Kanghee Cho
KAIST
43 Papers
146 Citations
Kanghee Cho is an academic researcher from KAIST. The author has contributed to research in topics: Adsorption & Zeolite. The author has an hindex of 19, co-authored 39 publications. Previous affiliations of Kanghee Cho include Center for Functional Nanomaterials.
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Papers
Directing Zeolite Structures into Hierarchically Nanoporous Architectures
Kyungsu Na,Kyungsu Na,Changbum Jo,Changbum Jo,Jeongnam Kim,Kanghee Cho,Kanghee Cho,Jinhwan Jung,Jinhwan Jung,Yongbeom Seo,Yongbeom Seo,Robert J. Messinger,Bradley F. Chmelka,Ryong Ryoo,Ryong Ryoo +14 more
TL;DR: A series of mesoporous molecular sieves are synthesized that possess crystalline microporous walls with zeolitelike frameworks, extending the application of zeolites to the mesoporus range of 2 to 50 nanometers.
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Mesoporous MFI Zeolite Nanosponge Supporting Cobalt Nanoparticles as a Fischer–Tropsch Catalyst with High Yield of Branched Hydrocarbons in the Gasoline Range
TL;DR: In this paper, a zeolite nanosponge was obtained by a seed-assisted hydrothermal synthesis route using C22H45−N+(CH3)2−C6H12−N+CH3−N−C 6H13 as the structure-directing agent.
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MFI zeolite nanosponges possessing uniform mesopores generated by bulk crystal seeding in the hierarchical surfactant-directed synthesis
TL;DR: The synthesis of a mesoporous material with uniform mesopore diameters and crystalline MFIZeolite walls has been achieved, simply by seeding the multiammonium surfactant-directed synthesis with bulk zeolite crystals.
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Synthesis of Highly Crystalline NH2-MIL-125 (Ti) with S-Shaped Water Isotherms for Adsorption Heat Transformation
Muhammad Sohail,Yun Yangno,Eun Kyung Lee,Sang Kyum Kim,Kanghee Cho,Jong-Nam Kim,Tae Woo Kim,Jong-Ho Moon,Hyunuk Kim +8 more
TL;DR: In this article, the authors reported the synthesis of NH2-MIL-125 with high surface area and water capacity for an adsorption heat transformation (AHT) system.
90
Preparation of covalent triazine frameworks with imidazolium cations embedded in basic sites and their application for CO2 capture
KwangHo Park,Kwangyeol Lee,Hyunuk Kim,Vinothkumar Ganesan,Kanghee Cho,Soon Kwan Jeong,Sungho Yoon +6 more
TL;DR: In this paper, the 1,3-bis(pyridyl) imidazolium-based CTFs (bpim-CTFs) have been prepared via incorporation of an imidazi motif into the monomer, which resulted in high functionalization of the frameworks.
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