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  • A Novel Eutectic Mixture of Biphenyl and Diphenylmethane as a Potential Liquid Organic Hydrogen Carrier: Catalytic Hydrogenation (Wiley, IF: 4.149, JCR: 60.08%)
    64
    A Novel Eutectic Mixture of Biphenyl and Diphenylmethane as a Potential Liquid Organic Hydrogen Carrier: Catalytic Hydrogenation (Wiley, IF: 4.149, JCR: 60.08%)
    Energy Technology, 2019, 7(1), 113-121.
    Da Jung Han Young Suk Jo Byeong Soo Shin Munjeong Jang Jeong Won Kang Jonghee Han Suk Woo Nam Chang Won Yoon*
  • CO2-Mediated H2 Storage-Release with Nanostructured Catalysts: Recent Progresses, Challenges, and Perspectives (Wiley, IF: 29.698, JCR: 2.73%)
    63
    CO2-Mediated H2 Storage-Release with Nanostructured Catalysts: Recent Progresses, Challenges, and Perspectives (Wiley, IF: 29.698, JCR: 2.73%)
    Advanced Energy Materials, 2019, 9(30), 1901158.
    Asefa T Koh K Yoon CW*
  • Pd 2+ -Initiated Formic Acid Decomposition: Plausible Pathways for C-H Activation of Formate (Wiley, IF: 3.520, JCR: 29.17%)
    62
    Pd 2+ -Initiated Formic Acid Decomposition: Plausible Pathways for C-H Activation of Formate (Wiley, IF: 3.520, JCR: 29.17%)
    ChemPhysChem, 2019, 20(10), 1382-1391.
    Lee WJ Hwang YJ Kim J Jeong H Yoon CW*
  • Hexagonal Boron Nitride Nanosheets Grown via Chemical Vapor Deposition for Silver Protection (ACS, IF: 6.140, JCR: 29.13%)
    61
    Hexagonal Boron Nitride Nanosheets Grown via Chemical Vapor Deposition for Silver Protection (ACS, IF: 6.140, JCR: 29.13%)
    ACS Applied Nano Materials, 2019, 2(5), 2830-2835.
    Rui Han Majharul H. Khan Alexander Angeloski Gilberto Casillas Chang Won Yoon Xudong Sun* Zhenguo Huang*
  • Assessment of the economic potential: COx-free hydrogen production from renewables via ammonia decomposition for small-sized H2 refueling stations (Elsevier, IF: 16.799, JCR: 1.06%)
    60
    Assessment of the economic potential: COx-free hydrogen production from renewables via ammonia decomposition for small-sized H2 refueling stations (Elsevier, IF: 16.799, JCR: 1.06%)
    Renewable and Sustainable Energy Reviews, 2019, 113, 109262.
    Boreum Lee Junhyung Park Hyunjun Lee Manhee Byun Chang Won Yoon Hankwon Lim
  • Ammonia as an efficient COX-free hydrogen carrier: Fundamentals and feasibility analyses for fuel cell applications (IF:11.446 JCR: 5.94 %)
    59
    Ammonia as an efficient COX-free hydrogen carrier: Fundamentals and feasibility analyses for fuel cell applications (IF:11.446 JCR: 5.94 %)
    Applied energy, 2018, 224, 194-204.
    Junyoung Cha Young Suk Jo Hyangsoo Jeong Jonghee Han Suk Woo Nam Kwang Ho Song Chang Won Yoon*
  • Fundamental Mechanisms of Reversible Dehydrogenation of Formate on N-Doped Graphene-Supported Pd Nanoparticles (ACS, IF: 4.177, JCR: 41.30%)
    58
    Fundamental Mechanisms of Reversible Dehydrogenation of Formate on N-Doped Graphene-Supported Pd Nanoparticles (ACS, IF: 4.177, JCR: 41.30%)
    The Journal of Physical Chemistry C, 2018, 123(3), 1539-1549.
    Dong Yun Shin Min-Su Kim Jeong An Kwon Yeon-Jeong Shin Chang Won Yoon* Dong-Hee Lim*
  • A High-Capacity, Reversible Liquid Organic Hydrogen Carrier: H2 -Release Properties and an Application to a Fuel Cell (ACS, IF: 9.224, JCR: 8.74%)
    57
    A High-Capacity, Reversible Liquid Organic Hydrogen Carrier: H2 -Release Properties and an Application to a Fuel Cell (ACS, IF: 9.224, JCR: 8.74%)
    International Journal of Hydrogen Energy, 2018, 43(27), 12158-67.
    Munjeong Jang Young Suk Jo Won Jong Lee Byeng Soo Shin Hyuntae Sohn Hyangsoo Jeong Seong Cheol Jang Sang Kyu Kwak Jeong Won Kang Chang Won Yoon*
  • Thermodynamic assessment of carbazole-based organic polycyclic compounds for hydrogen storage applications via a computational approach (Elsevier, IF: 7.139 JCR: 25 %)
    56
    Thermodynamic assessment of carbazole-based organic polycyclic compounds for hydrogen storage applications via a computational approach (Elsevier, IF: 7.139 JCR: 25 %)
    International Journal of Hydrogen Energy, 2018, 43(27), 12158-67.
    Byeong Soo Shin Chang Won Yoon Sang Kyu Kwak* Jung Won Kang*
  • Characterization of a Pd/Ta composite membrane and its application to a large scale high-purity hydrogen separation from mixed gas (Elsevier, IF: 9.136 JCR: 9.44 %)
    55
    Characterization of a Pd/Ta composite membrane and its application to a large scale high-purity hydrogen separation from mixed gas (Elsevier, IF: 9.136 JCR: 9.44 %)
    Separation and Purification Technology, 2018, 200, 221-229.
    Young Suk Jo Chan Hyun Lee Seong Young Kong Kwan-Young Lee Chang Won Yoon Suk Woo Nam Jonghee Han*