studied with fluorescence, mass spectrometry, and a variety of electron spectroscopies, including photoemission. Electron impact by 180 eV electrons causes a decrease in photoluminescence intensity, broadening of the thiophene ring valence electronic state features, and diminution in intensity of the peaks due to π electrons delocalized along the backbone. Electron bombardment als
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